Wearing position detection method and apparatus, storage medium, brassiere and system

By setting sensors on the breast pump and bra, the wearing position of the breast pump is automatically detected, which solves the problem that the existing breast pump needs to manually set the position, improving data reliability and user experience.

WO2025140724A1PCT designated stage expired Publication Date: 2025-07-03SHENZHENSHI LUTEJIACHENG SUPPLYCHAIN MANAGEMENT CO LTD
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Patent Information

Application Number
PCT/CN2024/143938
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-12-30
Filing Date
2024-12-30
Publication Date
2025-07-03

AI Technical Summary

Technical Problem

The existing breast pump needs to be manually set when wearing it, resulting in poor reliability of the breast pump data and the user cannot confirm the correctness of the wear, which affects the use effect.

Method used

By setting sensors on the breast pump and bra, the wearing position of the breast pump is automatically detected using induction data, providing wear position detection and prompt methods to ensure correct wear.

Benefits of technology

It improves the reliability of breast pump data recorded by the breast pump, reduces the user's manual setting time, and enhances the recording efficiency and user experience of the wearing position.

✦ Generated by Eureka AI based on patent content.

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Abstract

Disclosed in the present application are a breast pump wearing position detection method and apparatus, a storage medium, a brassiere and a system. The method comprises: upon reception of a wearing completion operation of a target breast pump, acquiring sensing data of the target breast pump or a sensor; and on the basis of the sensing data, determining a wearing position detection result of the target breast pump. The present solution allows users to avoid manually setting the wearing positions of breast pumps after wearing the breast pumps, thus improving the reliability of milk suction data recorded by breast pumps.
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Description

Wearing position detection method, device, storage medium, bra and system Technical Field

[0001] The present application relates to the technical field of smart devices, and in particular to a method, device, storage medium, bra, and system for detecting the wearing position of a breast pump. Background Art

[0002] Breast pumps are commonly used by lactating women to assist with milk ejection and unclog the mammary glands. Currently, there are three types of breast pumps on the market: manual, semi-automatic, and automatic. Automatic breast pumps, with both massage and expression modes, are widely used for their ease and ease of use. However, suction power and other parameters vary widely among breast pumps on the market. Electric breast pumps have become a common tool for lactating mothers.

[0003] However, currently, when a user wears a breast pump, they need to manually set the position where the breast pump is worn. If the position manually selected by the user is inconsistent with the actual wearing position, the reliability of the subsequent breast pumping data recorded by the breast pump will be affected.

[0004] When the breast pump is worn, the user cannot know whether it is worn correctly. Therefore, when using the breast pump, the user may not be able to suck milk due to incorrect wearing.

[0005] When a user wears a breast pump, they need to manually set the wearing position on the breast pump. Currently, the wearing position indicator on the breast pump is only a simple dial or button. After the user sets it, there is no conspicuous indicator to remind the user whether the wearing position indicator of the breast pump corresponds to the user's actual wearing position. The user needs to confirm multiple times, the whole process is time-consuming, and the recording efficiency of the wearing position is poor. Summary of the Invention

[0006] Based on this, the present application provides a method, device, storage medium, bra and system for detecting the wearing position of a breast pump, which can automatically set the wearing position of the breast pump and improve the reliability of the milking data recorded by the breast pump.

[0007] In a first aspect, an embodiment of the present application provides a method for detecting the wearing position of a breast pump, comprising:

[0008] When a wearing completion operation for a target breast pump is received, acquiring sensing data of the target breast pump or sensor;

[0009] Based on the sensing data, a wearing position detection result of the target breast pump is determined.

[0010] In a second aspect, an embodiment of the present application further provides a breast pump wearing position detection device, comprising:

[0011] an acquisition module, configured to acquire sensing data of the target breast pump or sensor when a wearing completion operation for the target breast pump is received;

[0012] A determination module is used to determine a wearing position detection result of the target breast pump based on the sensing data.

[0013] In a third aspect, an embodiment of the present application provides a computer-readable storage medium storing a computer program. When the computer program is executed by a processor, the processor performs the steps of the above-mentioned method for detecting the wearing position of a breast pump.

[0014] In a fourth aspect, an embodiment of the present application provides an electronic device, comprising a memory and a processor, wherein the memory stores a computer program, and when the computer program is executed by the processor, the processor performs the steps of the above-mentioned method for detecting the wearing position of a breast pump.

[0015] The present application provides a method, device, storage medium, bra, and system for detecting the wearing position of a breast pump. When a wearing completion operation is received for a target breast pump, sensing data from the target breast pump or sensor is obtained; and based on the sensing data, a wearing position detection result for the target breast pump is determined. In the breast pump wearing position detection solution provided in the present application, when a wearing completion operation is received for a target breast pump, sensing data from the bra corresponding to the target breast pump is obtained. Using a position detection strategy corresponding to the sensing data, a wearing position detection result for the target breast pump is output. This eliminates the need to manually set the wearing position of the breast pump after the user wears the breast pump, thereby improving the reliability of the milking data recorded by the breast pump.

[0016] It enriches the ways in which users interact with electronic devices, thereby meeting the needs of different users and different scenarios.

[0017] In a first aspect, an embodiment of the present application provides a method for detecting the wearing position of a breast pump, comprising:

[0018] Sensor configured to be provided on a breast pump and used to collect human body data

[0019] When it is detected that the target breast pump is in a wearing state, obtaining human body data collected by the sensor;

[0020] Based on the human body data, a wearing position result of the target breast pump is determined.

[0021] In a second aspect, an embodiment of the present application provides a breast pump, comprising:

[0022] The breast pump body is used to be worn on the breast to suck milk;

[0023] A sensing component is provided on the breast pump and is used to collect human body data so as to determine a wearing position result of the target breast pump based on the human body data.

[0024] In a third aspect, an embodiment of the present application provides a computer-readable storage medium storing a computer program. When the computer program is executed by a processor, the processor performs the steps of the above-mentioned method for detecting the wearing position of a breast pump.

[0025] Embodiments of the present application provide a method for detecting the wearing position of a breast pump, a breast pump, and a computer-readable storage medium. The method includes a sensor disposed on the breast pump and configured to collect human body data. When a target breast pump is detected to be worn, the sensor acquires the human body data. Finally, based on the human body data, the wearing position of the target breast pump is determined. In the breast pump wearing position detection solution provided herein, when a user wears the target breast pump, the sensor-collected human body data can be used to automatically determine the wearing position of the target breast pump, thereby improving the reliability of the milking data recorded by the breast pump.

[0026] In a first aspect, an embodiment of the present application provides a method for detecting the wearing position of a breast pump, comprising:

[0027] When a bilateral wearing operation is detected, receiving sensor data reported by the first breast pump, the sensor data being data collected by a sensor provided on the first breast pump from a sensor of the second breast pump;

[0028] Determine wearing position results of the first breast pump and the second breast pump according to the sensor data.

[0029] In a second aspect, an embodiment of the present application further provides a breast pump wearing position detection device, comprising:

[0030] a first breast pump and a second breast pump;

[0031] a first sensing component, disposed on the first breast pump;

[0032] The second sensing component is provided on the second breast pump, and the first sensing component and the second sensing component sense each other to detect the left and right wearing positions of the first breast pump and the second breast pump.

[0033] In a third aspect, an embodiment of the present application provides a computer-readable storage medium storing a computer program. When the computer program is executed by a processor, the processor performs the steps of the above-mentioned method for detecting the wearing position of a breast pump.

[0034] In a fourth aspect, an embodiment of the present application provides an electronic device, comprising a memory and a processor, wherein the memory stores a computer program, and when the computer program is executed by the processor, the processor performs the steps of the above-mentioned method for detecting the wearing position of a breast pump.

[0035] The present application provides a method, device, storage medium, and electronic device for detecting the wearing position of a breast pump. When a bilateral wearing operation is detected, the method receives sensor data reported by a first breast pump, wherein the sensor data is data collected by a sensor provided on the first breast pump from a sensor provided on a second breast pump. Based on the sensor data, the wearing position results of the first and second breast pumps are determined. In the breast pump wearing position detection solution provided in the present application, when a user wears a breast pump for both breasts, the sensor provided on the first breast pump collects data from the sensor provided on the second breast pump. Based on the sensor data, the wearing positions of the first and second breast pumps can be automatically set, thereby improving the reliability of the milking data recorded by the breast pumps.

[0036] Based on this, the present application provides a breast pump wearing reminder method, system, storage medium and electronic device, which can determine corresponding prompt instructions based on the wearing information collected by the breast pump sensor, and then use the prompt instructions to control the breast pump and / or the current device to execute prompt events, so that the user can know the actual wearing status of the breast pump.

[0037] In a first aspect, an embodiment of the present application provides a breast pump wearing reminder method, comprising:

[0038] In response to a wearing operation triggered for a breast pump, detecting wearing information corresponding to the breast pump, the wearing information being collected by a sensor built into the breast pump;

[0039] The breast pump and / or the current device are controlled to execute a prompt event according to the wearing information.

[0040] In a second aspect, an embodiment of the present application further provides a breast pump wearing reminder system, comprising:

[0041] Breast pump body;

[0042] A wearing detection mechanism, used for detecting wearing information of the breast pump body;

[0043] The signal prompt component is used to output prompt information based on the wearing information of the breast pump.

[0044] Optionally, in some embodiments of the present application, the wearing reminder system further includes:

[0045] The communication connection element is used to connect the breast pump body and the terminal device for communication so as to output the prompt information through the terminal device.

[0046] Optionally, in some embodiments of the present application, the prompt information includes a prompt sound, a prompt page, and wearing instructions.

[0047] Optionally, in some embodiments of the present application, the wearing detection mechanism includes a sensor, which is used to detect whether the breast pump body is sealed and fit against the breast, and / or; to detect whether the mother's nipple is placed along the nipple channel, and / or; to detect whether the breast pump body is worn at an angle.

[0048] In a third aspect, an embodiment of the present application provides a computer-readable storage medium storing a computer program. When the computer program is executed by a processor, the processor performs the steps of the above-mentioned breast pump wearing reminder method.

[0049] In a fourth aspect, an embodiment of the present application provides an electronic device, comprising a memory and a processor, wherein the memory stores a computer program, and when the computer program is executed by the processor, the processor executes the steps of the above-mentioned breast pump wearing reminder method.

[0050] The embodiments of the present application provide a breast pump wearing prompt method, system, storage medium, and electronic device. In response to a wearing operation triggered on a breast pump, the method obtains wearing information corresponding to the breast pump, wherein the wearing information is collected by a sensor of the breast pump, and then determines a prompt instruction corresponding to the wearing information. Finally, the breast pump and / or the current device are controlled to execute a prompt event according to the prompt instruction. In the breast pump wearing prompt solution provided by the present application, a corresponding prompt instruction is determined based on the wearing information collected by the sensor of the breast pump, and then the prompt instruction is used to control the breast pump and / or the current device to execute a prompt event, so that the user can understand the actual wearing condition of the breast pump and avoid the problem of the user being unable to express milk when using the breast pump due to incorrect wearing.

[0051] Based on this, the present application provides a breast pump wearing guidance method and a breast pump system, which can guide the user to wear the breast pump through a wearing guidance page, so that the user can wear the breast pump accurately and effectively.

[0052] It enriches the ways in which users interact with electronic devices, thereby meeting the needs of different users and different scenarios.

[0053] In a first aspect, an embodiment of the present application provides a method for guiding the wearing of a breast pump, comprising:

[0054] In response to a wearing operation triggered for a target breast pump, a wearing guide page of the target breast pump is displayed, wherein the wearing guide page includes wearing guide information of the target breast pump, and the wearing guide information is used to guide a user to wear the target breast pump in a working mode.

[0055] In a second aspect, an embodiment of the present application further provides a breast pump system, comprising:

[0056] The breast pump body is used to be worn on the mother's breast and to suck milk from the breast. The breast pump body comprises:

[0057] A breast milk container, comprising a milk storage container and a connecting portion, wherein the milk storage container is connected to the connecting portion;

[0058] A breast pump, comprising a fitting portion and a nipple passage, wherein the fitting portion is shaped to fit the breast, and the nipple passage is connected to the milk storage container via the connecting portion;

[0059] A wearing detection mechanism is used to detect whether the breast pump is worn correctly.

[0060] Optionally, in some embodiments of the present application, the wearing detection mechanism includes a first sensor and a second sensor, the first sensor is arranged at the fitting portion, and the second sensor is arranged at the nipple channel.

[0061] Optionally, in some embodiments of the present application, the first sensor is used to detect whether the fitting portion is in sealing contact with the breast.

[0062] Optionally, in some embodiments of the present application, the second sensor is used to detect whether the mother's nipple is placed along the nipple channel.

[0063] Optionally, in some embodiments of the present application, the wearing detection mechanism further includes a third sensor, and the third sensor is used to detect whether the breast pump body is worn at an angle.

[0064] Optionally, in some embodiments of the present application, the breast pump system further comprises a communication connection module, wherein the communication connection module is used to connect the breast pump body and a terminal device or a server, and transmit lactation-related information of the breast pump body.

[0065] Optionally, in some embodiments of the present application, the breast pump system further comprises an identification element for identifying at least one target breast pump body, so that the terminal device or server can identify and match the target breast pump body.

[0066] Optionally, in some embodiments of the present application, the breast pump system further includes at least one identification element for respectively identifying two target breast pump bodies, namely a first identification element and a second identification element, so that the terminal device or server can respectively identify and match the target breast pump bodies.

[0067] In a third aspect, an embodiment of the present application provides a computer-readable storage medium storing a computer program. When the computer program is executed by a processor, the processor performs the steps of the above-mentioned breast pump wearing guidance method.

[0068] In a fourth aspect, an embodiment of the present application provides an electronic device, comprising a memory and a processor, wherein the memory stores a computer program, and when the computer program is executed by the processor, the processor executes the steps of the above-mentioned breast pump wearing guidance method.

[0069] Embodiments of the present application provide a breast pump wearing guidance method and a breast pump system. In response to a wearing operation on a target breast pump, a wearing guidance page for the target breast pump is displayed. The wearing guidance page includes wearing guidance information for the target breast pump. The wearing guidance information is used to instruct the target breast pump to be worn in working mode. Then, a determination is made as to whether the current wearing state of the target breast pump satisfies a preset working wearing state. When the current wearing state of the target breast pump satisfies the working wearing state, the target breast pump is configured with configuration parameters corresponding to the target working mode, and a successful wearing prompt is displayed on the wearing guidance page. In the breast pump wearing guidance scheme provided by the present application, when a user triggers a wearing operation on the breast pump, a wearing guidance page for the target breast pump can be displayed. The wearing guidance page includes the wearing guidance information. Therefore, the wearing guidance information can be used to instruct the user to wear the breast pump in working mode. When the user uses the breast pump for the first time or is re-wearing the breast pump, the wearing guidance page can be used to guide the user to wear the breast pump correctly.

[0070] Based on this, the present application provides a method for recording the wearing position of a breast pump, which can reduce the time a user takes to set the wearing position of the breast pump and improve the efficiency of recording the wearing position.

[0071] It enriches the ways in which users interact with electronic devices, thereby meeting the needs of different users and different scenarios.

[0072] In a first aspect, an embodiment of the present application provides a method for recording the wearing position of a breast pump, comprising:

[0073] When it is detected that the target breast pump is in the wearing state, the wearing mark interface is displayed;

[0074] In response to the first marking operation, the wearing position of the target breast pump is marked on the wearing marking interface, and / or a marking prompt for the target breast pump is turned on.

[0075] In a second aspect, an embodiment of the present application provides a method for recording the wearing position of a breast pump, comprising:

[0076] When it is detected that the target breast pump is in the wearing state, in response to a second marking operation on the target breast pump, a marking indicator light of the target breast pump is turned on, and / or a wearing mark is displayed in the wearing mark interface.

[0077] In a third aspect, an embodiment of the present application further provides a breast pump wearing position recording device, comprising:

[0078] A display module, configured to display a wearing mark interface when detecting that the target breast pump is in a wearing state;

[0079] The marking module is configured to mark the wearing position of the target breast pump on the wearing marking interface in response to a first marking operation, and / or enable a marking prompt for the target breast pump.

[0080] In a fourth aspect, an embodiment of the present application further provides a breast pump wearing position recording device, comprising:

[0081] The turning-on module is configured to, when detecting that the target breast pump is in a wearing state, turn on a mark indicator light of the target breast pump in response to a second marking operation on the target breast pump, and / or display a wearing mark in a wearing mark interface.

[0082] In a fifth aspect, an embodiment of the present application provides a computer-readable storage medium storing a computer program, which, when executed by a processor, causes the processor to perform the steps of the method for recording the wearing position of a breast pump.

[0083] In a sixth aspect, an embodiment of the present application provides an electronic device comprising a memory and a processor, wherein the memory stores a computer program, and when the computer program is executed by the processor, the processor executes the steps of the above-mentioned method for recording the wearing position of a breast pump.

[0084] The embodiments of the present application provide a method, device, storage medium, and electronic device for recording the wearing position of a breast pump. When a target breast pump is detected to be in a wearing state, a wearing mark interface is displayed; in response to a first marking operation, the wearing position of the target breast pump is marked on the wearing mark interface, and / or a marking prompt for the target breast pump is turned on. In the breast pump wearing position recording scheme provided by the present application, when a user wears the target breast pump, the wearing position of the target breast pump can be marked and / or a marking prompt for the target breast pump can be turned on by displaying the wearing mark interface according to the user's first marking operation on the wearing mark interface. That is, the user is reminded of the wearing position of the target breast pump through a striking interface prompt and / or breast pump prompt, without the user having to confirm multiple times, thereby reducing the time the user takes to set the wearing position of the breast pump, and thereby improving the efficiency of recording the wearing position.

[0085] The embodiments of the present application provide a method, device, storage medium, and electronic device for recording the wearing position of a breast pump. When a target breast pump is detected to be in a wearing state, in response to a second marking operation on the target breast pump, the marking indicator light of the target breast pump is turned on, and / or a wearing mark is displayed in a wearing mark interface. In the breast pump wearing position recording scheme provided by the present application, the marking indicator light of the target breast pump can be turned on, and / or the wearing mark is displayed in the wearing mark interface to remind the user of the wearing position of the target breast pump, without requiring the user to confirm multiple times, thereby reducing the time the user spends setting the wearing position of the breast pump and thereby improving the efficiency of recording the wearing position. BRIEF DESCRIPTION OF THE DRAWINGS

[0086] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0087] in:

[0088] FIG1 is a schematic diagram of a scenario of a method for detecting the wearing position of a breast pump provided by an embodiment of the present application;

[0089] FIG2 is a flow chart of a method for detecting the wearing position of a breast pump provided in an embodiment of the present application;

[0090] FIG3 is a schematic structural diagram of a breast pump wearing position detection system provided in an embodiment of the present application;

[0091] FIG4 is another structural diagram of a breast pump wearing position detection system provided in an embodiment of the present application;

[0092] FIG5 is another structural diagram of a breast pump wearing position detection system provided in an embodiment of the present application;

[0093] FIG6 is a schematic structural diagram of the electronic device provided in this application.

[0094] FIG7 is a schematic diagram of a scenario of a method for detecting the wearing position of a breast pump provided in an embodiment of the present application;

[0095] FIG8 is a flow chart of a method for detecting the wearing position of a breast pump provided in an embodiment of the present application;

[0096] FIG9 is a schematic structural diagram of a breast pump wearing position detection system provided in an embodiment of the present application;

[0097] FIG10 is a schematic structural diagram of the electronic device provided in this application.

[0098] FIG11 is a schematic diagram of a scenario of a method for detecting the wearing position of a breast pump provided in an embodiment of the present application;

[0099] FIG12 is a flow chart of a method for detecting the wearing position of a breast pump provided in an embodiment of the present application;

[0100] FIG13 is a structural diagram of a first embodiment of the arrangement position of the sensing element provided in an embodiment of the present application;

[0101] FIG14 is a structural diagram of a second embodiment of the arrangement position of the sensing element provided in an embodiment of the present application;

[0102] FIG15 is a structural diagram of a third embodiment of the arrangement position of the sensing element provided in an embodiment of the present application;

[0103] FIG16 is a structural diagram of a fourth embodiment of the arrangement position of the sensing element provided in an embodiment of the present application;

[0104] FIG17 is a schematic structural diagram of a first embodiment of a breast pump wearing position detection device provided in an embodiment of the present application;

[0105] FIG18 is a schematic structural diagram of a second embodiment of a breast pump wearing position detection device provided in an embodiment of the present application;

[0106] FIG19 is a schematic structural diagram of a third embodiment of a breast pump wearing position detection device provided in an embodiment of the present application;

[0107] FIG20 is a schematic structural diagram of a fourth embodiment of a breast pump wearing position detection device provided in an embodiment of the present application;

[0108] FIG21 is a schematic structural diagram of a fifth embodiment of a breast pump wearing position detection device provided in an embodiment of the present application;

[0109] FIG22 is a schematic structural diagram of the electronic device provided in this application.

[0110] FIG23 is a schematic diagram of a scenario of a breast pump wearing reminder method provided in an embodiment of the present application;

[0111] FIG24 is a flow chart of a breast pump wearing reminder method provided by an embodiment of the present application;

[0112] FIG25 is a diagram of a reminder page for left and right side wearing in a breast pump wearing reminder method provided by an embodiment of the present application;

[0113] FIG26 is a schematic diagram of a correct wearing method for a breast pump provided by an embodiment of the present application;

[0114] FIG. 27 is another schematic diagram of the correct wearing method of the breast pump provided in an embodiment of the present application.

[0115] FIG28 is a schematic diagram of a wearing failure in the wearing reminder method of a breast pump provided by an embodiment of the present application;

[0116] FIG29 is another schematic diagram of a wearing failure in the breast pump wearing reminder method provided by an embodiment of the present application;

[0117] FIG30 is a schematic structural diagram of a breast pump wearing reminder system provided in an embodiment of the present application;

[0118] FIG31 is a schematic structural diagram of the electronic device provided in this application.

[0119] FIG32 is a schematic diagram of a scenario of a breast pump wearing guidance method provided in an embodiment of the present application;

[0120] FIG33 is a flowchart of a method for guiding the wearing of a breast pump provided in an embodiment of the present application;

[0121] FIG34 is a schematic diagram of wearing instructions in the wearing guidance method of a breast pump provided in an embodiment of the present application;

[0122] FIG35 is a schematic diagram of a successful breast pump wearing method according to an embodiment of the present application;

[0123] FIG36 is a schematic diagram of a wearing failure in the wearing guidance method of a breast pump provided by an embodiment of the present application;

[0124] FIG37 is another schematic diagram of the wearing instructions in the wearing guidance method of the breast pump provided in an embodiment of the present application;

[0125] FIG38 is a schematic diagram of the right side of the wearing instructions in the wearing guidance method of the breast pump provided in an embodiment of the present application;

[0126] FIG39 is a schematic structural diagram of a breast pump system provided in an embodiment of the present application;

[0127] FIG40 is another structural diagram of a breast pump system provided in an embodiment of the present application;

[0128] FIG41 is a schematic structural diagram of the electronic device provided in this application.

[0129] FIG42 is a schematic diagram of a scenario of a method for recording the wearing position of a breast pump provided in an embodiment of the present application;

[0130] FIG43 is a flowchart of a method for recording the wearing position of a breast pump provided in an embodiment of the present application;

[0131] FIG44 is a schematic diagram of a wearing mark interface in a method for recording a wearing position of a breast pump provided in an embodiment of the present application;

[0132] FIG45 is another schematic diagram of a wearing mark interface in the method for recording the wearing position of a breast pump provided in an embodiment of the present application;

[0133] FIG46 is another flow chart of a method for recording the wearing position of a breast pump provided in an embodiment of the present application;

[0134] FIG47 is another flow chart of a method for recording the wearing position of a breast pump provided in an embodiment of the present application;

[0135] FIG48 is a schematic structural diagram of a breast pump wearing position recording device provided in an embodiment of the present application;

[0136] FIG49 is another structural diagram of the breast pump wearing position recording device provided in an embodiment of the present application;

[0137] FIG50 is another structural diagram of the breast pump wearing position recording device provided in an embodiment of the present application;

[0138] Figure 51 is a schematic structural diagram of the electronic device provided in this application. DETAILED DESCRIPTION

[0139] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.

[0140] The present application provides a method, device, storage medium, bra and system for detecting the wearing position of a breast pump.

[0141] The breast pump wearing position detection device provided by the present application can be integrated into an electronic device, which can be directly or indirectly connected to the electronic device through wired or wireless communication. The electronic device can be a smartphone, tablet computer, laptop computer, desktop computer, smart speaker or smart watch, etc., but is not limited to this. In addition, the electronic device can also be connected to a server. The server can be an independent physical server, or a server cluster or distributed system composed of multiple physical servers. It can also be a cloud server that provides basic cloud computing services such as cloud services, cloud databases, cloud computing, cloud functions, cloud storage, network services, cloud communications, middleware services, domain name services, security services, CDN, and big data and artificial intelligence platforms. This application does not limit this.

[0142] For example, referring to FIG. 1 , the present application provides a device for detecting the wearing position of a breast pump. The device is integrated into a terminal 10, which can be a mobile phone, tablet computer, or independently configured operation control device. When the terminal 10 receives a completion operation for wearing a target breast pump, it obtains sensing data between the target breast pump and the bra. The sensing data is data obtained by the target breast pump sensing a sensor provided on the bra, or by the sensor provided on the bra sensing the target breast pump. The target breast pump 20 can be worn on either the user's left or right breast. After receiving the sensing data, the terminal 10 determines a detection result of the wearing position of the target breast pump based on the sensing data.

[0143] By differentiating the sensing data between the target breast pump and the sensor on the left cup of the bra, or between the target breast pump and the sensor on the right cup of the bra, it is determined whether the target breast pump is worn on the left breast or the right breast. For example, the sensing data can be differentiated based on the presence / absence of the signal, strength / weakness, differentiation settings, signal type, etc.

[0144] The target breast pump and the sensor set on the bra can be used to distinguish the sensing data by whether they sense each other. For example, a sensor is set on the left cup of the bra, and no sensor is set on the right cup of the bra. The target breast pump is placed inside the bra. If the target breast pump senses the sensor, it can be determined that the target breast pump is worn on the left side at this time. If the target breast pump does not sense the sensor, it can be determined that the target breast pump is worn on the right side at this time. The sensor can also be set in the middle of the bra, that is, between the two cups, and sensors are set on the left / right side of the target breast pump. For example, a sensor is set on the left side of the target breast pump, and the target breast pump is placed inside the bra. If the target breast pump senses the sensor, it can be determined that the target breast pump is worn on the right side at this time. If the target breast pump does not sense the sensor, it can be determined that the target breast pump is worn on the left side at this time.

[0145] The sensing data can be distinguished by the size, strength, etc. of the sensing data between the target breast pump and the sensor set on the bra. For example, a first sensor is set on the left cup of the bra, and a second sensor is set on the right cup of the bra. The first sensor is different from the second sensor. The target breast pump is placed inside the bra. If the target breast pump senses the first sensor, it can be determined that the target breast pump is worn on the left side at this time. If the target breast pump senses the second sensor, it can be determined that the target breast pump is worn on the right side at this time.

[0146] The breast pump wearing position detection method provided by the present application can obtain the sensing data between the target breast pump and the bra when the wearing completion operation for the target breast pump is received, and output the wearing position detection result of the target breast pump through the position detection strategy corresponding to the sensing data. Therefore, after the user wears the breast pump, there is no need to manually set the wearing position of the breast pump. The wearing position of the breast pump can be automatically identified, specifically whether the breast pump is worn on the left breast or the right breast, thereby improving the reliability of the milk suction data recorded by the breast pump.

[0147] The present application provides a method for detecting the wearing position of a breast pump, comprising: upon receiving a wearing completion operation for a target breast pump, obtaining sensing data from the target breast pump or a sensor; determining a data type of the sensing data; and determining a wearing position detection result of the target breast pump based on a position detection strategy corresponding to the data type.

[0148] Please refer to Figure 2, which is a flow chart of the method for detecting the wearing position of a breast pump provided by this application. The specific flow of the method for detecting the wearing position of a breast pump can be as follows:

[0149] 101. When a wearing completion operation for a target breast pump is received, sensing data of the target breast pump or sensor is acquired.

[0150] The target breast pump is the breast pump currently being worn. Generally speaking, breast pumps are configured in pairs, used to express milk from the mother's left and right breasts respectively. That is, the breast pump purchased by the user may include a first breast pump and a second breast pump. When wearing the breast pump, the user can wear the first breast pump first or the second breast pump first, or the first breast pump first on the left breast or the right breast. In addition, the user can wear the breast pump for only one breast or both breasts at the same time, and the specific choice can be made according to the actual situation.

[0151] For example, after the user triggers the wearing operation for the target breast pump, the sensing data between the sensor provided on the target breast pump and the sensor provided on the bra is transmitted to the electronic device via wireless or Bluetooth.

[0152] In addition, the sensor can also be an iron sheet or iron block. The target breast pump has a built-in Hall sensor. Specifically, taking a breast pump set as an example, the breast pump set includes a first breast pump and a second breast pump. A first Hall sensor is set on the left / right side of the first breast pump, and a detachable strong magnetic module is set on the right / left side. A second Hall sensor is set on the left side of the second breast pump, and a detachable strong magnetic module is also set on the right side. The sensor (taking the iron sheet as an example) is set in the middle of the bra (i.e., the heart of the bra). Before use, the detachable strong magnetic module on the target breast pump is removed and adsorbed on the iron sheet in the middle of the bra. Then, the target breast pump is fixed inside the bra and started to use. When the target breast pump detects the strong magnetic module fixed in the middle of the bra through the Hall sensor on the left side of the device, it can be determined that the target breast pump is worn on the right side. Similarly, if the target breast pump does not detect the strong magnetic module fixed in the middle of the bra through the Hall sensor on the left side of the device, it can be determined that the target breast pump is worn on the left side.

[0153] Alternatively, the sensor can be configured as a magnetic element, with a Hall effect sensor positioned on the left or right side of the target breast pump. For example, a first Hall effect sensor can be positioned on the left side of the breast pump, and the sensor can be positioned in the middle of the bra. The target breast pump is placed inside the bra and used. When the target breast pump detects the sensor via the Hall effect sensor, it can be determined that the target breast pump is being worn on the right side. Similarly, if the target breast pump does not detect the sensor via the Hall effect sensor, it can be determined that the target breast pump is being worn on the left side, thereby detecting whether the target breast pump is being worn on the left or right side. If two breast pumps are being worn, since the position of one breast pump has been determined using the above method, the other breast pump is automatically determined to be worn on the left breast. For example, if the first breast pump is detected as being worn on the left side, the other breast pump is automatically determined to be worn on the right side. In some embodiments, the positions of the sensor and the Hall effect sensor can be interchanged, such that the Hall effect sensor is positioned in the middle of the bra (between the two cups), and the magnetic element is positioned on the left or right side of the breast pump.

[0154] It should be noted that in this embodiment, if the user wears the breast pump on both sides, the user only needs to remove the strong magnetic module once and adsorb it on the iron sheet in the middle of the bra. Therefore, the user does not need to manually set the wearing position of the breast pump.

[0155] Optionally, in some embodiments, the sensor provided on the target breast pump may be a capacitive sensor or an infrared sensor. A capacitive sensor uses various types of capacitors as sensing elements, converting the measured physical or mechanical quantity into a change in capacitance. It is essentially a capacitor with variable parameters. Capacitive sensors are widely used to measure displacement, angle, vibration, speed, pressure, component analysis, and dielectric properties. The most commonly used are parallel plate capacitors and cylindrical capacitors.

[0156] Infrared sensors utilize infrared light for data processing, offering advantages such as high sensitivity. They can also control the operation of drive units. They are commonly used for non-contact temperature measurement, gas composition analysis, and non-destructive testing, and are widely used in fields such as medicine, military affairs, space technology, and environmental engineering. For example, using infrared sensors to remotely measure the body's surface temperature using thermal imaging can reveal areas with abnormal temperatures. In this application, the distance and body surface temperature collected by the infrared sensor can be used to determine whether the user is currently wearing a breast pump.

[0157] 102. Determine a wearing position detection result of the target breast pump based on the sensing data;

[0158] It should be noted that in the embodiment of the present application, a sensor is provided on the bra. The sensor can be a tag based on Near Field Communication (NFC) technology. When the user uses a breast pump, the NFC tag can be detachably provided on the bra or built into the bra. For example, a small pocket can be provided on the bra to place or remove the NFC tag, or the NFC tag can be attached to or removed from the bra, or any other detachable connection method can be used. Alternatively, the NFC tag can be integrated into the bra, thus forming a bra with an NFC tag. The data of the NFC tag is collected by the NFC sensor in the target breast pump. NFC is an evolution of the integration of contactless radio frequency identification and interconnection technologies. By integrating the functions of an inductive card reader, an inductive card, and point-to-point communication on a single chip, it uses mobile terminals to realize applications such as mobile payment, electronic ticketing, access control, mobile identity recognition, and anti-counterfeiting. In the present application, it is used to sense the position of the breast pump.

[0159] Optionally, in some embodiments, an NFC tag may be set on one side of the bra and not on the other side. For example, an NFC tag may be set on the left side of the bra and not on the right side. The target breast pump is placed inside the bra and started to be used. When the target breast pump detects the NFC tag through the NFC sensor, it can be determined that the target breast pump is worn on the left side. If the target breast pump does not detect the NFC tag through the NFC sensor, it can be determined that the target breast pump is worn on the right side. In this way, it can be detected whether the target breast pump is worn on the left or right side. In some embodiments, the position of the NFC sensor and the position of the NFC tag can be interchanged, that is, the NFC sensor is set on the bra and the NFC tag is set on the breast pump. Alternatively, two different NFC tags can be pre-set on the left and right sides of the bra, and data information about the two different NFC tags can be pre-stored, including the corresponding positions (left / right) of the two different NFC tags. When the target breast pump is turned on and used, the target breast pump is placed inside the bra. If the target breast pump detects the left NFC tag through its NFC sensor, it can be determined that the target breast pump is being worn on the left side. If the target breast pump detects the right NFC tag through its NFC sensor, it can be determined that the target breast pump is being worn on the right side. In this way, it can be detected whether the target breast pump is being worn on the left or right side. The NFC tag reader inside the target breast pump recognizes the closer NFC tag sticker, reads the data inside the NFC tag sticker, distinguishes between the left and right sides based on the data, and automatically identifies the left or right position of the device during use.

[0160] The sensor can also be an iron sheet or an iron block, but, unlike the previous embodiment, the sensor is set on one side of the bra, for example, on the left or right side of the bra. In actual use, the capacitive sensor and the infrared sensor collect data at the same time. The capacitive sensor collects data from the iron sheet, while the infrared sensor collects data from the target breast pump and the human breast. That is, the infrared data of the infrared sensor can be used to determine that the user is currently wearing the target breast pump. If the sensor is set on the left side of the bra, when the capacitive sensor collects data from the sensor, the infrared data and the sensing data are reported to the electronic device; when the capacitive sensor does not collect data from the sensor, the infrared data is reported to the electronic device. Subsequently, the wearing position of the breast pump can be determined based on the reported data.

[0161] Optionally, in some embodiments, the sensor may also be a signal sensor, wherein the two sides of the signal sensor respectively emit a first sensing signal and a second sensing signal, for example, the first sensing signal is emitted on the left side and the second sensing signal is emitted on the right side, with the first sensing signal being different from the second sensing signal. When the user wears the breast pump, the target breast pump can collect the first sensing signal or the second sensing signal to subsequently determine the wearing position. When the target breast pump is placed inside the bra and begins to be used, when the target breast pump detects the first sensing signal or the second sensing signal via the signal sensor, it can be determined whether the target breast pump is worn on the left or right side. If two breast pumps are worn, since the position of one breast pump has been determined according to the above method, the other breast pump is automatically known to be worn on the left breast. For example, if the first breast pump is detected to be worn on the left side, the other breast pump is automatically determined to be worn on the right side. The wearing position can be determined by distinguishing the first and second sensing signals based on their strength.

[0162] 103. Record the milking data of the breast pumps on different breasts.

[0163] Feedback / broadcast of the wearing position of breast pumps on different sides for user confirmation and correction of system judgment errors.

[0164] It can be understood that in the present application, different sensors and inductors correspond to different position detection strategies. For example, for Hall data, the corresponding position detection strategy is to detect whether the target breast pump can collect the signal of the strong magnetic module located at the heart of the bra; and for composite sensing data such as capacitive sensors and infrared sensors, the position is determined by judging whether the capacitive sensor is present or not.

[0165] For the same pair of breast pumps, the sensors installed thereon can be the same or different, that is, the bras can also be equipped with different sensors. For example, breast pump 1 has a built-in Hall sensor and a strong magnetic module, and breast pump 2 has a built-in NFC acquisition device. An NFC tag is set on the left side of the bra, and an iron sheet is set at the heart. When the user wears it on one side, if the user chooses breast pump 1, when using it, the strong magnetic module is adsorbed on the iron sheet. The Hall sensor of breast pump 1 will report the collected data to the electronic device. After receiving the sensing data, the electronic device analyzes its data type as Hall data. At this time, the position detection strategy corresponding to the Hall data is determined as follows: determine whether the data of the strong magnetic module is collected. If it is collected, it is determined that the user is currently wearing it on the right side; if not, it is determined that the user is currently wearing it on the left side. In addition, if the user selects breast pump 2, only the left side has an NFC tag. When the user wears it, if the reported sensing data contains NFC data, it is determined that the user is wearing it on the left side; if the reported sensing data does not contain NFC data, it is determined that the user is wearing it on the right side. That is, the position detection strategy is to determine the presence or absence of NFC data.

[0166] In some embodiments, breast pump 1 has a built-in capacitive sensor, and breast pump 2 has a built-in NFC acquisition device. An iron sheet is set on the left side of the bra, and an NFC tag is set on the right side. When the bra is worn on one side, if breast pump 1 collects capacitance data, it is determined that the user is wearing it on the left side; if no capacitance data is collected, it is determined that the user is wearing it on the right side; if breast pump 2 collects NFC data, it is determined that the user is wearing it on the right side; if no NFC data is collected, it is determined that the user is wearing it on the left side. In this way, the user does not need to disassemble the breast pump. During use, the user only needs to wear the breast pump to complete the detection of its wearing position. The entire detection process is imperceptible to the user. Not only can the wearing position of the breast pump be automatically set, improving the reliability of the milking data recorded by the breast pump, but also improving the user experience.

[0167] The above completes the wearing position detection process of the breast pump of this application.

[0168] As described above, the present application provides a method for detecting the wearing position of a breast pump. When a wearing completion operation is received for a target breast pump, sensing data of a bra corresponding to the target breast pump is obtained, then a data type of the sensing data is determined, and finally, based on a position detection strategy corresponding to the data type, a wearing position detection result of the target breast pump is output. In the method for detecting the wearing position of a breast pump provided by the present application, when a wearing completion operation is received for a target breast pump, sensing data of a bra corresponding to the target breast pump can be obtained, and a wearing position detection result of the target breast pump is output based on a position detection strategy corresponding to the sensing data. As a result, after the user wears the breast pump, there is no need to manually set the wearing position of the breast pump, thereby improving the reliability of the milk pumping data recorded by the breast pump.

[0169] An embodiment of the present application provides a device for detecting the wearing position of a breast pump. The device includes a sensor, which is arranged on a bra and is used to sense a sensor arranged on the breast pump to detect whether the target breast pump is worn on the left breast or the right breast.

[0170] Accordingly, referring to FIG3 , an embodiment of the present application provides a breast pump wearing position detection device (hereinafter referred to as the detection device), which includes a bra body 201 and a sensor 202, as follows:

[0171] The bra body 201 is used to be worn on the breast, and a breast pump can be placed between the bra body 201 and the breast to suck milk from the breast;

[0172] The sensor 202 is provided on the bra body 201;

[0173] The controller is arranged on the breast pump body and is used for detecting whether the breast pump is worn on the left breast or the right breast according to the sensing information of the sensor and the sensor.

[0174] Optionally, referring to FIG4 , an embodiment of the present application provides a breast pump wearing position detection system. The wearing position detection system may include a breast pump device 301 and a sensor 302 , and may include:

[0175] a breast pump device 301 for expressing milk and comprising a sensor 302;

[0176] The sensor 302 is configured to be mounted on the bra and to sense the target breast pump on the left or right breast.

[0177] Optionally, in some embodiments, the sensor 302 is configured to be disposed on the left or right side of the bra, and the breast pump is configured to determine whether the breast pump is worn on the left breast or the right breast based on whether the sensor senses the sensor.

[0178] Optionally, in some embodiments, the sensor 302 is arranged in the middle position of the bra.

[0179] Optionally, referring to FIG5 , an embodiment of the present application provides a breast pump wearing position detection system. The wearing position detection system may include a breast pump device 301 , a bra body 302 , and a sensor 303 . Specifically, the system may be as follows:

[0180] a breast pump device 301 for expressing milk and comprising a sensor;

[0181] The bra body 302 is used to be worn on the breast, and a breast pump can be placed between the bra body 302 and the breast to suck milk from the breast;

[0182] Sensor 303 is provided on the bra body 302 and is used to sense with sensor 301 to detect whether the target breast pump is worn on the left breast or the right breast.

[0183] In the breast pump wearing position detection method provided in the present application, when a wearing completion operation for a target breast pump is received, sensing data of the bra corresponding to the target breast pump can be obtained, and the wearing position detection result of the target breast pump can be output through the position detection strategy corresponding to the sensing data. Therefore, after the user wears the breast pump, there is no need to manually set the wearing position of the breast pump, thereby improving the reliability of the milk pumping data recorded by the breast pump.

[0184] In addition, the present application also provides an electronic device, as shown in FIG6 , which shows a schematic diagram of the structure of the electronic device involved in the present application. Specifically, the electronic device may include components such as a processor 501 with one or more processing cores, a memory 502 with one or more computer-readable storage media, a power supply 503, and an input unit 504. Those skilled in the art will understand that the electronic device structure shown in FIG6 does not constitute a limitation on the electronic device, and may include more or fewer components than shown in the figure, or combine certain components, or arrange the components differently. Among them:

[0185] The processor 501 is the control center of the electronic device. It connects the various parts of the entire electronic device using various interfaces and lines. By running or executing software programs and / or modules stored in the memory 502 and accessing data stored in the memory 502, it performs various functions of the electronic device and processes data, thereby monitoring the electronic device as a whole. Optionally, the processor 501 may include one or more processing cores; preferably, the processor 501 may integrate an application processor and a modem processor, wherein the application processor primarily processes the operating system, user interface, and application programs, and the modem processor primarily handles wireless communications. It is understood that the modem processor may not be integrated into the processor 501.

[0186] The memory 502 can be used to store software programs and modules. The processor 501 executes various functional applications and data processing by running the software programs and modules stored in the memory 502. The memory 502 may mainly include a program storage area and a data storage area, wherein the program storage area may store an operating system, an application required for at least one function (such as a sound playback function, an image playback function, etc.), etc.; the data storage area may store data created according to the use of the electronic device, etc. In addition, the memory 502 may include a high-speed random access memory, and may also include a non-volatile memory, such as at least one disk storage device, a flash memory device, or other volatile solid-state storage device. Accordingly, the memory 502 may also include a memory controller to provide the processor 501 with access to the memory 502.

[0187] The electronic device also includes a power supply 503 for supplying power to various components. Preferably, the power supply 503 can be logically connected to the processor 501 via a power management system, thereby enabling the power management system to manage charging, discharging, and power consumption. The power supply 503 can also include one or more DC or AC power supplies, a recharging system, a power failure detection circuit, a power converter or inverter, a power status indicator, and other arbitrary components.

[0188] The electronic device may further include an input unit 504, which may be used to receive input digital or character information and generate keyboard, mouse, joystick, optical or trackball signal input related to user settings and function control.

[0189] Although not shown, the electronic device may further include a display unit, etc., which will not be described in detail here. Specifically, in this embodiment, the processor 501 in the electronic device will load the executable files corresponding to the processes of one or more application programs into the memory 502 according to the following instructions, and the processor 501 will run the application programs stored in the memory 502 to implement various functions as follows:

[0190] When a wearing completion operation for a target breast pump is received, sensing data of the target breast pump or sensor is acquired; and based on the sensing data, a wearing position detection result of the target breast pump is determined.

[0191] Option 2:

[0192] For example, referring to FIG. 7 , the present application provides a device for detecting the wearing position of a breast pump. The device is integrated into a terminal 10, such as a mobile phone, a tablet computer, an independently configured operation control device, or a breast pump. The mobile phone 10 acts as a data receiver and a computing center. When the target breast pump 10 is detected to be worn, the device obtains human body data collected by the sensor. Finally, based on the human body data, the device determines the wearing position of the target breast pump. For example, the device determines that the breast pump 20 is worn on the left breast, or determines that the breast pump 20 is worn on the right breast. Optionally, in some embodiments of the present application, the mobile phone 10 can control the flashing of the working indicator light of the breast pump 20 by issuing control instructions. For example, the device first controls the working indicator light of the breast pump 20 to flash multiple times and displays on the display screen of the mobile phone 10: "The breast pump is worn on the left breast"; or controls the working indicator light of the breast pump 20 to flash multiple times and displays on the display screen of the mobile phone 10: "The breast pump is worn on the right breast". In this way, the user can determine whether the breast pump can record correct milk pumping data and can confirm or correct the stored left and right wearing results through the interface interaction.

[0193] The breast pump wearing position detection method provided in the present application can automatically set the wearing position of the target breast pump by using the human body data collected by the sensor when the user wears the target breast pump, thereby improving the reliability of the milk suction data recorded by the breast pump.

[0194] The present application provides a method for detecting the wearing position of a breast pump, comprising: when detecting that a target breast pump is in a wearing state, acquiring human body data collected by a sensor; and determining a wearing position result of the target breast pump based on the human body data.

[0195] Please refer to Figure 8, which is a flow chart of the method for detecting the wearing position of a breast pump provided by this application. The specific flow of the method for detecting the wearing position of a breast pump can be as follows:

[0196] 101. A sensor is provided on a breast pump and is used to collect human body data.

[0197] 102. When it is detected that the target breast pump is in a worn state, obtain human body data collected by the sensor.

[0198] The target breast pump is the breast pump currently being worn, and the body data is human vital sign data collected by a sensor. The body data can be used to represent human information. Optionally, the body data includes at least one of blood oxygen concentration, heart rate data, breast shape, transmissivity, body fat percentage, muscle mass, hardness, or elasticity. The sensor can be located within the breast pump. For example, the sensor can be located on a bra; when it detects that the target breast pump is being worn, a collection instruction is sent to the sensor on the bra, which then acquires the body data collected by the sensor. For another example, the sensor can be located within the breast pump, and when the target breast pump is powered on, the sensor collects body data in real time. When it detects that the target breast pump is being worn, the body data collected by the sensor can be directly acquired.

[0199] It is understandable that breast pumps are generally sold in pairs. Therefore, in order to detect whether the breast pump is worn on both sides, in some embodiments of the present application, the sensor may include a first sensor and a second sensor, and the first sensor is installed in the bra or the breast pump, or the second sensor is installed in the bra or the breast pump. The specific setting can be made according to actual conditions.

[0200] Optionally, the first sensor and the second sensor may be sensors of the same type, such as both being infrared sensors. For example, specifically, infrared sensors are provided on both breast pump a and breast pump b, and are respectively the first infrared sensor and the second infrared sensor. When a user wears a breast pump on one side, infrared data can be collected by the first infrared sensor and the second infrared sensor provided on breast pump a and breast pump b, respectively. If the user wears the breast pump on the left side and is using breast pump b, the human body data collected by the first infrared sensor will be empty, while the human body data collected by the second infrared sensor will be present. If the user is using breast pump a, the human body data collected by the first infrared sensor will be present, while the human body data collected by the second infrared sensor will be empty.

[0201] It should be noted that in this application, the principle of using infrared sensors to measure human body data is actually to measure human body temperature, and the methods of measuring human body temperature can be divided into two categories: contact and non-contact. Contact sensors include thermocouples, thermistors, RTDs and semiconductor temperature sensors. The signal output by this type of sensor actually reflects the change in their own temperature. They need to be in full contact with the object being measured so that their temperatures reach the same level. Non-contact temperature measurement works by utilizing the relationship between the thermal radiation of an object and its temperature. Heat is usually transferred by three methods: heat conduction, convection, and thermal radiation. Thermal radiation is essentially an electromagnetic wave of a certain wavelength, ranging from 0.7 to 1000 microns. The actual wavelength range of thermal radiation measured using an infrared thermometer is 0.7 to 14 microns, and most objects radiate strongest within this range.

[0202] When an object absorbs energy (including heat), its temperature rises, and it also radiates heat energy. At thermal equilibrium, the absorbed heat energy (Wa) equals the emitted heat energy (We). The object's temperature is reflected in the radiated heat energy in two forms. Infrared sensors measure radiation energy in two different wavelengths and calculate the object's temperature. This method is simple but can be affected by the object's surface emissivity. Infrared sensors can measure an object's temperature based on the two principles described above. They typically include an optical lens, an infrared detector, signal amplification and conditioning, an ADC, a display, and an operating interface. The infrared sensor is the core of the sensor. It can be divided into two categories: temperature detection and photoelectric detection.

[0203] Field of View (FOV) is a crucial concept in infrared sensors. The value displayed on a thermometer reflects the average temperature within the FOV. Infrared sensors typically provide a ratio between the apparent measurement distance and the FOV radius. The larger this ratio, the smaller the FOV at the same measurement distance, indicating a more accurate measurement location. Therefore, in some embodiments, the sensor is controlled to collect body data only when it detects that the target breast pump is being worn and the cup is in contact with the breast, thereby ensuring detection accuracy.

[0204] Optionally, both the first and second sensors are electrical signal sensors that determine heartbeat status by measuring electrical signals on the body surface. Compared to other sensors, electrical signal sensors offer advantages such as high precision, good reliability, and simplified data processing. In the case of unilateral breast pumping, the heartbeat vibration level of the left breast is significantly higher than that of the right breast. Therefore, wearing position detection can be based on this difference.

[0205] It should be noted that for the case of wearing a breast pump on both sides, in this application, the position of the breast pump worn first is first determined. After the position of the breast pump is determined, when the sensor of the other breast pump detects the corresponding human body data, the position wearing result is directly generated. Optionally, in the scenario of detecting heartbeats, the first sensor and the second sensor can also be optical signal sensors. The optical signal sensor can be used to measure indicators such as heart rate and cardiovascular stroke power. It detects changes in blood flow by reflecting and absorbing light. The optical signal sensor does not need to touch the skin and does not harm the user's body.

[0206] Optionally, both the first and second sensors are blood oxygen sensors. The blood oxygen sensor works by measuring the oxygen concentration in the blood using an optical sensor. This is achieved by using a built-in transmitter and receiver to measure the amount of light absorbed by the blood. When light passes through the blood, because oxygen molecules in the blood absorb light of a certain wavelength, the lower the blood oxygen concentration in the tissue being tested, the more light is absorbed, and the weaker the light intensity received by the receiver. It should be noted that before using the blood oxygen sensor to detect the wearing position, the blood oxygen levels of the left and right breasts must be recorded using the blood oxygen sensor of any breast pump. Subsequent wear position detection can be performed based on this pre-recorded data.

[0207] Optionally, in some embodiments of the present application, the first sensor and the second sensor are sensors of the same type.

[0208] Optionally, in some embodiments of the present application, the first sensor and the second sensor are sensors of different types.

[0209] 103. Determine the wearing position of the target breast pump based on the human body data.

[0210] In this application, the difference between real-time collected body data and pre-stored body data can be used to automatically set the target breast pump wearing position. For example, if the sensor is a blood oxygen sensor, the body data is compared with pre-stored data. The pre-stored blood oxygen concentration data shows: 95% for the left chest and 90% for the right chest. If the real-time collected body data has a blood oxygen concentration of 94%, the target breast pump can be determined to be worn on the left chest. For another example, if the real-time collected body data has a blood oxygen concentration of 92.5%, which is the average of the pre-stored data, the target breast pump can be controlled to vibrate or play a prompt message: "Please manually set the position."

[0211] Optionally, in some embodiments, the target breast pump wearing position can be automatically set based on differences in body parts. For example, if the sensor is an electrical signal sensor, the heartbeat data collected by the sensor on the left chest is significantly different from the heartbeat data collected on the right chest. For example, the vibration intensity of the heartbeat collected on the left chest is higher than that collected on the right chest. Based on this, the target breast pump wearing position can be automatically set.

[0212] Optionally, in some embodiments, the sensor may be a laser sensor. Specifically, the shape data of the user's left breast and right breast may be pre-stored. When in use, the target breast pump wearing position may be automatically set according to the shape difference between the left and right breasts of the human body.

[0213] Optionally, in some embodiments, the sensor may be an infrared or ultrasonic sensor. Specifically, the transmittance, body fat percentage, muscle content, etc. of the user's left and right breasts may be pre-stored. When in use, the target breast pump wearing position may be automatically set based on the differences in transmittance, body fat percentage, muscle content, etc. between the left and right breasts of the human body.

[0214] In other embodiments, the sensor may be a sensor for detecting elasticity or hardness. Specifically, the elasticity or hardness of the user's left and right breasts may be pre-stored. During use, the target breast pump wearing position may be automatically set based on the differences in elasticity or hardness between the left and right breasts of the human body.

[0215] Optionally, in some embodiments, the first sensor and the second sensor may be of the same or different sensor types. Furthermore, the first sensor may be composed of multiple sensors, and the second sensor may also be composed of multiple sensors. These multiple sensors may be multiple identical sensors, multiple different sensors, or a combination of some identical sensors and some different sensors. The specific configuration can be determined based on actual conditions.

[0216] Furthermore, when the user wears the breast pump on both sides, the left / right wearing result of the breast pump is automatically set according to the human body data collected by the first sensor and the second sensor.

[0217] For example, a first sensor is provided on a first breast pump, and a second sensor is provided on a second breast pump. The first sensor and the second sensor are the same sensor, such as an electrical signal sensor, which is used to detect the vibration degree of the mind. The actual wearing positions of the user are: the first breast pump is worn on the left chest, and the second breast pump is worn on the right chest. From the collected human body data, it can be seen that the vibration degree of the first breast pump is greater than the vibration degree of the second breast pump. Therefore, the first breast pump is automatically set to be worn on the left side and the second breast pump is worn on the right side.

[0218] For another example, a first sensor is provided on a first breast pump, and a second sensor is provided on a second breast pump. The first sensor and the second sensor are different sensors, e.g., the first sensor is an electrical signal sensor, and the second sensor is a laser sensor. The actual wearing positions of the user are: the first breast pump is worn on the left chest, and the second breast pump is worn on the right chest. The collected human body data is compared with the pre-stored data, that is, the pre-stored breast data is compared with the data of the second sensor, and it is determined that the data collected by the second sensor is the data of the right breast; the pre-stored heartbeat vibration level is compared with the data collected by the first sensor as the data of the left breast, so the first breast pump can be automatically set to be worn on the left and the second breast pump to be worn on the right.

[0219] Optionally, in some embodiments, the wearing position information prompt may be provided on the terminal device or the breast pump.

[0220] Optionally, in some embodiments of the present application, after determining the position wearing result, the breast pump can be controlled to perform operations such as flashing lights, voice prompts or vibration prompts by issuing the same or different control instructions, so that the user can know whether the position of the breast pump currently worn displayed on the electronic device is consistent with the position of the breast pump actually worn.

[0221] Furthermore, the milk suction data corresponding to different breasts can be recorded based on the wearing position results.

[0222] Optionally, in some embodiments of the present application, the target breast pump may be a breast pump that has been used by the user. That is, each breast pump has corresponding milk suction data recorded. Therefore, in order to improve the reliability of subsequent milk suction data, after determining the position wearing result, the historical wearing result of each breast pump may be obtained to record the milk suction data corresponding to different breasts. In other words, the step of "recording the milk suction data corresponding to different breasts according to the position wearing result" may specifically include:

[0223] Obtain historical wearing information of the target breast pump;

[0224] According to the historical wearing information and the wearing position results, the milk suction data corresponding to different breasts are recorded.

[0225] For example, if the first breast pump was historically worn on the left breast and is currently worn on the right breast, and the second breast pump was historically worn on the right breast and is currently worn on the left breast, the historical milk suction data of the first breast pump can be transferred to the milk suction data record corresponding to the second breast pump, and the historical milk suction data of the second breast pump can be transferred to the milk suction data record corresponding to the first breast pump, thereby completing the recording of milk suction data corresponding to different breasts.

[0226] Optionally, in some embodiments of the present application, the wearing position detection method provided by the present application may further include:

[0227] In response to the position change operation for the target breast pump, the milk expression data of the target breast pump stored in the database is updated.

[0228] The position change operation can be triggered by an electronic device. For example, the electronic device obtains the historical wearing information of the breast pump: during the historical period, the breast pump was worn on the left side; and the current wear is on the right breast. At this time, the position change operation is triggered, and the historical milk suction data of the breast pump is transferred to the database corresponding to another breast pump. At the same time, the database corresponding to the other breast pump is transferred to the current database to update the milk suction data of the target breast pump stored in the database.

[0229] The above completes the wearing position detection process of the breast pump of this application.

[0230] As described above, the present application provides a method for detecting the wearing position of a breast pump. A sensor is provided on the breast pump and is configured to collect human body data. When a target breast pump is detected to be in a worn state, the human body data collected by the sensor is acquired. Then, based on the human body data, the wearing position of the target breast pump is determined. In the method for detecting the wearing position of a breast pump provided in the present application, when a user wears the target breast pump, the human body data collected by the sensor can be used to automatically determine the wearing position of the target breast pump, thereby improving the reliability of the milking data recorded by the breast pump.

[0231] Accordingly, referring to FIG9 , an embodiment of the present application provides a breast pump, which includes a breast pump body 201 and a sensing component 202 , specifically as follows:

[0232] The breast pump body 201 is used to be worn on the breast to suck milk;

[0233] Optionally, in some embodiments, a control panel for displaying the wearing position of the breast pump is provided on the breast pump body 201 .

[0234] The sensing component 202 is provided on the breast pump body 201 and is used to collect human body data so as to determine the wearing position result of the target breast pump based on the human body data.

[0235] Optionally, in some embodiments, the sensing component 202 is used to collect human physiological data to determine whether the target breast pump is worn on the left breast or the right breast based on the human body data.

[0236] Optionally, in some embodiments, the sensing component 202 can be used to detect at least one of human blood oxygen concentration, heart rate data, breast shape, transmittance, body fat percentage, muscle content, hardness or elasticity.

[0237] Optionally, in some embodiments, the sensing component 202 is at least one of a capacitive sensor, an inductive sensor, a hardness sensor, an infrared sensor, and an ultrasonic sensor.

[0238] As described above, the present application provides a breast pump, comprising a breast pump body 201 and a sensing assembly 202. The breast pump body 201 is configured to be worn on a breast to extract milk from the breast, and the sensing assembly 202 is disposed on the breast pump body 201. The sensing assembly 202 is configured to collect body data and, based on the body data, determine the position of a target breast pump. In the breast pump wearing position detection scheme provided in the present application, when a user wears the target breast pump, the body data collected by the sensor can be used to automatically determine the position of the target breast pump, thereby improving the reliability of the milking data recorded by the breast pump.

[0239] In addition, the present application also provides an electronic device, as shown in FIG10, which shows a schematic diagram of the structure of the electronic device involved in the present application. Specifically, the electronic device may include a processor 301 with one or more processing cores, a memory 302 with one or more computer-readable storage media, a power supply 303, and an input unit 304. Those skilled in the art will understand that the electronic device structure shown in FIG10 does not constitute a limitation on the electronic device, and may include more or fewer components than shown in the figure, or combine certain components, or arrange the components differently. Among them:

[0240] The processor 301 is the control center of the electronic device. It connects all parts of the electronic device using various interfaces and lines. By running or executing software programs and / or modules stored in the memory 302 and accessing data stored in the memory 302, it performs various functions of the electronic device and processes data, thereby monitoring the electronic device as a whole. Optionally, the processor 301 may include one or more processing cores; preferably, the processor 301 may integrate an application processor and a modem processor, wherein the application processor primarily processes the operating system, user interface, and application programs, while the modem processor primarily handles wireless communications. It is understood that the modem processor may not be integrated into the processor 301.

[0241] The memory 302 can be used to store software programs and modules. The processor 301 executes various functional applications and data processing by running the software programs and modules stored in the memory 302. The memory 302 may mainly include a program storage area and a data storage area, wherein the program storage area may store an operating system, an application required for at least one function (such as a sound playback function, an image playback function, etc.), etc.; the data storage area may store data created according to the use of the electronic device, etc. In addition, the memory 302 may include a high-speed random access memory, and may also include a non-volatile memory, such as at least one disk storage device, a flash memory device, or other volatile solid-state storage device. Accordingly, the memory 302 may also include a memory controller to provide the processor 301 with access to the memory 302.

[0242] The electronic device also includes a power supply 303 for supplying power to various components. Preferably, the power supply 303 can be logically connected to the processor 301 via a power management system, thereby enabling the power management system to manage charging, discharging, and power consumption. The power supply 303 can also include one or more DC or AC power supplies, a recharging system, a power failure detection circuit, a power converter or inverter, a power status indicator, and other arbitrary components.

[0243] The electronic device may further include an input unit 304, which may be configured to receive input digital or character information and generate keyboard, mouse, joystick, optical or trackball signal inputs related to user settings and function control.

[0244] Although not shown, the electronic device may further include a display unit, etc., which will not be described in detail here. Specifically, in this embodiment, the processor 301 in the electronic device will load the executable files corresponding to the processes of one or more application programs into the memory 302 according to the following instructions, and the processor 301 will run the application programs stored in the memory 302 to implement various functions as follows:

[0245] A sensor is configured to be set on the breast pump and used to collect human body data; when it is detected that the target breast pump is in a wearing state, the human body data collected by the sensor is obtained; and based on the human body data, the wearing position result of the target breast pump is determined.

[0246] Option 3:

[0247] For example, referring to FIG11 , the present application provides a device for detecting the wearing position of a breast pump, which is integrated into a mobile phone 10. When a user wears a breast pump for both breasts (such as a first breast pump 21 and a second breast pump 22), the mobile phone 10 acts as a data receiver and a computing center. When it detects that the user triggers a bilateral wearing operation, the mobile phone 10 receives sensor data reported by the first breast pump 21. The sensor data is data collected by the sensor provided on the first breast pump 21 from the sensor of the second breast pump 22. Based on the sensor data, the mobile phone 10 determines the wearing position results of the first breast pump 21 and the second breast pump 22, such as determining that the first breast pump 21 is worn on the left breast and the second breast pump 22 is worn on the right breast. Optionally, in some embodiments, the mobile phone 10 can control the working indicator lights of the first breast pump 21 and the second breast pump 22 to flash by issuing control instructions, such as first controlling the working indicator light of the first breast pump 21 to flash multiple times, and displaying on the display screen of the mobile phone 10: the breast pump is worn on the left breast; then, controlling the working indicator light of the second breast pump 22 to flash multiple times, and displaying on the display screen of the mobile phone 10: the breast pump is worn on the right breast; thereby, the user can know whether the breast pump can record correct milk pumping data, and can confirm or correct the stored left and right wearing results through interface interaction.

[0248] The present application provides a method for detecting the wearing position of a breast pump. When a user wears a breast pump for both breasts, the method utilizes a sensor provided in the first breast pump to collect sensor data of the second breast pump. Based on the sensor data, the wearing positions of the first and second breast pumps can be automatically identified, thereby improving the reliability of the milking data recorded by the breast pumps.

[0249] The present application provides a method for detecting the wearing position of a breast pump, comprising: when a bilateral wearing operation is detected, receiving sensor data reported by a first breast pump, and determining wearing position results of the first breast pump and a second breast pump according to the sensor data.

[0250] Please refer to Figure 12, which is a flow chart of the method for detecting the wearing position of a breast pump provided by this application. The specific flow of the method for detecting the wearing position of a breast pump can be as follows:

[0251] 101. When a bilateral wearing operation is detected, receive sensor data reported by a first breast pump.

[0252] The sensor data is the sensing data collected between the sensor provided on the first breast pump and the sensor provided on the second breast pump. Generally speaking, breast pumps are configured in pairs, used to respectively extract milk from the mother's left and right breasts. That is, the breast pump purchased by the user may include a first breast pump and a second breast pump. It should be noted that, in this application, the breast pump provided with the sensor is referred to as the first breast pump, and the breast pump provided with the sensor is referred to as the second breast pump. Optionally, in some embodiments, the first breast pump is provided with only the sensor, and the second breast pump is provided with only the sensor. Of course, in other embodiments, the first breast pump may be provided with both the sensor and the sensor, while the second breast pump is provided with only the sensor.

[0253] Optionally, the sensor may be a Hall sensor, the inductor may be a magnetic module, a Hall sensor is provided on the left or right side of the first breast pump, and a magnetic module is provided on the left or right side of the second breast pump, or any other sensor and inductive element, such as a capacitive sensor and an ultra-wideband sensor, etc.

[0254] Example 1

[0255] Optionally, a Hall sensor may be provided on the left side of the first breast pump, and a magnetic module may be provided on the right side of the second breast pump. When a bilateral wearing operation is detected, if the Hall sensor and the magnetic module are detected to be inductively coupled to each other, it is determined that the first breast pump is worn on the right breast and the second breast pump is worn on the left breast. If the sensor data reported by the first breast pump is empty, it is determined that the first breast pump is worn on the left breast and the second breast pump is worn on the right breast, as shown in FIG13 .

[0256] Optionally, a Hall sensor may be provided on the right side of the first breast pump, and a magnetic module may be provided on the right side of the second breast pump. When a bilateral wearing operation is detected, if the Hall sensor and the magnetic module are detected to be inductively coupled to each other, it is determined that the first breast pump is worn on the left breast and the second breast pump is worn on the right breast. If the sensor data reported by the first breast pump is empty, it is determined that the first breast pump is worn on the right breast and the second breast pump is worn on the left breast.

[0257] Example 2

[0258] Optionally, Hall sensors may be provided on both the left and right sides of the first breast pump, and the two Hall sensors may be provided differently, namely, a first Hall sensor and a second Hall sensor, and a magnetic module may be provided on the second breast pump. For example, a first Hall sensor may be provided on the left side of the first breast pump and a second Hall sensor may be provided on the right side, and a magnetic module may be provided on the second breast pump. When a bilateral wearing operation is detected, if the second Hall sensor and the magnetic module are detected to be inductively coupled to each other, it is determined that the first breast pump is worn on the left breast and the second breast pump is worn on the right breast; if the first Hall sensor and the magnetic module are detected to be inductively coupled to each other, it is determined that the first breast pump is worn on the right breast and the second breast pump is worn on the left breast, as shown in FIG14 .

[0259] Example 3

[0260] Optionally, a magnetic module can be set on both the left and right sides of the first breast pump, and the two magnetic modules are set differently, namely the first magnetic module and the second magnetic module, and a Hall sensor is set on the second breast pump, such as the first magnetic module is set on the left side of the first breast pump and the second magnetic module is set on the right side, and a Hall sensor is set on the second breast pump. When a bilateral wearing operation is detected, if it is detected that the Hall sensor and the first magnetic module are inductively coupled, it is determined that the first breast pump is worn on the left breast and the second breast pump is worn on the right breast; if it is detected that the Hall sensor and the second magnetic module are inductively coupled, it is determined that the first breast pump is worn on the right breast and the second breast pump is worn on the left breast, as shown in Figure 15.

[0261] Example 4

[0262] Optionally, a Hall sensor can be provided on both the left side of the first breast pump and the left side of the second breast pump, and the two Hall sensors can be provided separately, namely, a first Hall sensor and a second Hall sensor. A magnetic module can be provided on both the right side of the first breast pump and the right side of the second breast pump, and the two magnetic modules can be provided separately, namely, a first magnetic module and a second magnetic module. For example, a first Hall sensor can be provided on the left side of the first breast pump and a second Hall sensor can be provided on the left side of the second breast pump, or a first magnetic module can be provided on the right side of the first breast pump and a second magnetic module can be provided on the right side of the second breast pump. When a bilateral wearing operation is detected, if the first magnetic module and the second Hall sensor are mutually inductively sensed, it is determined that the first breast pump is worn on the left breast and the second breast pump is worn on the right breast. If the first Hall sensor and the second magnetic module are mutually inductively sensed, it is determined that the first breast pump is worn on the right breast and the second breast pump is worn on the left breast. Alternatively, a first Hall sensor can be provided on the right side of the first breast pump and a second Hall sensor can be provided on the right side of the second breast pump, and a first magnetic module can be provided on the left side of the first breast pump and a second magnetic module can be provided on the left side of the second breast pump, as shown in FIG16.

[0263] The above combination of the Hall sensor and the magnetic module is only an example, and may also be any other sensor and inductive element that can detect each other.

[0264] In addition, the sensor can also be set as a magnetic part, and a Hall sensor is set on the left / right side of the first breast pump. For the specific sensing method, please refer to the above method.

[0265] Optionally, in some embodiments, the sensor provided on the first breast pump may be a capacitive sensor. A capacitive sensor uses various types of capacitors as sensing elements, converting a measured physical or mechanical quantity into a change in capacitance. It is essentially a capacitor with variable parameters. Specifically, it can be provided on the left or right side of the first breast pump, and the sensor may be an iron sheet or iron block. During use, the capacitive sensor collects data from the iron sheet.

[0266] Optionally, in some embodiments, the sensor provided on the first breast pump may be an ultra-wideband (UWB) sensor, and the sensor provided on the second breast pump may also be a UWB sensor. UWB technology is a wireless carrier communication technology that transmits data using nanosecond-scale, narrow, non-sinusoidal pulses rather than sinusoidal carriers. Therefore, it occupies a very wide spectrum. Based on this, the relative position of the first and second breast pumps can be determined using phase-difference-of-arrival (PDOA) measurement.

[0267] For example, when worn on both sides, the UWB sensor provided in the first breast pump can be a reference sensor, which is used to determine the relative position relationship between the UWB sensor in the second breast pump and itself. Subsequently, the data can be used to detect the wearing position.

[0268] Optionally, in some embodiments, the sensor can also be a signal collector, and the inductor can be a signal sensor, wherein the sensors are respectively arranged on the left and right sides of the second breast pump, and respectively send out a first signal and a second signal, such as the left side sends out the first signal and the right side sends out the second signal, and the first signal is different from the second signal. When the user wears the breast pump, the first breast pump can collect the first signal or the second signal for subsequent judgment of the wearing position.

[0269] In addition, the user may wear the breast pump for only one breast, or may wear the breast pump for both breasts at the same time. That is, optionally, in some embodiments, before step 101, the breast pump wearing position detection method provided by the present application may further include:

[0270] Check whether the number of breast pumps currently worn is the preset value;

[0271] If it is detected that the number of breast pumps currently worn is the preset value, the bilateral wearing operation is triggered.

[0272] The preset value is 2, that is, when it is detected that the number of breast pumps currently being worn is 2, the bilateral wearing operation is triggered. Specifically, when the wearing instruction transmitted by the first breast pump and the wearing instruction transmitted by the second breast pump are received, the bilateral wearing operation is triggered. The wearing instruction transmitted by the first breast pump can be received first, or the wearing instruction transmitted by the second breast pump can be received first.

[0273] If it is detected that the number of breast pumps currently worn is not a preset value, a unilateral wearing operation is triggered. At this time, in response to the unilateral wearing operation, a reminder message of the wearing position is output.

[0274] It should be noted that after the prompt information is output, when a wearing operation for another breast is received, the prompt information is hidden or closed. At this time, the wearing position detection process is entered to complete the automatic setting of the wearing position.

[0275] 102. Determine wearing position results of the first breast pump and the second breast pump based on the sensor data.

[0276] As can be seen from the above, the position of the sensor on the first breast pump and the position of the sensor on the second breast pump can be set according to actual conditions. Therefore, after receiving the sensor data, it is necessary to determine the installation position of the sensor and the installation position of the sensor, and perform position detection based on the sensor data. That is, optionally, in some embodiments, step 102 may specifically include:

[0277] Determine the installation position of the sensor and the installation position of the inductor, or determine the relative position of the sensor component and the inductor component;

[0278] Determine the relative position of the sensor component and the sensing component, including:

[0279] Determining relative position based on whether the sensor component detects the sensing component; and / or

[0280] The relative position is determined according to the signal strength of the sensing component detected by the sensor component.

[0281] The sensing component includes a first sensor and a second sensor, and determining the relative position of the sensor and the sensing component includes:

[0282] When the sensor detects the first sensor, determining that the sensor is close to the first sensor;

[0283] When the sensor detects the second sensor, it is determined that the sensor is close to the second sensor.

[0284] The sensor assembly includes a first sensor and a second sensor, and determining the relative position of the sensor assembly and the sensing assembly includes:

[0285] When the first sensor detects the sensor, determining that the sensor is close to the first sensor;

[0286] When the second sensor detects the sensor, it is determined that the sensor is close to the second sensor.

[0287] Based on the sensor data, the installation position of the sensor and the installation position of the sensor, the wearing position results of the first breast pump and the second breast pump are determined.

[0288] For example, a Hall sensor is provided on the left side of the first breast pump, and a strong magnetic module is provided on the left side of the second breast pump. When a bilateral wearing operation is detected, the user actually wears the breasts in the following manner: the first breast pump is worn on the left breast, and the second breast pump is worn on the right breast. At this time, the sensor data reported by the first breast pump is empty, that is, the Hall sensor does not sense the magnetic module. At this time, combined with the installation position of the Hall sensor and the installation position of the strong magnetic module, it can be determined that the first breast pump is worn on the left breast, and the second breast pump is worn on the right breast.

[0289] For example, a Hall sensor is provided on the left side of the first breast pump, and a strong magnetic module is provided on the left side of the second breast pump. When a bilateral wearing operation is detected, the user actually wears the breasts in the following manner: the first breast pump is worn on the right breast, and the second breast pump is worn on the left breast. At this time, the sensor data reported by the first breast pump is a strong magnetic signal, that is, the Hall sensor and the magnetic module are inductively coupled to each other. At this time, combined with the installation positions of the Hall sensor and the strong magnetic module, it is determined that the first breast pump is worn on the right breast, and the second breast pump is worn on the left breast.

[0290] For example, a Hall sensor is provided on the left side of the first breast pump, and an iron sheet is provided on the right side of the second breast pump. When a bilateral wearing operation is detected, the user actually wears the first breast pump on the right breast and the second breast pump on the left breast. At this time, the sensor data reported by the first breast pump is that a strong magnetic signal is detected. At this time, combined with the installation position of the Hall sensor and the installation position of the strong magnetic module, it can be determined that the first breast pump is worn on the right breast and the second breast pump is worn on the left breast.

[0291] For example, a Hall sensor is provided on the left side of the first breast pump, and a magnetic module is provided on the right side of the second breast pump. When a bilateral wearing operation is detected, the user actually wears the first breast pump on the right breast and the second breast pump on the left breast. If it is detected that the Hall sensor and the magnetic module do not sense each other, it is determined that the first breast pump is worn on the left breast and the second breast pump is worn on the right breast.

[0292] For example, a Hall sensor is provided on the right side of the first breast pump, and a magnetic module is provided on the right side of the second breast pump. When a bilateral wearing operation is detected, the user actually wears the first breast pump on the right breast and the second breast pump on the left breast. If it is detected that the Hall sensor and the magnetic module do not sense each other, it is determined that the first breast pump is worn on the right breast and the second breast pump is worn on the left breast.

[0293] For example, Hall sensors are provided on both the left and right sides of the first breast pump, and the two Hall sensors are provided differently, namely the first Hall sensor and the second Hall sensor. A magnetic module is provided on the second breast pump. When a bilateral wearing operation is detected, the user actually wears the first breast pump on the right breast and the second breast pump on the left breast. If mutual induction is detected between the Hall sensor and the magnetic module, it is determined that the first breast pump is worn on the right breast and the second breast pump is worn on the left breast.

[0294] For example, magnetic modules are provided on both the left and right sides of the first breast pump, and the two magnetic modules are provided differently, namely, the first magnetic module and the second magnetic module. A Hall sensor is provided on the second breast pump, such as the first magnetic module is provided on the left side of the first breast pump and the second magnetic module is provided on the right side, and a Hall sensor is provided on the second breast pump. When a bilateral wearing operation is detected, the user actually wears the first breast pump on the left breast and the second breast pump on the right breast. If it is detected that the Hall sensor and the second magnetic module are inductively coupled to each other, it is determined that the first breast pump is worn on the right breast and the second breast pump is worn on the left breast.

[0295] For example, a Hall sensor is provided on the left side of the first breast pump and the left side of the second breast pump, and the two Hall sensors are provided separately, namely the first Hall sensor and the second Hall sensor; a magnetic module is provided on the right side of the first breast pump and the right side of the second breast pump, and the two magnetic modules are provided separately, namely the first magnetic module and the second magnetic module; when a bilateral wearing operation is detected, the user actually wears the first breast pump on the left breast and the second breast pump on the right breast; if mutual induction is detected between the Hall sensor and the second magnetic module, it is determined that the first breast pump is worn on the right breast and the second breast pump is worn on the left breast.

[0296] It is understandable that the different sensor installation positions and sensor installation positions correspond to different position detection strategies. That is, optionally, in some embodiments, the step of "determining the wearing position results of the first breast pump and the second breast pump based on the sensor data, the sensor installation position and the sensor installation position" may specifically include:

[0297] Determine the current location detection strategy based on the sensor installation location and the sensor installation location;

[0298] The wearing position results of the first breast pump and the second breast pump are determined according to the sensor data and the position detection strategy.

[0299] 103. Optionally, in some embodiments, after determining the correct fit, the breast pump may be controlled to flash a light, provide voice prompts, or vibrate by issuing the same or different control instructions, so that the user can determine whether the position of the breast pump displayed on the electronic device is consistent with the actual fit of the breast pump. For example, the device or breast pump may provide a voice prompt indicating a misfit, specifically, "cup not properly fitted" or "nipple not aligned with the center of the cup." The device or breast pump may also be controlled to vibrate. Alternatively, at least two or more of the above prompts may be provided simultaneously.

[0300] 104. In some embodiments, the stored left and right wearing results can be confirmed or corrected through interface interaction.

[0301] Furthermore, the milk suction data corresponding to different breasts can be recorded later based on the wearing position results.

[0302] It is understandable that the first breast pump and the second breast pump may be breast pumps that have been used by the user, that is, each breast pump has corresponding milk suction data recorded. Therefore, in order to improve the reliability of subsequent milk suction data, after determining the position wearing result, the historical wearing result of each breast pump can be obtained to record the milk suction data corresponding to different breasts. That is, optionally, in some embodiments, the step of "recording the milk suction data corresponding to different breasts according to the position wearing result" may specifically include:

[0303] Obtain historical wearing results corresponding to the first breast pump and the second breast pump;

[0304] According to the position wearing result and the historical wearing results corresponding to the first breast pump and the second breast pump, the milk pumping data corresponding to the breasts on different sides are recorded.

[0305] For example, if the first breast pump was historically worn on the left breast and is currently worn on the right breast, and the second breast pump was historically worn on the right breast and is currently worn on the left breast, the historical milk suction data of the first breast pump can be transferred to the milk suction data record corresponding to the second breast pump, and the historical milk suction data of the second breast pump can be transferred to the milk suction data record corresponding to the first breast pump, thereby completing the recording of milk suction data corresponding to different breasts.

[0306] The above completes the wearing position detection process of the breast pump of this application.

[0307] As described above, the present application provides a method for detecting the wearing position of a breast pump. When a bilateral wearing operation is detected, sensor data reported by a first breast pump is received. The sensor data is data collected by a sensor built into the first breast pump from a sensor of a second breast pump. Based on the sensor data, the wearing position results of the first and second breast pumps are determined. In the breast pump wearing position detection scheme provided in the present application, when a user wears a breast pump for both breasts, the sensor built into the first breast pump collects data from the sensor of the second breast pump. Based on the sensor data, the wearing positions of the first and second breast pumps can be automatically set, thereby improving the reliability of the milking data recorded by the breast pumps.

[0308] Accordingly, referring to FIG. 17 , an embodiment of the present application provides a breast pump wearing position detection device / system (hereinafter referred to as the detection device), the detection device including a first breast pump 201, a second breast pump 202, a first sensing component 203 and a second sensing component 204, specifically as follows:

[0309] The first sensing component 203 is provided on the first breast pump 201;

[0310] The second sensing component 204 is provided on the second breast pump 202. The first sensing component 203 and the second sensing component 204 sense each other to detect the left and right wearing positions of the first breast pump 201 and the second breast pump 202. The controller is provided on the first breast pump or the second breast pump;

[0311] The sensor component is used to collect sensing data about the sensing component;

[0312] The controller is used to determine the wearing position results of the first breast pump and the second breast pump according to the sensing data.

[0313] Optionally, in some embodiments, referring to FIG. 18 , the first sensing component 203 may include a first sensor 2031, and the second sensing component may include a first sensor 2041 and a second sensor 2042. The first breast pump 201 is provided with the first sensor 2031, and the second breast pump 202 is provided with the first sensor 2041 and the second sensor 2042. The first sensor 2041 is distinct from the second sensor 2042. The first sensor 2031 can sense the first sensor 2041 and the second sensor 2042, respectively.

[0314] Optionally, in some embodiments, referring to FIG. 19 , the first sensing component 203 may include a first sensor 2031 and a second sensor 2032, the first sensor 2031 being different from the second sensor 2032, the second sensing component 204 including a first sensor 2041, and the second breast pump 202 being provided with a first sound sensor 2041. The first sensor 2031 and the second sensor 2032 may respectively sense the first sensor 2041.

[0315] Optionally, in some embodiments, referring to FIG. 20 , the first sensing component 203 may include a first sensor 2031 and a second sensor 2032 , wherein the first sensor 2031 is different from the second sensor 2032 , and the second sensing component may include a first sensor 2041 and a second sensor 2042 , wherein the first sensor 2041 is different from the second sensor 2042 .

[0316] Optionally, in some embodiments, referring to FIG. 21 , the first sensing component 203 may include a first sensor 2031 and a first sensor 2032, and the second sensing component 204 may include a second sensor 2041 and a second sensor 2042. The first sensor 2032 is distinct from the second sensor 2042, and the first sensor 2031 is distinct from the second sensor 2041. The first sensor 2031 may sense the first sensor 2032, and the second sensor 2041 may sense the second sensor 2042; the first sensor 2031 may sense the second sensor 2042, and the second sensor 2041 may sense the first sensor 2032. The controller is provided in the first breast pump or the second breast pump.

[0317] The first sensor 2031 is used to collect first sensing data about the first sensor 2032 and / or the second sensor 2042;

[0318] The second sensor 2041 is used to collect second sensing data about the first sensor 2032 and / or the second sensor 2042;

[0319] The controller is configured to determine wearing position results of the first breast pump and the second breast pump based on the first sensing data and / or the second sensing data.

[0320] As described above, the present application provides a breast pump wearing position detection device. When a bilateral wearing operation is detected, the processing module receives sensor data reported by the first breast pump, which is the sensing data between the first sensing component 203 provided in the first breast pump 201 and the second breast pump 202. Based on the sensor data, the processing module determines the wearing positions of the first breast pump 201 and the second breast pump 202. In the breast pump wearing position detection solution provided in the present application, when a user wears a breast pump for both breasts, the sensor provided in the first breast pump collects sensor data from the second breast pump. Based on the sensor data, the wearing positions of the first and second breast pumps can be automatically determined, thereby improving the reliability of the milking data recorded by the breast pumps.

[0321] In addition, the present application also provides an electronic device, as shown in FIG22, which shows a schematic diagram of the structure of the electronic device involved in the present application. Specifically, the electronic device may include a processor 301 with one or more processing cores, a memory 302 with one or more computer-readable storage media, a power supply 303, and an input unit 304. Those skilled in the art will understand that the electronic device structure shown in FIG22 does not constitute a limitation on the electronic device, and may include more or fewer components than shown in the figure, or combine certain components, or arrange the components differently. Among them:

[0322] The processor 301 is the control center of the electronic device. It connects all parts of the electronic device using various interfaces and lines. By running or executing software programs and / or modules stored in the memory 302 and accessing data stored in the memory 302, it performs various functions of the electronic device and processes data, thereby monitoring the electronic device as a whole. Optionally, the processor 301 may include one or more processing cores; preferably, the processor 301 may integrate an application processor and a modem processor, wherein the application processor primarily processes the operating system, user interface, and application programs, while the modem processor primarily handles wireless communications. It is understood that the modem processor may not be integrated into the processor 301.

[0323] The memory 302 can be used to store software programs and modules. The processor 301 executes various functional applications and data processing by running the software programs and modules stored in the memory 302. The memory 302 may mainly include a program storage area and a data storage area, wherein the program storage area may store an operating system, an application required for at least one function (such as a sound playback function, an image playback function, etc.), etc.; the data storage area may store data created according to the use of the electronic device, etc. In addition, the memory 302 may include a high-speed random access memory, and may also include a non-volatile memory, such as at least one disk storage device, a flash memory device, or other volatile solid-state storage device. Accordingly, the memory 302 may also include a memory controller to provide the processor 301 with access to the memory 302.

[0324] The electronic device also includes a power supply 303 for supplying power to various components. Preferably, the power supply 303 can be logically connected to the processor 301 via a power management system, thereby enabling the power management system to manage charging, discharging, and power consumption. The power supply 303 can also include one or more DC or AC power supplies, a recharging system, a power failure detection circuit, a power converter or inverter, a power status indicator, and other arbitrary components.

[0325] The electronic device may further include an input unit 304, which may be configured to receive input digital or character information and generate keyboard, mouse, joystick, optical or trackball signal inputs related to user settings and function control.

[0326] Although not shown, the electronic device may further include a display unit, etc., which will not be described in detail here. Specifically, in this embodiment, the processor 301 in the electronic device will load the executable files corresponding to the processes of one or more application programs into the memory 302 according to the following instructions, and the processor 301 will run the application programs stored in the memory 302 to implement various functions as follows:

[0327] When a bilateral wearing operation is detected, sensor data reported by the first breast pump is received, and wearing position results of the first breast pump and the second breast pump are determined according to the sensor data.

[0328] The specific implementation of the above operations can be found in the previous embodiments and will not be repeated here.

[0329] When a bilateral wearing operation is detected, the embodiment of the present application receives sensor data reported by the first breast pump. The sensor data is data collected by the sensor built into the first breast pump from the sensor of the second breast pump. Based on the sensor data, the wearing position of the first and second breast pumps is determined. In the breast pump wearing position detection scheme provided by the present application, when a user wears a breast pump for both breasts, the sensor built into the first breast pump collects data from the sensor of the second breast pump. Based on the sensor data, the wearing positions of the first and second breast pumps can be automatically determined, thereby improving the reliability of the milking data recorded by the breast pumps.

[0330] Those skilled in the art will appreciate that all or part of the steps in the various methods of the above embodiments may be accomplished by instructions, or by controlling related hardware through instructions. The instructions may be stored in a computer-readable storage medium and loaded and executed by a processor.

[0331] To this end, the present application provides a storage medium storing a plurality of instructions that can be loaded by a processor to execute the steps of any of the breast pump wearing position detection methods provided in the present application. For example, the instructions can execute the following steps:

[0332] When a bilateral wearing operation is detected, sensor data reported by the first breast pump is received, and wearing position results of the first breast pump and the second breast pump are determined according to the sensor data.

[0333] Option 4:

[0334] For example, referring to FIG. 23 , the present application provides a breast pump wearing reminder system. The breast pump wearing reminder system is integrated into a mobile phone 10, which can be connected to the breast pump 20 via wireless and / or Bluetooth. For example, a user 30 pre-installs an application corresponding to the breast pump 20 on the mobile phone 10. The application can then be used to establish a communication connection between the mobile phone 10 and the breast pump 20, thereby uploading the milking data generated by the breast pump 20 to the mobile phone 10. Specifically, after turning on the breast pump 20, the user establishes a communication connection between the breast pump 20 and the mobile phone 10. At this point, the sensors of the breast pump 20 can upload real-time collected data to the mobile phone 10, thereby obtaining the corresponding wearing information of the breast pump. The mobile phone 10 then determines the prompt instruction corresponding to the wearing information, such as a prompt instruction for correct wearing or an instruction for incorrect wearing. Finally, the mobile phone 10 can control the breast pump 20 and / or the mobile phone 10 to execute the corresponding prompt event based on the prompt instruction.

[0335] In the breast pump wearing reminder solution provided in the present application, a corresponding reminder instruction is determined based on the wearing information collected by the breast pump sensor, and then the reminder instruction is used to control the breast pump and / or the current device to execute the reminder event, so that the user can know the actual wearing condition of the breast pump and avoid the problem of the user being unable to express milk when using the breast pump due to incorrect wearing.

[0336] The present application provides a breast pump wearing prompt method, comprising: obtaining wearing information corresponding to the breast pump in response to a wearing operation triggered on the breast pump; determining a prompt instruction corresponding to the wearing information; and controlling the breast pump and / or the current device to execute a prompt event according to the prompt instruction.

[0337] Please refer to Figure 24, which is a flow chart of the breast pump wearing reminder method provided by this application. The specific flow of the breast pump wearing reminder method can be as follows:

[0338] 101. In response to a wearing operation triggered for a breast pump, obtain wearing information corresponding to the breast pump.

[0339] Among them, the wearing operation triggered for the target breast pump can be triggered by the user by operating the control panel of the target breast pump (such as a button, key or touch screen, etc.); it can also be triggered by a sensor of the target breast pump. For example, when the target breast pump is in the on state or standby state, when the user picks up the target breast pump, the acceleration sensor built into the target breast pump detects that the acceleration of the target breast pump changes in a short period of time.

[0340] In addition, the wearing operation can be for wearing one breast pump (ie, unilateral wearing) or for wearing two breast pumps (ie, bilateral wearing).

[0341] The wearing information corresponding to the breast pump carries the identification of the breast pump (such as the number or product serial number) and the wearing condition of the breast pump, wherein the wearing condition of the breast pump includes the relative position change between the breast pump and the breast when the breast pump is in the wearing state.

[0342] As mentioned above, the wearing information carries the breast pump's identification and wearing status. The following example illustrates a user wearing a breast pump. First, the user activates the breast pump and establishes a communication connection between it and an electronic device (such as a mobile phone). This connection can be wireless or Bluetooth. A wireless connection uses wireless technologies such as WiFi, 2G, 3G, 4G, or 5G to establish a communication link between devices, providing the basis for data communication between devices. A Bluetooth connection establishes a communication link between devices based on Bluetooth wireless technology. Bluetooth wireless technology is one of the most widely used global short-range wireless standards. Bluetooth 4.0 integrates three Bluetooth technologies: classic Bluetooth, high-speed Bluetooth, and low-energy Bluetooth. It inherits the inherent advantages of Bluetooth technology in wireless connectivity while adding the features of high-speed Bluetooth and low-energy Bluetooth. The core of the Bluetooth 4.0 specification is Bluetooth Low Energy (BLE). This technology's most prominent features are ultra-low operating and standby power consumption, high reliability, and low power consumption. Bluetooth Low Energy (BLE) replaces the traditional Bluetooth idle state with a deep sleep state. In this deep sleep state, the host maintains an ultra-low duty cycle for extended periods, activated only by the controller when needed. Because the host consumes more energy than the controller, this design also offers the greatest energy savings. Therefore, in some embodiments, the communication connection between the breast pump and the mobile phone can be established over BLE, thereby reducing the power consumption of the breast pump during the communication connection and increasing the operating time of the breast pump.

[0343] Furthermore, after establishing a communication connection between the breast pump and the mobile phone, the user picks up the breast pump and wears it in front of the breast. During this process, the acceleration sensor and / or tilt sensor (such as a gyroscope) built into the breast pump, the human body detection sensor arranged on the surface of the breast pump, etc. detect that the position and acceleration of the device (i.e., the breast pump) change in a short time (such as 2 seconds or 3 seconds, which can be set according to actual conditions), thereby triggering the wearing operation for the breast pump. At this time, the corresponding data (such as infrared data, gyroscope data, and acceleration data) is obtained by the sensor built into the breast pump, thereby forming wearing information.

[0344] 102. Determine the prompt instruction corresponding to the wearing information.

[0345] Optionally, in some embodiments, the breast pump is worn in the operating state when the breast is in close contact with the cup and the nipple is aligned with the center of the cup's nipple channel. Therefore, it can be understood that when the breast pump is worn, the user is correctly wearing the breast pump when the relative position between the breast pump and the cup is such that the breast is in close contact with the cup and the nipple is aligned with the center of the cup. In all other cases, the breast pump is not worn correctly. That is, the prompt instructions provided in this application include correct wearing instructions and incorrect wearing instructions.

[0346] It should be noted that the wearing information contains data that changes over a period of time. The time point when the change occurs is determined as the starting time point, and the time point when the change stops is determined as the ending time point. Based on the data corresponding to the ending time point, the prompt instruction corresponding to the wearing information is determined.

[0347] For example, if the user picks up the breast pump and puts it on at time T1 and stops putting it on at time T3, the putting information will include data corresponding to time T1 to time T3, and detect whether the breast cup is tightly fitted to the breast and whether the nipple is aligned with the center of the breast cup at time T3. If it is detected that the breast cup is tightly fitted to the breast and the nipple is aligned with the center of the breast cup at time T3, the prompt instruction corresponding to the putting information is determined to be a correct prompt instruction. If it is detected that the breast cup is not tightly fitted to the breast and / or the nipple is not aligned with the center of the breast cup at time T3, the prompt instruction corresponding to the putting information is determined to be an incorrect prompt instruction.

[0348] Furthermore, after the user triggers a wearing operation for the breast pump and the breast pump is connected to the current device, a left or right wear prompt / selection page may be displayed on the current device. As shown in FIG25 , this prompt page includes a left-side option L and a right-side option R. In response to the user's selection of the left-side option L, the breast pump is determined to be worn on the left side; in response to the user's selection of the right-side option R, the breast pump is determined to be worn on the right side. Of course, the prompt page does not necessarily display the left and right options; the user can also select the left or right option through a drop-down menu or by clicking to switch between left and right options. For example, a question may be displayed: Will the breast pump be worn on the left or right side? The left / right options are displayed as described above.

[0349] It should also be noted that, in the present application, a built-in infrared sensor can be used to detect whether the nipple is aligned with the center position of the breast cup, and a built-in air pressure sensor can be used to detect whether the breast cup fits tightly to the breast.

[0350] 103. Control the breast pump and / or the current device to execute the prompt event according to the prompt instruction.

[0351] In this application, the breast pump can be controlled to execute a prompt event (such as a vibration event) according to the prompt instruction, and the current device (such as a mobile phone or tablet) can be controlled to execute a prompt event (such as a voice broadcast event) according to the prompt instruction. Of course, the breast pump can also be controlled to execute a prompt event (such as a vibration event) and the current device (such as a mobile phone or tablet) can be controlled to execute a prompt event (such as a voice broadcast event) according to the prompt instruction. The specific settings can be made according to actual conditions.

[0352] Optionally, in some embodiments, when the prompt instruction is a correct prompt instruction, a correct wearing prompt page can be displayed on the display screen of the current device or breast pump, as shown in Figure 26; a correct wearing prompt sound can be broadcast through the current device or breast pump, as shown in Figure 27; or the current device or breast pump can be controlled to vibrate, as shown in Figure 28; or at least two or more of the above prompts can be performed simultaneously.

[0353] Optionally, in some embodiments, when the prompt is an error prompt, a page indicating incorrect fitting can be displayed on the display screen of the current device or breast pump, as shown in FIG29 . This prompt page can also display instructions for correct fitting. Alternatively, the current device or breast pump can play a sound indicating an incorrect fitting, specifically, "cup not properly aligned with breast" or "nipple not aligned with center of cup." The current device or breast pump can also be controlled to vibrate. Alternatively, at least two or more of the above prompts can be performed simultaneously.

[0354] Optionally, in some embodiments, when the breast pump vibrates for both correct and incorrect wearing, the number of vibrations for correct and incorrect wearing can be set to different times. For example, correct wearing can be set to vibrate once, while incorrect wearing can be set to vibrate twice. Of course, other vibration times can also be set, depending on the actual situation.

[0355] The prompt methods when the user wears the breast pump correctly and when the user wears the breast pump incorrectly can be the same or different. For example, when the user wears the breast pump correctly, the current device plays a correct wearing prompt sound, and at the same time, the breast pump is controlled to vibrate once; when the user wears the breast pump incorrectly, the breast pump is controlled to play a preset incorrect wearing prompt sound, and at the same time, a wrong wearing prompt page is displayed on the display screen of the current device, and wearing instructions on how to wear it correctly are displayed.

[0356] After the user wears the left / right breast pump according to the prompt, the current device confirms that the breast pump currently worn is the left or right breast pump based on the user's operation, and stores the data of the left or right breast pump accordingly in the current device.

[0357] The above completes the breast pump wearing reminder process of this application.

[0358] As described above, the present application provides a breast pump wearing prompt method. In response to a wearing operation triggered on the breast pump, the present application detects wearing information corresponding to the breast pump, the wearing information being collected by a sensor built into the breast pump. Then, a prompt instruction corresponding to the wearing information is determined. Finally, the breast pump and / or the current device is controlled to execute a prompt event according to the prompt instruction. In the breast pump wearing prompt method provided by the present application, a corresponding prompt instruction is determined based on the wearing information collected by the sensor of the breast pump. Then, the prompt instruction is used to control the breast pump and / or the current device to execute a prompt event, so that the user can know the actual wearing condition of the breast pump, thereby avoiding the problem of the user being unable to suck milk when using the breast pump due to incorrect wearing.

[0359] Accordingly, referring to FIG30 , an embodiment of the present application provides a breast pump wearing reminder system (hereinafter referred to as the reminder system), which includes a breast pump body 201, a wearing detection mechanism 202, and a signal reminder element 203, as follows:

[0360] The wearing detection mechanism 202 is used to detect the wearing information of the breast pump body 201;

[0361] The signal prompt component 203 is used to output prompt information based on the wearing information of the breast pump.

[0362] Optionally, in some embodiments of the present application, the prompt information includes a prompt sound, a prompt page, and wearing instructions.

[0363] Optionally, in some embodiments of the present application, the wearing detection mechanism includes a sensor, which is used to detect whether the breast pump body is sealed against the breast, and / or; to detect whether the mother's nipple is placed along the nipple channel, and / or; to detect whether the breast pump body 201 is worn at an angle.

[0364] The wearing information corresponding to the breast pump carries the identification of the breast pump (such as the number or product serial number) and the wearing condition of the breast pump, wherein the wearing condition of the breast pump includes the relative position change between the breast pump and the breast when the breast pump is in the wearing state.

[0365] Optionally, in some embodiments of the present application, the sensor may be an acceleration sensor (for detecting acceleration information of a breast pump), a tilt sensor (such as a gyroscope) and / or a human body detection sensor. For specific usage, please refer to the previous embodiments and will not be repeated here.

[0366] As described above, the present application provides a breast pump wearing reminder system, comprising a breast pump body 201, a wearing detection mechanism 202, and a signal prompt element 203. The wearing detection mechanism 202 is configured to detect wearing information of the breast pump body 201, and the signal prompt element 203 is configured to output a reminder message based on the wearing information of the breast pump. In the breast pump wearing reminder scheme provided in the present application, the breast pump and / or the current device are controlled to execute a reminder event based on the wearing information collected by the wearing detection mechanism 20, so that the user can understand the actual wearing condition of the breast pump and avoid the problem of being unable to express milk while using the breast pump due to incorrect wearing. The system also includes a processor, configured to control the signal prompt element to output a reminder message based on the wearing information. The signal prompt element includes a speaker; the processor is configured to control the speaker to play a sound indicating correct wearing and / or a sound indicating incorrect wearing. The signal prompt element includes a display screen; the processor is configured to control the display screen to display a reminder message indicating incorrect wearing. The processor is also configured to control the display screen to display instructions for correct wearing. The signal prompt element includes a vibration element; the processor is configured to control the breast pump and / or the current device to vibrate a first preset number of times when the breast pump is worn correctly; and to control the breast pump and / or the current device to vibrate a second preset number of times when the breast pump is worn incorrectly. The device further includes: a processor configured to generate prompt information based on the wearing information; a transmitter configured to transmit the prompt information to a terminal device; and a transmitter configured to transmit the wearing information to the terminal device.

[0367] A terminal device receiver is used to receive wearing information of a breast pump sent by the breast pump, as well as a signal prompt element, and a processor is used to control the signal prompt element to output prompt information according to the wearing information.

[0368] A terminal device, wherein the signal prompt element includes a speaker; the step of controlling the signal prompt element to output prompt information based on the wearing information includes: controlling the speaker to broadcast a correct wearing prompt sound and / or an incorrect wearing prompt sound. The signal prompt element includes a display screen; the step of controlling the signal prompt element to output prompt information based on the wearing information includes: controlling the display screen to display an incorrect wearing prompt information. The processor is further configured to control the display screen to display correct wearing instructions. The signal prompt element includes a vibration element; the step of controlling the signal prompt element to output prompt information based on the wearing information includes:

[0369] When the breast pump is worn correctly, the breast pump and / or the current device is controlled to vibrate for a first preset number of times;

[0370] When the breast pump is worn incorrectly, the breast pump and / or the current device is controlled to vibrate a second preset number of times.

[0371] Also included is a terminal device, comprising: a receiver for receiving wearing prompt information sent by a breast pump; a signal prompt element; and a processor for controlling the signal prompt element to output the wearing prompt information according to the wearing prompt information.

[0372] In addition, the present application also provides an electronic device, as shown in FIG31, which shows a schematic diagram of the structure of the electronic device involved in the present application. Specifically, the electronic device may include a processor 301 with one or more processing cores, a memory 302 with one or more computer-readable storage media, a power supply 303, and an input unit 304. Those skilled in the art will understand that the electronic device structure shown in FIG31 does not constitute a limitation on the electronic device, and may include more or fewer components than shown in the figure, or combine certain components, or arrange the components differently. Among them:

[0373] The processor 301 is the control center of the electronic device. It connects all parts of the electronic device using various interfaces and lines. By running or executing software programs and / or modules stored in the memory 302 and accessing data stored in the memory 302, it performs various functions of the electronic device and processes data, thereby monitoring the electronic device as a whole. Optionally, the processor 301 may include one or more processing cores; preferably, the processor 301 may integrate an application processor and a modem processor, wherein the application processor primarily processes the operating system, user interface, and application programs, while the modem processor primarily handles wireless communications. It is understood that the modem processor may not be integrated into the processor 301.

[0374] The memory 302 can be used to store software programs and modules. The processor 301 executes various functional applications and data processing by running the software programs and modules stored in the memory 302. The memory 302 may mainly include a program storage area and a data storage area, wherein the program storage area may store an operating system, an application required for at least one function (such as a sound playback function, an image playback function, etc.), etc.; the data storage area may store data created according to the use of the electronic device, etc. In addition, the memory 302 may include a high-speed random access memory, and may also include a non-volatile memory, such as at least one disk storage device, a flash memory device, or other volatile solid-state storage device. Accordingly, the memory 302 may also include a memory controller to provide the processor 301 with access to the memory 302.

[0375] The electronic device also includes a power supply 303 for supplying power to various components. Preferably, the power supply 303 can be logically connected to the processor 301 via a power management system, thereby enabling the power management system to manage charging, discharging, and power consumption. The power supply 303 can also include one or more DC or AC power supplies, a recharging system, a power failure detection circuit, a power converter or inverter, a power status indicator, and other arbitrary components.

[0376] The electronic device may further include an input unit 304, which may be configured to receive input digital or character information and generate keyboard, mouse, joystick, optical or trackball signal inputs related to user settings and function control.

[0377] Although not shown, the electronic device may further include a display unit, etc., which will not be described in detail here. Specifically, in this embodiment, the processor 301 in the electronic device will load the executable files corresponding to the processes of one or more application programs into the memory 302 according to the following instructions, and the processor 301 will run the application programs stored in the memory 302 to implement various functions as follows:

[0378] In response to a wearing operation triggered for a breast pump, wearing information corresponding to the breast pump is obtained; a prompt instruction corresponding to the wearing information is determined; and the breast pump and / or the current device is controlled to execute a prompt event according to the prompt instruction.

[0379] The specific implementation of the above operations can be found in the previous embodiments and will not be repeated here.

[0380] In an embodiment of the present application, in response to a wearing operation triggered for a breast pump, the embodiment detects wearing information corresponding to the breast pump, the wearing information being collected by a sensor built into the breast pump, then determines a prompt instruction corresponding to the wearing information, and finally, controls the breast pump and / or the current device to execute a prompt event based on the prompt instruction. In the breast pump wearing prompt method provided by the present application, a corresponding prompt instruction is determined based on the wearing information collected by the breast pump sensor, and then, the prompt instruction is used to control the breast pump and / or the current device to execute a prompt event, so that the user can understand the actual wearing condition of the breast pump, thereby avoiding the problem of the user being unable to express milk when using the breast pump due to incorrect wearing.

[0381] Those skilled in the art will appreciate that all or part of the steps in the various methods of the above embodiments may be accomplished by instructions, or by controlling related hardware through instructions. The instructions may be stored in a computer-readable storage medium and loaded and executed by a processor.

[0382] To this end, the present application provides a storage medium storing a plurality of instructions that can be loaded by a processor to execute the steps of any of the breast pump wearing reminder methods provided in the present application. For example, the instructions can execute the following steps:

[0383] In response to a wearing operation triggered for a breast pump, wearing information corresponding to the breast pump is obtained; a prompt instruction corresponding to the wearing information is determined; and the breast pump and / or the current device is controlled to execute a prompt event according to the prompt instruction.

[0384] Option 5:

[0385] For example, referring to FIG. 32 , the present application provides a breast pump system that is integrated into a terminal 10, such as a mobile phone, tablet computer, or independently configured operation control device, or a breast pump 20. When the mobile phone 10 receives a user-triggered wearing operation for a target breast pump 20, it displays a wearing guidance page for the target breast pump. The wearing guidance page includes wearing guidance information for the target breast pump 20, which instructs the user to wear the target breast pump 20 in an operating mode. The target breast pump 20 can be worn on either the user's left or right breast, depending on the specific situation. When the mobile phone 10 determines that the current wearing state of the target breast pump 20 satisfies a preset operating wearing state, the target breast pump is configured with configuration parameters corresponding to the target operating mode, and a successful wearing prompt is displayed on the wearing guidance page.

[0386] The breast pump wearing guidance method provided in the present application can display a wearing guidance page of the target breast pump when the user triggers the wearing operation for the breast pump. The wearing guidance page includes wearing guidance information. Therefore, the wearing guidance information can be used to instruct the user to wear the breast pump in working mode. When the user uses the breast pump for the first time or wears the breast pump for the first time, the wearing guidance page can be used to guide the user to wear the breast pump correctly.

[0387] The present application provides a breast pump wearing guidance method, comprising: displaying a wearing guidance page of the target breast pump in response to a wearing operation triggered on a target breast pump; determining whether a current wearing state of the target breast pump satisfies a preset working wearing state; when the current wearing state of the target breast pump satisfies the working wearing state, configuring the target breast pump with configuration parameters corresponding to a target working mode, and displaying a wearing success prompt message on the wearing guidance page.

[0388] Please refer to Figure 33, which is a schematic diagram of the process of the breast pump wearing guidance method provided by this application. The specific process of the breast pump wearing guidance method can be as follows:

[0389] 101. In response to a wearing operation triggered for a target breast pump, display a wearing guide page for the target breast pump.

[0390] The target breast pump is the breast pump currently being worn, and the wearing guidance page includes wearing guidance information for the target breast pump, which instructs the user to wear the target breast pump in working mode. Alternatively, breast pumps are generally sold in pairs. That is, the breast pumps purchased by the user may include a first breast pump and a second breast pump. The user may wear the first breast pump first or the second breast pump first. Furthermore, the user may wear the breast pump for only one breast or for both breasts simultaneously, depending on the user's needs.

[0391] For example, after a user triggers a donning operation for a target breast pump, the target breast pump can send a donning instruction to the electronic device via wireless or Bluetooth. Upon receiving the donning instruction, the electronic device determines the target breast pump corresponding to the donning instruction and displays a donning instruction page corresponding to the target breast pump. This donning instruction page includes donning instructions for the target breast pump, which instruct the user on how to wear the target breast pump in operating mode. For example, the instructions include placing the breast cup on the breast, ensuring a tight fit between the breast and the cup, and aligning the nipple with the center of the cup.

[0392] Optionally, in some embodiments, the wearing guidance information may include angle configuration guidance and position configuration guidance. The angle configuration guidance is used to indicate the wearing direction of the target breast pump. The angle configuration guidance is provided as a graphic guide, and the target breast pump automatically and in real time detects the current configuration angle. This configuration angle refers to the pitch angle of the front of the target breast pump, as shown in FIG34(a). The position configuration guidance may also be provided as a graphic guide, and the target breast pump automatically and in real time detects whether the device is aligned and fits the breast. The angle configuration guidance can be switched to the position configuration guidance via a toggle control s, as shown in FIG34(b). In other words, the angle configuration guidance is switched to the position configuration guidance in response to the toggle control s.

[0393] Optionally, in some embodiments, the wearing operation triggered for the target breast pump can be triggered by the user by turning on certain components of the target breast pump, such as (a button or key); or it can be triggered by a sensor of the target breast pump. For example, when the target breast pump is in the on state or standby state, when the user picks up the target breast pump, the acceleration sensor built into the target breast pump detects that the acceleration of the target breast pump changes in a short period of time. At this time, the wearing operation triggered for the target breast pump is triggered. The specific settings can be made according to actual conditions.

[0394] On the wearing guidance page, users can choose whether to display wearing instructions, or choose to display graphic instructions, video instructions, or pointer instructions.

[0395] 102. Determine whether the current wearing state of the target breast pump meets a preset working wearing state.

[0396] The preset working wearing state can be that the front of the breast pump is facing upward, the breast and the breast cup are tightly fitted, and the nipple is aligned with the center of the nipple channel of the breast cup. The breast pump provided by this application can be configured with an infrared sensor and / or a gyroscope sensor, wherein the gyroscope sensor is used to determine the orientation of the target breast pump. Optionally, in some embodiments of this application, the side with the user-operable panel is determined as the positive direction of the target breast pump, and the gyroscope sensor can be used to determine whether the user's wearing orientation is correct. In addition, the infrared sensor can be used to detect whether the nipple is aligned with the center of the nipple channel of the breast cup.

[0397] The current wearing state refers to the physical wearing state of the target breast pump, such as whether the cup of the target breast pump fits the breast, whether the nipple is aligned with the center of the cup, and whether the front of the breast pump is facing upward. If the current wearing state meets the working wearing state, step 103 is executed. If the current wearing state does not meet the working wearing state, a wearing error prompt message is displayed on the wearing guidance page.

[0398] For example, specifically, please refer to Figure 35. If the current wearing state meets the working wearing state, a correct wearing prompt is displayed in the graphic guide, and step 103 is executed; if the current wearing state does not meet the working wearing state, a wearing error prompt message is displayed in the graphic guide, such as a prompt that the breast cup does not fit the breast and / or the nipple is not aligned with the center of the breast cup, as shown in Figure 36.

[0399] Optionally, in some embodiments, after triggering the wearing operation for the target breast pump, when it is detected that the user has not correctly worn the target breast pump within a preset time period, a voice announcement is made according to the prompt information shown in Figure 36, thereby further guiding the user to wear the target breast pump.

[0400] Optionally, in some embodiments, after the incorrect wearing prompt message is displayed in the graphic guide, if the user makes more than a preset number of incorrect wearing errors, the graphic guide may be updated, such as updating the text-based graphic guide from text and image to text-based graphic guide with text and short video. For example, if the user repeatedly makes incorrect wearing angles, the graphic guide may be switched to pointer guidance. For example, if the user repeatedly makes incorrect wearing angles, the graphic guide may be switched to pointer guidance. This pointer guidance indicates the deviation between the user's current wearing angle and a reference angle, and uses this pointer guidance to prompt the user to adjust the target breast pump upward or downward to ensure the correct wearing angle.

[0401] Through pointer guidance, users are more intuitively guided to correct the wearing angle of the target breast pump; when the user repeatedly encounters improper wearing positions, such as the breast not fitting the breast cup or the nipple not being aligned, the graphic guidance is switched to short video guidance. The short video guidance is used to demonstrate common wearing errors and indicate how to correct the wearing angle in these situations, thereby guiding the user to wear the target breast pump.

[0402] 103. When the current wearing state of the target breast pump meets the working wearing state, the target breast pump is configured with configuration parameters corresponding to the target working mode, and a prompt message indicating successful wearing is displayed on the wearing guide page.

[0403] When the target breast pump's current wearing state meets the working wearing state, the wearing guide page can be switched to the parameter configuration page, where the user can set the working parameters of the target breast pump in the target working mode. For example, the working mode can include massage mode, catheter mode, and electric mode.

[0404] It is understood that multiple operating modes can coexist for the same device, i.e., the target device can include multiple operating modes simultaneously. The user can select a target breast pump to operate in a selected operating mode based on actual needs. However, this does not limit the operating modes of different breast pumps to the same. For example, for a pair of breast pumps A and B, breast pump A can operate in massage mode, while breast pump B can operate in catheter mode. Of course, other operating modes are also possible, and there is no specific limitation.

[0405] When the current wearing state of the target breast pump meets the working wearing state, the working mode selected by the user on the parameter configuration page is determined as the target working mode, and the parameter configuration options corresponding to the target working mode are displayed. Optionally, in some embodiments, the user can set different suction forces, pumping times, working times, etc. through the parameter configuration page. For example, specifically, referring to Figure 37, taking the massage mode as the target working mode for illustration, the present application provides a parameter configuration page, which includes suction force option a, duration option b, and working time option c. In some embodiments, the suction force of suction force option a can be defaulted to the lowest suction force, the pumping time of duration option b can be defaulted to 5 minutes, and the working time of working time option c can be defaulted to immediate execution. That is, when the current wearing state of the target breast pump meets the working wearing state, if the user does not configure the configuration parameters of the target breast pump, the target breast pump is controlled to work with the above-mentioned default options. When the user selects the above options, the content of each option can be adjusted according to the user's selection, such as adjusting the suction option a to the second level, adjusting the duration option b to 10 minutes, and / or adjusting the working time option c to run after 10 minutes, etc. The specific settings can be made by the user according to his or her own needs. After the user confirms, the operation will be carried out according to the selected content, that is, in response to the confirmation operation for the working option, the target breast pump is controlled to operate according to the determined working option.

[0406] In addition, in some embodiments, referring to FIG. 37 , a suction experience control T can be added to the parameter configuration page. In response to a click on the suction experience control T, the target breast pump can be controlled to operate according to a preset suction strategy in the target operating mode. Taking massage mode as an example, upon detecting a click on the suction experience control, the target breast pump can be controlled to gradually increase suction in massage mode, with an interval of 10 seconds between increases. Assuming the massage mode corresponds to level 3 suction, the suction experience duration for massage mode is 30 seconds, after which the target breast pump stops operating.

[0407] After wearing is completed, in order to facilitate subsequent monitoring of the milk suction data of different breasts, selection controls for the left and right breasts can be displayed on the wearing guide page. As shown in Figure 38, control a1 and control a2 are displayed on the wearing guide page, where control a1 corresponds to the left breast and control a2 corresponds to the right breast. Users can click the corresponding control according to actual needs, so that the milk suction data of different breasts can be monitored later through mobile phones and other electronic devices.

[0408] It should be noted that each time the user completes the wearing process, the selection control will be displayed, and the user can select the corresponding breast and breast pump. Therefore, it can be understood that after the user wears the target breast pump on the left or right breast and clicks control a1, when the user wears the other breast pump, after completing the wearing process, the user will automatically select control a2 on the wearing guide page to complete the monitoring of the milk suction data of the right breast.

[0409] Optionally, in some embodiments, after the user completes the first wearing, they have some experience in how to wear the breast pump. Therefore, for users who wear the breast pump for the second time, in order to save their time in wearing the breast pump, the above-mentioned suction experience process can be skipped, that is, the suction experience control is hidden in the wearing guide page, and the user can be prompted to select the left breast or the right breast in the wearing guide page for subsequent monitoring of milk suction data.

[0410] The above completes the wearing guidance process of the breast pump of this application.

[0411] As described above, the present application provides a breast pump wearing guidance method. In response to a wearing operation triggered for a target breast pump, a wearing guidance page for the target breast pump is displayed. The wearing guidance page includes wearing guidance information for the target breast pump. The wearing guidance information is used to instruct the target breast pump to be worn in working mode. Then, it is determined whether the current wearing state of the target breast pump meets a preset working wearing state. When the current wearing state of the target breast pump meets the working wearing state, the target breast pump is configured with configuration parameters corresponding to the target working mode, and a wearing success prompt message is displayed on the wearing guidance page. In the breast pump wearing guidance method provided by the present application, when a user triggers a wearing operation for a breast pump, a wearing guidance page for the target breast pump can be displayed. The wearing guidance page includes the wearing guidance information. Therefore, the wearing guidance information can be used to instruct the user to wear the breast pump in working mode. When the user uses the breast pump for the first time or puts on the breast pump for the first time, the wearing guidance page can be used to guide the user to wear the breast pump correctly and to instruct the breast pump to operate normally.

[0412] Accordingly, referring to FIG. 39 , an embodiment of the present application provides a breast pump system. The breast pump system may include a breast pump body 20. The breast pump body 20 includes a breast milk container 201, a breast pumping piece 202, and a wearing detection mechanism 203. Specifically,

[0413] The breast pump body 20 is used to be worn on the mother's breast and to suck milk from the breast. The breast pump body 20 may specifically include:

[0414] The breast milk container 201 includes a milk storage container and a connecting portion, and the milk storage container is connected to the connecting portion.

[0415] The breast pump 202 includes a fitting portion and a nipple channel. The fitting portion is shaped to fit the breast, and the nipple channel is connected to the milk storage container via a connecting portion.

[0416] The wearing detection mechanism 203 is used to detect whether the breast pump is worn correctly.

[0417] Optionally, in some embodiments of the present application, the wearing detection mechanism 203 includes a first sensor and a second sensor, the first sensor is arranged at the fitting portion, and the second sensor is arranged at the nipple channel.

[0418] Optionally, in some embodiments of the present application, the first sensor is used to detect whether the fitting portion is in sealing fit with the breast.

[0419] Optionally, in some embodiments of the present application, the second sensor is used to detect whether the mother's nipple is placed along the nipple channel.

[0420] Optionally, in some embodiments of the present application, the wearing detection mechanism 203 further includes a third sensor, and the third sensor is used to detect whether the breast pump body 20 is worn at an angle.

[0421] Optionally, in some embodiments of the present application, referring to FIG. 40 , the breast pump system further includes a communication connection module 204 , which is used to connect the breast pump body and the terminal device or server and transmit lactation-related information of the breast pump body 20 .

[0422] Optionally, in some embodiments of the present application, the breast pump system further includes an identification element 205 for identifying at least one target breast pump body 20, so that the terminal device or server can identify and match the target breast pump body.

[0423] Optionally, in some embodiments of the present application, the breast pump system further includes at least one identification element for respectively identifying two target breast pump bodies 20, namely a first identification element and a second identification element, so that the terminal device or server can respectively identify and match the target breast pump bodies 20.

[0424] As described above, the present application provides a breast pump system, including a breast pump body 20, comprising a breast milk container 201, a breast pump piece 202, and a wearing detection mechanism 203. The breast pump body 20 is designed to be worn on a mother's breast to extract milk. The breast milk container 201 comprises a milk storage container and a connecting portion, with the milk storage container connected to the connecting portion. The breast pump piece 202 comprises a fitting portion and a nipple channel, the fitting portion being shaped to conform to the breast, and the nipple channel being connected to the milk storage container via the connecting portion. The wearing detection mechanism 203 is used to detect whether the breast pump piece is correctly worn. In the breast pump system provided herein, the wearing detection mechanism 203 detects whether the breast pump piece is correctly worn. When a user uses the breast pump for the first time or is re-wearing the breast pump, the user can be guided through a wearing guide page to correctly wear the breast pump piece and can be instructed to operate the breast pump properly. The breast pump system also includes a controller, which is disposed on the breast pump body and is configured to determine whether the breast pump piece is correctly worn based on sensing information from a first sensor and a second sensor.

[0425] In addition, the present application also provides an electronic device, as shown in FIG41, which shows a schematic diagram of the structure of the electronic device involved in the present application. Specifically, the electronic device may include a processor 301 with one or more processing cores, a memory 302 with one or more computer-readable storage media, a power supply 303, and an input unit 304. Those skilled in the art will understand that the electronic device structure shown in FIG41 does not constitute a limitation on the electronic device, and may include more or fewer components than shown in the figure, or combine certain components, or arrange the components differently. Among them:

[0426] The processor 301 is the control center of the electronic device. It connects all parts of the electronic device using various interfaces and lines. By running or executing software programs and / or modules stored in the memory 302 and accessing data stored in the memory 302, it performs various functions of the electronic device and processes data, thereby monitoring the electronic device as a whole. Optionally, the processor 301 may include one or more processing cores; preferably, the processor 301 may integrate an application processor and a modem processor, wherein the application processor primarily processes the operating system, user interface, and application programs, while the modem processor primarily handles wireless communications. It is understood that the modem processor may not be integrated into the processor 301.

[0427] The memory 302 can be used to store software programs and modules. The processor 301 executes various functional applications and data processing by running the software programs and modules stored in the memory 302. The memory 302 may mainly include a program storage area and a data storage area, wherein the program storage area may store an operating system, an application required for at least one function (such as a sound playback function, an image playback function, etc.), etc.; the data storage area may store data created according to the use of the electronic device, etc. In addition, the memory 302 may include a high-speed random access memory, and may also include a non-volatile memory, such as at least one disk storage device, a flash memory device, or other volatile solid-state storage device. Accordingly, the memory 302 may also include a memory controller to provide the processor 301 with access to the memory 302.

[0428] The electronic device also includes a power supply 303 for supplying power to various components. Preferably, the power supply 303 can be logically connected to the processor 301 via a power management system, thereby enabling the power management system to manage charging, discharging, and power consumption. The power supply 303 can also include one or more DC or AC power supplies, a recharging system, a power failure detection circuit, a power converter or inverter, a power status indicator, and other arbitrary components.

[0429] The electronic device may further include an input unit 304, which may be configured to receive input digital or character information and generate keyboard, mouse, joystick, optical or trackball signal inputs related to user settings and function control.

[0430] Although not shown, the electronic device may further include a display unit, etc., which will not be described in detail here. Specifically, in this embodiment, the processor 301 in the electronic device will load the executable files corresponding to the processes of one or more application programs into the memory 302 according to the following instructions, and the processor 301 will run the application programs stored in the memory 302 to implement various functions as follows:

[0431] In response to the wearing operation on the target breast pump, the wearing guide page of the target breast pump is displayed to determine whether the current wearing state of the target breast pump meets the preset working wearing state; when the current wearing state of the target breast pump meets the working wearing state, the target breast pump is configured with configuration parameters corresponding to the target working mode or a prompt message of successful wearing is displayed in the wearing guide page.

[0432] The specific implementation of the above operations can be found in the previous embodiments and will not be repeated here.

[0433] In an embodiment of the present application, in response to a wearing operation triggered for a target breast pump, a wearing guidance page for the target breast pump is displayed. The wearing guidance page includes wearing guidance information for the target breast pump. The wearing guidance information is used to instruct the target breast pump to be worn in working mode. Then, it is determined whether the current wearing state of the target breast pump meets a preset working wearing state. When the current wearing state of the target breast pump meets the working wearing state, the target breast pump is configured with configuration parameters corresponding to the target working mode, and a prompt message indicating successful wearing is displayed on the wearing guidance page. In the wearing guidance method for a breast pump provided in the present application, when a user triggers a wearing operation for a breast pump, a wearing guidance page for the target breast pump can be displayed. The wearing guidance page includes the wearing guidance information. Therefore, the wearing guidance information can be used to instruct the user to wear the breast pump in working mode. When the user uses the breast pump for the first time or wears the breast pump for the first time, the wearing guidance page can be used to guide the user to wear the breast pump correctly.

[0434] Those skilled in the art will appreciate that all or part of the steps in the various methods of the above embodiments may be accomplished by instructions, or by controlling related hardware through instructions. The instructions may be stored in a computer-readable storage medium and loaded and executed by a processor.

[0435] To this end, the present application provides a storage medium storing a plurality of instructions that can be loaded by a processor to execute the steps of any of the breast pump wearing guidance methods provided in the present application. For example, the instructions can execute the following steps:

[0436] In response to the wearing operation on the target breast pump, the wearing guide page of the target breast pump is displayed to determine whether the current wearing state of the target breast pump meets the preset working wearing state; when the current wearing state of the target breast pump meets the working wearing state, the target breast pump is configured with configuration parameters corresponding to the target working mode, and a prompt message of successful wearing is displayed on the wearing guide page.

[0437] Option 6:

[0438] When the user wears the breast pump 20, the electronic device 10 displays a wearing mark interface through its display screen, and the user can perform a first marking operation in the wearing mark interface. That is, the electronic device 10 responds to the first marking operation on the wearing mark interface by marking the wearing position of the breast pump 20 on the wearing mark interface and / or turning on the marking prompt of the breast pump 20.

[0439] Optionally, in some embodiments, when the breast pump 20 is in the wearing state, the breast pump 20 responds to a second marking operation on the breast pump 20 by turning on a marking indicator light of the breast pump 20 and / or displaying a wearing mark in a wearing mark interface of the electronic device 10.

[0440] The breast pump wearing position recording method provided in the present application reminds the user of the target breast pump wearing position through eye-catching interface prompts and / or breast pump prompts, without the need for the user to confirm multiple times, thereby reducing the time the user spends setting the breast pump wearing position and thereby improving the wearing position recording efficiency.

[0441] The present application provides a method for recording the wearing position of a breast pump, comprising: displaying a wearing mark interface when detecting that a target breast pump is in a wearing state; marking the wearing position of the target breast pump on the wearing mark interface in response to a first marking operation on the wearing mark interface, and / or turning on a marking prompt for the target breast pump.

[0442] Please refer to Figure 43, which is a flow chart of the method for recording the wearing position of a breast pump provided by this application. The specific flow of the method for recording the wearing position of a breast pump can be as follows:

[0443] S101. When it is detected that the target breast pump is in a wearing state, a wearing mark interface is displayed.

[0444] When the electronic device detects that the target breast pump is in a wearing state, it displays a wearing mark interface. The wearing mark interface may display a first option and a second option, or an auxiliary marking object, etc., for assisting the user in marking. The first option and the second option may be set on the left and right sides of the wearing mark interface, or may be set in the upper area and the lower area, respectively. For example, the first option may be set on the left side of the wearing mark interface, and the second option may be set on the right side of the wearing mark interface. The auxiliary marking object may be a virtual image, an electronic compass, or a spherical ball, etc., for assisting the user in marking. If the auxiliary marking object is a virtual character, the virtual character changes according to the changes in the gyro sensor data of the electronic device. For example, if the gyro sensor of the electronic device indicates that the device is deflected to the left, then the virtual character may show a finger pointing to the left to prompt the user that the breast pump is worn on the left breast.

[0445] S102: In response to a first marking operation on the wearing marking interface, mark the wearing position of the target breast pump on the wearing marking interface, and / or enable a marking prompt for the target breast pump.

[0446] Optionally, in some embodiments of the present application, the first marking operation may be an operation on the electronic device, an operation on the first marking operation, or an operation on a preset area, which may be determined according to actual needs.

[0447] Optionally, in some embodiments of the present application, the first marking operation may be at least one of the following operations: long press, click, double click, continuous click, sliding operation in a preset direction, dragging, and shaking operation.

[0448] Optionally, in some embodiments of the present application, long pressing refers to a long pressing operation on a screen page of an electronic device using a finger or a touch tool.

[0449] Optionally, in some embodiments of the present application, double-clicking refers to a double-click operation on a screen page of an electronic device using a finger or a touch tool.

[0450] Optionally, in some embodiments of the present application, a continuous click refers to continuous clicking on a screen page of an electronic device using a finger or a touch tool, such as continuous clicking 3 times or more.

[0451] Optionally, in some embodiments of the present application, a sliding operation in a preset direction refers to a sliding direction pre-set by the software, and sliding on the screen page of the electronic device in the preset sliding direction by using a finger or a touch tool. Optionally, the preset direction can be from top to bottom, the preset direction can be from bottom to top, the preset direction can be first up and down and then left and right, the preset direction can be first left and right and then up and down, the preset direction can be an upper semicircle in a clockwise direction, the preset direction can be a lower semicircle in a counterclockwise direction, the preset direction can be an arc in a clockwise direction, and the like.

[0452] Optionally, in some embodiments of the present application, dragging refers to selecting a target object on a screen page of a mobile phone using a finger or a touch tool and moving it a certain distance.

[0453] Optionally, in some embodiments of the present application, the shaking operation refers to controlling the smart terminal to vibrate a certain number of times within a certain period of time by hand or other tools.

[0454] Optionally, in some embodiments of the present application, the wearing mark interface may include a first option and a second option. The step of “in response to the first marking operation, marking the wearing position of the target breast pump on the wearing mark interface” may specifically include:

[0455] In response to a click operation on the first option, marking the wearing position of the target breast pump as a first position;

[0456] In response to a click operation on the second option, the wearing position of the target breast pump is marked as a second position.

[0457] Please refer to Figure 44. The wearing marking interface may include a first option s1 and a second option s2. The first option s1 corresponds to a first position, and the second option s2 corresponds to a second position. Optionally, the first position is the left side, and the second position is the right side. In response to a click operation on the first option s1, the wearing position of the target breast pump is marked as the left side; in response to a click operation on the second option s2, the wearing position of the target breast pump is marked as the right side.

[0458] Optionally, in some embodiments of the present application, the first marking operation may be a sliding operation, that is, the step of “marking the wearing position of the target breast pump on the wearing marking interface in response to the first marking operation” may specifically include:

[0459] In response to the first marking operation, identifying an operation direction of the first marking operation;

[0460] When the operating direction is identified as the first preset direction, marking the wearing position of the target breast pump as the first position;

[0461] When the operating direction is identified as the second preset direction, the wearing position of the target breast pump is marked as the second position.

[0462] For example, specifically, please refer to Figure 45. The first preset direction can be horizontal to the left, and the second preset direction can be horizontal to the right. When it is recognized that the operation direction of the user's first marking operation on the wearing marking interface is horizontal to the left, the wearing position of the target breast pump is marked as the left side, as shown in Figure 45(a); when it is recognized that the operation direction of the user's second marking operation on the wearing marking interface is horizontal to the right, the wearing position of the target breast pump is marked as the right side, as shown in Figure 45(b).

[0463] For example, a slider s may be further displayed in the wearing mark interface, as shown in FIG46 . In response to a sliding operation on the slider s, when it is determined that the sliding direction corresponding to the sliding operation is horizontally to the left, the wearing position of the target breast pump is marked as the left side; when the sliding direction corresponding to the sliding operation is horizontally to the right, the wearing position of the target breast pump is marked as the right side. That is, optionally, in some embodiments, the wearing mark interface displays an auxiliary marking object, and the step of “in response to the first marking operation, marking the wearing position of the target breast pump on the wearing mark interface” may specifically include:

[0464] In response to a trigger operation on the auxiliary marking object, controlling the auxiliary marking object to change according to operation information of the trigger operation;

[0465] Based on the changed auxiliary marking object, the wearing position of the target breast pump is marked on the wearing marking interface.

[0466] Optionally, in some embodiments of the present application, the auxiliary marking object can be not only a slider, but also a virtual image, such as a virtual animal or virtual character, etc. Of course, the auxiliary marking object can also be an image of a compass or pointer.

[0467] It is understandable that the first marking operation can be performed not only on the auxiliary marking object, but also on the electronic device. When the first marking operation is performed on the electronic device, such as a rotation operation of the electronic device, after the user rotates the electronic device, the posture sensor of the electronic device can detect the change in the posture of the electronic device and determine the current direction of the electronic device, such as the leftward rotation of the electronic device corresponds to the left side of the breast pump being worn, and the rightward rotation of the electronic device corresponds to the right side of the breast pump being worn. That is, in response to the first marking operation, the wearing position of the target breast pump is marked on the wearing mark interface according to the rotation direction of the electronic device after the first marking operation.

[0468] Optionally, in some embodiments of the present application, the first marking operation may also be a tapping operation on the electronic device. That is, the step of “marking the wearing position of the target breast pump on the wearing marking interface in response to the first marking operation” may specifically include:

[0469] In response to a first marking operation, obtaining a number of taps corresponding to the first marking operation;

[0470] The wearing position of the target breast pump is marked on the wearing mark interface based on the number of taps.

[0471] The above completes the wearing position recording process of the breast pump of this application.

[0472] Optionally, in some embodiments of the present application, the first marking operation may also be a marking operation for an electronic device. That is, the step of “activating a marking prompt for a target breast pump in response to the first marking operation” may specifically include:

[0473] In response to the first marking operation, determining a marking position corresponding to the first marking operation;

[0474] Turn on the marking prompt for the target breast pump's corresponding marked position.

[0475] Optionally, in some embodiments, a display area is provided on the target breast pump, and the display area is used to display a marking prompt.

[0476] Optionally, the marking prompt is prompt information indicating that the target breast pump is worn on the left breast or the right breast.

[0477] As described above, the present application provides a method for recording the wearing position of a breast pump. When a target breast pump is detected to be in a wearing state, a wearing mark interface is displayed; in response to a first marking operation, the wearing position of the target breast pump is marked on the wearing mark interface, and / or a marking prompt for the target breast pump is turned on. In the breast pump wearing position recording scheme provided by the present application, the wearing mark interface can be displayed, and the wearing position of the target breast pump can be marked and / or a marking prompt for the target breast pump can be turned on according to the user's first marking operation on the wearing mark interface. That is, through a striking interface prompt and / or breast pump prompt, the user is reminded of the wearing position of the target breast pump, without the user having to confirm multiple times, thereby reducing the time the user takes to set the wearing position of the breast pump, and thus improving the efficiency of recording the wearing position.

[0478] The present application also provides a method for recording the wearing position of a breast pump, comprising: when a target breast pump is in a wearing state, in response to a second marking operation on the target breast pump, turning on a marking indicator light of the target breast pump, and / or displaying a wearing mark in a wearing mark interface.

[0479] Please refer to Figure 46, which is another flow chart of the method for recording the wearing position of a breast pump provided by this application. The specific flow of the method for recording the wearing position of a breast pump can be as follows:

[0480] S201: When a target breast pump is in a wearing state, in response to a second marking operation on the target breast pump, a marking indicator light of the target breast pump is turned on, and / or a wearing mark is displayed in a wearing mark interface.

[0481] The second marking operation can be triggered by the user or by the target breast pump itself. For example, the user can manually turn on the marking switch of the target breast pump to turn on the marking indicator light. Alternatively, the target breast pump has a control interface for selecting whether to place the target breast pump on the left or right breast. Optionally, when the marking indicator light of the target breast pump is turned on, the wearing mark is displayed in the wearing mark interface. In addition, in some embodiments, the user can manually turn on the marking switch of the target breast pump. Upon receiving the switch-on instruction, the target breast pump sends the instruction to the electronic device, thereby displaying the wearing mark in the wearing mark interface.

[0482] Optionally, by differentiating the sensing data between the target breast pump and the sensor on the left cup of the bra, or the sensing data between the target breast pump and the sensor on the right cup of the bra, it is determined whether the target breast pump is worn on the left breast or the right breast. For example, the sensing data can be differentiated based on the presence / absence, strength / weakness, differentiation settings, signal type, etc. of the signal.

[0483] The target breast pump and the sensor set on the bra can be used to distinguish the sensing data by whether they sense each other. For example, a sensor is set on the left cup of the bra, and no sensor is set on the right cup of the bra. The target breast pump is placed inside the bra. If the target breast pump senses the sensor, it can be determined that the target breast pump is worn on the left side at this time. If the target breast pump does not sense the sensor, it can be determined that the target breast pump is worn on the right side at this time. The sensor can also be set in the middle of the bra, that is, between the two cups, and sensors are set on the left / right side of the target breast pump. For example, a sensor is set on the left side of the target breast pump, and the target breast pump is placed inside the bra. If the target breast pump senses the sensor, it can be determined that the target breast pump is worn on the right side at this time. If the target breast pump does not sense the sensor, it can be determined that the target breast pump is worn on the left side at this time.

[0484] The sensing data can be distinguished by the size, strength, etc. of the sensing data between the target breast pump and the sensor set on the bra. For example, a first sensor is set on the left cup of the bra, and a second sensor is set on the right cup of the bra. The first sensor is different from the second sensor. The target breast pump is placed inside the bra. If the target breast pump senses the first sensor, it can be determined that the target breast pump is worn on the left side at this time. If the target breast pump senses the second sensor, it can be determined that the target breast pump is worn on the right side at this time.

[0485] It can be understood that the target breast pump is the breast pump that is currently being worn. Generally speaking, breast pumps are configured in pairs, used to respectively extract milk from the mother's left / right breast. That is, the breast pump purchased by the user may include a first breast pump and a second breast pump. When wearing the breast pump, the user can wear the first breast pump first or the second breast pump first, and can wear the first breast pump on the left breast first or the right breast first.

[0486] Optionally, a Hall sensor may be provided on the left side of the first breast pump, and a magnetic module may be provided on the right side of the second breast pump. When a bilateral wearing operation is detected, if the Hall sensor and the magnetic module are detected to be inductively coupled to each other, it is determined that the first breast pump is worn on the right breast and the second breast pump is worn on the left breast. If the sensor data reported by the first breast pump is empty, it is determined that the first breast pump is worn on the left breast and the second breast pump is worn on the right breast.

[0487] Optionally, a Hall sensor may be provided on the right side of the first breast pump, and a magnetic module may be provided on the right side of the second breast pump. When a bilateral wearing operation is detected, if the Hall sensor and the magnetic module are detected to be inductively coupled to each other, it is determined that the first breast pump is worn on the left breast and the second breast pump is worn on the right breast. If the sensor data reported by the first breast pump is empty, it is determined that the first breast pump is worn on the right breast and the second breast pump is worn on the left breast.

[0488] Optionally, Hall sensors can be provided on both the left and right sides of the first breast pump, and the two Hall sensors are provided differently, namely, a first Hall sensor and a second Hall sensor, and a magnetic module is provided on the second breast pump. For example, the first Hall sensor is provided on the left side of the first breast pump and the second Hall sensor is provided on the right side, and the magnetic module is provided on the second breast pump. When a bilateral wearing operation is detected, if the second Hall sensor and the magnetic module are detected to be inductively coupled, it is determined that the first breast pump is worn on the left breast and the second breast pump is worn on the right breast; if the first Hall sensor and the magnetic module are detected to be inductively coupled, it is determined that the first breast pump is worn on the right breast and the second breast pump is worn on the left breast.

[0489] Optionally, a magnetic module can be set on both the left and right sides of the first breast pump, and the two magnetic modules are set differently, namely the first magnetic module and the second magnetic module, and a Hall sensor is set on the second breast pump, such as the first magnetic module is set on the left side of the first breast pump and the second magnetic module is set on the right side, and a Hall sensor is set on the second breast pump. When a bilateral wearing operation is detected, if the Hall sensor and the first magnetic module are detected to be inductively coupled, it is determined that the first breast pump is worn on the left breast and the second breast pump is worn on the right breast; if the Hall sensor and the second magnetic module are detected to be inductively coupled, it is determined that the first breast pump is worn on the right breast and the second breast pump is worn on the left breast.

[0490] Optionally, a Hall effect sensor may be provided on both the left side of the first breast pump and the left side of the second breast pump, and the two Hall effect sensors may be provided separately, namely, a first Hall effect sensor and a second Hall effect sensor. A magnetic module may be provided on both the right side of the first breast pump and the right side of the second breast pump, and the two magnetic modules may be provided separately, namely, a first magnetic module and a second magnetic module. For example, a first Hall effect sensor may be provided on the left side of the first breast pump and a second Hall effect sensor may be provided on the left side of the second breast pump, or a first magnetic module may be provided on the right side of the first breast pump and a second magnetic module may be provided on the right side of the second breast pump. When a bilateral wearing operation is detected, if the first magnetic module and the second Hall effect sensor mutually sense each other, it is determined that the first breast pump is worn on the left breast and the second breast pump is worn on the right breast. If the first Hall effect sensor and the second magnetic module mutually sense each other, it is determined that the first breast pump is worn on the right breast and the second breast pump is worn on the left breast. Alternatively, a first Hall effect sensor may be provided on the right side of the first breast pump and a second Hall effect sensor may be provided on the right side of the second breast pump, and a first magnetic module may be provided on the left side of the first breast pump and a second magnetic module may be provided on the left side of the second breast pump.

[0491] The above combination of the Hall sensor and the magnetic module is only an example, and may also be any other sensor and inductive element that can detect each other.

[0492] Optionally, in some embodiments, when a position change operation is performed on the target breast pump, the wearing edit in the wearing edit interface is updated based on the changed indicator light.

[0493] The above completes the wearing position recording process of the breast pump of this application.

[0494] As described above, the present application provides a method for recording the wearing position of a breast pump. When a target breast pump is in a wearing state, in response to a second marking operation on the target breast pump, the marking indicator light of the target breast pump is turned on, and / or a wearing mark is displayed in a wearing mark interface. In the breast pump wearing position recording scheme provided by the present application, the marking indicator light of the target breast pump can be turned on, and / or the wearing mark is displayed in the wearing mark interface to remind the user of the wearing position of the target breast pump, without the need for the user to confirm multiple times, thereby reducing the time the user spends setting the wearing position of the breast pump and thereby improving the efficiency of recording the wearing position.

[0495] Please refer to Figure 47, which is another flow chart of the method for recording the wearing position of a breast pump provided by this application. The specific flow of the method for recording the wearing position of a breast pump can be as follows:

[0496] S301: Configuring a detection element disposed on a bra and / or a breast pump to detect whether a target breast pump is worn on the left breast or the right breast;

[0497] S302: Mark the wearing position of the target breast pump on the wearing mark interface according to the wearing information of the target breast pump, and / or enable the marking prompt of the target breast pump.

[0498] The specific detection method and marking method are similar to those in the aforementioned embodiment. Please refer to the description of the aforementioned embodiment and will not be repeated here.

[0499] Accordingly, referring to FIG. 48 , an embodiment of the present application provides a breast pump wearing position recording device (hereinafter referred to as a recording device), the detection device including a display module 201 and a marking module 202, specifically as follows:

[0500] The display module 201 is configured to display a wearing mark interface when it is detected that the target breast pump is in a wearing state.

[0501] The marking module 202 is configured to mark the wearing position of the target breast pump on the wearing marking interface in response to the first marking operation, and / or enable a marking prompt for the target breast pump.

[0502] Optionally, in some embodiments of the present application, the wearing marking interface includes a first option and a second option, and the marking module 202 can be specifically used to: in response to a click operation on the first option, mark the wearing position of the target breast pump as the first position; in response to a click operation on the second option, mark the wearing position of the target breast pump as the second position.

[0503] Optionally, in some embodiments of the present application, the marking module 202 can be specifically used to: in response to a first marking operation, identify the operation direction of the first marking operation; when the operation direction is identified as a first preset direction, mark the wearing position of the target breast pump as the first position; when the operation direction is identified as a second preset direction, mark the wearing position of the target breast pump as the second position.

[0504] Optionally, in some embodiments of the present application, the wearing mark interface displays an auxiliary mark object, and the marking module 202 can be specifically used to: respond to a trigger operation on the auxiliary mark object, control the change of the auxiliary mark object according to the operation information of the trigger operation; based on the changed auxiliary mark object, mark the wearing position of the target breast pump on the wearing mark interface.

[0505] Optionally, in some embodiments of the present application, the marking module 202 may be specifically configured to: in response to a first marking operation, obtain a number of taps corresponding to the first marking operation; and mark the wearing position of the target breast pump on the wearing marking interface based on the number of taps.

[0506] Optionally, in some embodiments of the present application, the marking module 202 may be specifically configured to: determine, in response to the first marking operation, a marking position corresponding to the first marking operation; and enable a marking prompt for the target breast pump corresponding to the marking position.

[0507] Optionally, in some embodiments, a display area is provided on the target breast pump, and the display area is used to display a marking prompt.

[0508] Optionally, the marking prompt is prompt information indicating that the target breast pump is worn on the left breast or the right breast.

[0509] As described above, the present application provides a device for recording the wearing position of a breast pump. When the display module 201 detects that the target breast pump is in a wearing state, it displays a wearing mark interface. The marking module 202, in response to a first marking operation, marks the wearing position of the target breast pump on the wearing mark interface and / or turns on a mark prompt for the target breast pump. In the breast pump wearing position recording scheme provided in the present application, the wearing mark interface can be displayed, and the wearing position of the target breast pump can be marked and / or a mark prompt for the target breast pump can be turned on according to the user's first marking operation on the wearing mark interface. That is, through a striking interface prompt and / or breast pump prompt, the user is reminded of the wearing position of the target breast pump, without the user having to confirm multiple times, thereby reducing the time the user spends setting the wearing position of the breast pump, and thus improving the efficiency of recording the wearing position.

[0510] Referring to FIG. 49 , an embodiment of the present application provides a breast pump wearing position recording device (hereinafter referred to as a recording device). The detection device includes an opening module 203 , specifically as follows:

[0511] The turning-on module 203 is configured to, when detecting that the target breast pump is in the wearing state, turn on a mark indicator light of the target breast pump in response to a second marking operation on the target breast pump, and / or display a wearing mark in the wearing mark interface.

[0512] As described above, the present application provides a device for recording the wearing position of a breast pump. When a target breast pump is in a wearing state, the activation module 203 responds to a second marking operation on the target breast pump by turning on the mark indicator of the target breast pump and / or displaying a wearing mark in a wearing mark interface. In the breast pump wearing position recording scheme provided by the present application, the user can be reminded of the wearing position of the target breast pump by turning on the mark indicator of the target breast pump and / or displaying a wearing mark in a wearing mark interface, without requiring the user to confirm multiple times, thereby reducing the time the user spends setting the wearing position of the breast pump and thereby improving the efficiency of recording the wearing position.

[0513] Referring to FIG. 50 , an embodiment of the present application provides a breast pump wearing position recording device (hereinafter referred to as a recording device). The detection device includes a configuration module 204 and a control module 205 , specifically as follows:

[0514] The configuration module 204 is used to configure the detection element provided on the bra and / or the breast pump to detect whether the target breast pump is worn on the left breast or the right breast.

[0515] The control module 205 is configured to mark the wearing position of the target breast pump on the wearing mark interface according to the wearing information of the target breast pump, and / or enable a marking prompt for the target breast pump.

[0516] In addition, the present application also provides an electronic device, as shown in FIG50, which shows a schematic diagram of the structure of the electronic device involved in the present application. Specifically, the electronic device may include a processor 301 with one or more processing cores, a memory 302 with one or more computer-readable storage media, a power supply 303, and an input unit 304. Those skilled in the art will understand that the electronic device structure shown in FIG50 does not constitute a limitation on the electronic device, and may include more or fewer components than shown in the figure, or combine certain components, or arrange the components differently. Among them:

[0517] The processor 301 is the control center of the electronic device. It connects all parts of the electronic device using various interfaces and lines. By running or executing software programs and / or modules stored in the memory 302 and accessing data stored in the memory 302, it performs various functions of the electronic device and processes data, thereby monitoring the electronic device as a whole. Optionally, the processor 301 may include one or more processing cores; preferably, the processor 301 may integrate an application processor and a modem processor, wherein the application processor primarily processes the operating system, user interface, and application programs, while the modem processor primarily handles wireless communications. It is understood that the modem processor may not be integrated into the processor 301.

[0518] The memory 302 can be used to store software programs and modules. The processor 301 executes various functional applications and data processing by running the software programs and modules stored in the memory 302. The memory 302 may mainly include a program storage area and a data storage area, wherein the program storage area may store an operating system, an application required for at least one function (such as a sound playback function, an image playback function, etc.), etc.; the data storage area may store data created according to the use of the electronic device, etc. In addition, the memory 302 may include a high-speed random access memory, and may also include a non-volatile memory, such as at least one disk storage device, a flash memory device, or other volatile solid-state storage device. Accordingly, the memory 302 may also include a memory controller to provide the processor 301 with access to the memory 302.

[0519] The electronic device also includes a power supply 303 for supplying power to various components. Preferably, the power supply 303 can be logically connected to the processor 301 via a power management system, thereby enabling the power management system to manage charging, discharging, and power consumption. The power supply 303 can also include one or more DC or AC power supplies, a recharging system, a power failure detection circuit, a power converter or inverter, a power status indicator, and other arbitrary components.

[0520] The electronic device may further include an input unit 304, which may be configured to receive input digital or character information and generate keyboard, mouse, joystick, optical or trackball signal inputs related to user settings and function control.

[0521] Although not shown, the electronic device may further include a display unit, etc., which will not be described in detail here. Specifically, in this embodiment, the processor 301 in the electronic device will load the executable files corresponding to the processes of one or more application programs into the memory 302 according to the following instructions, and the processor 301 will run the application programs stored in the memory 302 to implement various functions as follows:

[0522] When it is detected that the target breast pump is in a wearing state, a wearing mark interface is displayed; in response to a first marking operation, the wearing position of the target breast pump is marked on the wearing mark interface, and / or a marking prompt for the target breast pump is turned on.

[0523] When the target breast pump is in the wearing state, in response to a second marking operation on the target breast pump, a marking indicator light of the target breast pump is turned on, and / or a wearing mark is displayed in the wearing mark interface.

[0524] A detection element is configured on the bra and / or the breast pump to detect whether the target breast pump is worn on the left breast or the right breast; based on the wearing information of the target breast pump, the wearing position of the target breast pump is marked on the wearing mark interface, and / or the marking prompt of the target breast pump is turned on.

[0525] The specific implementation of the above operations can be found in the previous embodiments and will not be repeated here.

[0526] In an embodiment of the present application, a wearing mark interface can be displayed, and according to a first marking operation of the user on the wearing mark interface, the wearing position of the target breast pump can be marked, and / or a marking prompt of the target breast pump can be turned on. That is, through a striking interface prompt and / or a breast pump prompt, the user is reminded of the wearing position of the target breast pump, without the need for the user to confirm multiple times, thereby reducing the time the user spends in setting the wearing position of the breast pump, and thereby improving the efficiency of recording the wearing position.

[0527] Those skilled in the art will appreciate that all or part of the steps in the various methods of the above embodiments may be accomplished by instructions, or by controlling related hardware through instructions. The instructions may be stored in a computer-readable storage medium and loaded and executed by a processor.

[0528] To this end, the present application provides a storage medium storing a plurality of instructions that can be loaded by a processor to execute the steps of any of the breast pump wearing position recording methods provided in the present application. For example, the instructions can execute the following steps:

[0529] When it is detected that the target breast pump is in a wearing state, a wearing mark interface is displayed; in response to a first marking operation, the wearing position of the target breast pump is marked on the wearing mark interface, and / or a marking prompt for the target breast pump is turned on.

[0530] When the target breast pump is in the wearing state, in response to a second marking operation on the target breast pump, a marking indicator light of the target breast pump is turned on, and / or a wearing mark is displayed in the wearing mark interface.

[0531] The specific implementation of the above operations can be found in the previous embodiments and will not be repeated here.

[0532] In an embodiment of the present application, upon receiving a completion operation for a target breast pump, sensing data from the target breast pump or sensor is obtained, and then, based on the sensing data, a wearing position detection result of the target breast pump is determined. In the breast pump wearing position detection method provided in the present application, upon receiving a completion operation for a target breast pump, sensing data from the bra corresponding to the target breast pump is obtained, and a wearing position detection result of the target breast pump is output using a position detection strategy corresponding to the sensing data. This eliminates the need for the user to manually set the wearing position of the breast pump after donning the breast pump, thereby improving the reliability of the milking data recorded by the breast pump.

[0533] Those skilled in the art will appreciate that all or part of the steps in the various methods of the above embodiments may be accomplished by instructions, or by controlling related hardware through instructions. The instructions may be stored in a computer-readable storage medium and loaded and executed by a processor.

[0534] To this end, the present application provides a storage medium storing a plurality of instructions that can be loaded by a processor to execute the steps of any of the breast pump wearing position detection methods provided in the present application. For example, the instructions can execute the following steps:

[0535] When a wearing completion operation for a target breast pump is received, sensing data of the target breast pump or sensor is acquired; and based on the sensing data, a wearing position detection result of the target breast pump is determined.

[0536] The specific implementation of the above operations can be found in the previous embodiments and will not be repeated here.

[0537] The storage medium may include a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk, etc.

[0538] Since the instructions stored in the storage medium can execute the steps in any of the breast pump wearing position detection methods provided in the present application, the beneficial effects that can be achieved by any of the breast pump wearing position detection methods provided in the present application can be achieved. Please refer to the previous embodiments for details and will not be repeated here.

[0539] According to one aspect of the present application, a computer program product or computer program is provided, the computer program product or computer program including computer instructions stored in a computer-readable storage medium. A processor of an electronic device reads the computer instructions from the computer-readable storage medium and executes the computer instructions, causing the electronic device to perform the methods provided in the various optional implementations described above.

[0540] The above is a detailed introduction to the breast pump wearing position detection method, device, storage medium, bra and system provided by the present application. Specific examples are used herein to illustrate the principles and implementation methods of the present application. The description of the above embodiments is only used to help understand the method and core ideas of the present application. At the same time, for those skilled in the art, according to the ideas of the present application, there may be changes in the specific implementation methods and application scope. In summary, the content of this specification should not be understood as limiting the present application.

Claims

1. A method for detecting the wearing position of a breast pump, characterized in that, Comprising: A sensor configured to be disposed on a bra, and the sensor is used to sense with a sensor disposed on a breast pump; When receiving a wearing completion operation for a target breast pump, obtaining the sensing data of the target breast pump or the sensor; Based on the sensing data, determining a wearing position detection result of the target breast pump.

2. The wearing position detection method according to claim 1, wherein The determining the wearing position detection result of the target breast pump based on the sensing data includes: Detecting the sensing data; Determining the wearing position of the target breast pump according to whether the signal of the sensor is detected.

3. The wearing position detection method according to claim 1, characterized in that, The determining the wearing position detection result of the target breast pump based on the sensing data includes: Detecting the sensing data; Determining the wearing position of the target breast pump according to whether the detected signal is a first sensing signal or a second sensing signal.

4. The wearing position detection method according to claim 1, characterized in that The determining the wearing position detection result of the target breast pump based on the sensing data includes: Extracting capacitance information and infrared information from the sensing data; When the capacitance information is empty, determining that the wearing position of the target breast pump is a preset position. When the capacitance information is not empty, determining that the wearing position of the target breast pump corresponds to the sensor.

5. The wearing position detection method according to any one of claims 1 to 4, characterized in that, After determining the wearing position detection result of the target breast pump based on the sensing data, further comprising: Outputting a wearing position prompt of the wearing position detection result.

6. The wearing position detection method according to any one of claims 1 to 5, characterized in that, After determining the position wearing result of the target breast pump according to the sensing data, further comprising: Recording milk pumping data corresponding to different breasts according to the position wearing result.

7. The wearing position detection method according to any one of claims 1 to 6, performing a wearing position information prompt on a terminal device or the breast pump.

8. A computer-readable storage medium storing a computer program, characterized in that: When the computer program is executed by a processor, the processor is caused to execute the steps of the wearing position detection method of the target breast pump according to any one of claims 1 to 7.

9. A wearing position detection system for a breast pump, characterized in that, Comprising: A sensor, configured to be disposed on a bra, and used to sense with a sensor disposed on a breast pump worn on the bra; A controller, configured to judge whether the breast pump is worn on the left breast or the right breast according to the sensing information of the sensor.

10. A brassiere, characterized in that, Comprising: A bra body, configured to be worn on a breast, and a breast pump can be placed between the bra body and the breast to pump milk from the breast; A sensor, disposed on the bra body, and used to sense with a sensor disposed on the breast pump to detect whether the breast pump is worn on the left breast or the right breast.

11. A wearing position detection system for a breast pump, characterized in that, Comprising: A breast pump device, used for milk pumping and including a sensor; A sensor, disposed on a bra, and used to sense with the sensor; A controller, disposed on the breast pump body, configured to judge whether the breast pump is worn on the left breast or the right breast according to the sensing information between the sensor and the sensor.

12. The wearing position detection system of the breast pump according to claim 11, wherein The sensors are arranged in pairs, including a first sensor and a second sensor, which are respectively disposed on the left and right sides of the bra, and the first sensor is different from the second sensor; Judging whether the breast pump is worn on the left breast or the right breast according to the sensing information between the sensor and the sensor includes: Based on whether the sensor senses the first inductor or the second inductor, it is determined whether the breast pump is worn on the left breast or the right breast.

13. The wearing position detection system of the breast pump according to claim 11, characterized in that, The inductor is arranged on the left side or the right side of the bra; Determining whether the breast pump is worn on the left breast or the right breast according to the sensing information of the inductor includes: Based on whether the sensor senses the inductor, it is determined whether the breast pump is worn on the left breast or the right breast.

14. The wearing position detection system of the breast pump according to claim 11, wherein The inductor is arranged at the middle position of the bra.

15. A wearing position detection system for a breast pump, characterized in that, It includes: A breast pump device for milk extraction and including a sensor; A bra body for wearing on the breast, and a breast pump can be placed between the bra body and the breast to extract milk from the breast; An inductor is arranged on the bra body and is used to sense with the sensor to detect whether the target breast pump is worn on the left breast or the right breast.

16. A method for detecting the wearing position of a breast pump, characterized in that, It includes: When it is detected that the target breast pump is in a worn state, first human data collected by the sensor arranged on the target breast pump is obtained; Based on the first human data, the position wearing result of the target breast pump is determined.

17. The wearing position detection method according to claim 16, wherein The determining the position wearing result of the target breast pump based on the first human data includes: Obtaining pre-stored human data; Based on the correlation between the first human data and the pre-stored human data, it is determined whether the target breast pump is worn on the left breast or the right breast.

18. The wearing position detection method according to claim 16 or 17, characterized in that, The human data is at least one of human blood oxygen concentration, heart rate data, breast shape, transmittance, body fat percentage, muscle content, hardness or elasticity.

19. The wearing position detection method according to any one of claims 16 to 18, characterized in that After determining the position wearing result of the target breast pump according to the human data, it further includes: According to the position wearing result, milk extraction data corresponding to different sides of the breast is recorded.

20. The wearing position detection method according to claim 19, wherein The recording the milk extraction data corresponding to different sides of the breast according to the position wearing result includes: Obtaining the historical wearing information of the target breast pump; According to the historical wearing information and the position wearing result, milk extraction data corresponding to different sides of the breast is recorded.

21. The wearing position detection method according to any one of claims 16 to 20, and wearing position information is prompted on a terminal device or a breast pump.

22. A breast pump, characterized in that, It includes: A breast pump body for wearing on the breast to extract milk from the breast; An induction component, the induction component is arranged on the breast pump body, and the induction component is used to collect human data; A controller is arranged on the breast pump body and is used to determine the position wearing result of the breast pump according to the human data.

23. The breast pump according to claim 22, characterized in that, The determining the position wearing result of the breast pump specifically includes: determining whether the breast pump is worn on the left breast or the right breast.

24. The breast pump according to claim 22, wherein, The human data includes at least one of human blood oxygen concentration, heart rate data, breast shape, transmittance, body fat percentage, muscle content, hardness or elasticity.

25. The breast pump according to claim 22, characterized in that, The induction component includes at least one of a capacitance sensor, an inductance sensor, a hardness sensor, an infrared sensor, and an ultrasonic sensor.

26. The breast pump according to claim 22, wherein A control panel is arranged on the breast pump body; the controller is further used to control the control panel to display the wearing position of the breast pump.

27. A computer-readable storage medium storing a computer program, characterized in that: When the computer program is executed by a processor, the processor is caused to execute the method for detecting the wearing position of the target breast pump according to any one of claims 16 to 21.

28. A method for detecting the wearing position of a breast pump, characterized in that, Including: Receiving sensor data reported by a first breast pump, where the sensor data includes induction data collected by a sensor component provided on the first breast pump regarding an induction component provided on a second breast pump; Determining a position wearing result of the first breast pump and the second breast pump according to the sensor data.

29. The wearing position detection method according to claim 28, wherein The determining the position wearing result of the first breast pump and the second breast pump according to the sensor data includes: Determining the relative position between the sensor component and the induction component; Based on the sensor data and the relative position between the sensor component and the induction component, determining the position wearing result of the first breast pump and the second breast pump.

30. The wearing position detection method according to claim 29, wherein, The determining the relative position between the sensor component and the induction component includes: Determining the relative position according to whether the sensor component detects the induction component; and / or Determining the relative position according to the signal strength of the induction component detected by the sensor component.

31. The wearing position detection method according to claim 29, wherein, The induction component includes a first inductor and a second inductor, The determining the relative position between the sensor and the induction component includes: When the sensor detects the first inductor, determining that the sensor is close to the first inductor; When the sensor detects the second inductor, determining that the sensor is close to the second inductor.

32. The wearing position detection method according to claim 29, wherein The sensor component includes a first sensor and a second sensor, The determining the relative position between the sensor component and the induction component includes: When the first sensor detects the inductor, determining that the inductor is close to the first sensor; When the second sensor detects the inductor, determining that the inductor is close to the second sensor.

33. The wearing position detection method according to any one of claims 28 to 32, characterized in that, After the determining the position wearing result of the first breast pump and the second breast pump according to the sensor data, further including: Recording milk pumping data corresponding to different sides of the breast according to the position wearing result.

34. The wearing position detection method according to claim 33, wherein, The recording milk pumping data corresponding to different sides of the breast according to the position wearing result includes: Obtaining the historical wearing results corresponding to the first breast pump and the second breast pump; Recording milk pumping data corresponding to different sides of the breast according to the position wearing result, the historical wearing results corresponding to the first breast pump and the second breast pump.

35. A wearing position detection system for a breast pump, characterized in that, Including: A first breast pump and a second breast pump; A sensor component provided on the first breast pump; An induction component provided on the second breast pump; A controller provided on the first breast pump or the second breast pump; The sensor component is used to collect induction data regarding the induction component; The controller is used to determine the position wearing result of the first breast pump and the second breast pump according to the induction data.

36. The wearing position detection system according to claim 35, wherein The determining the position wearing result of the first breast pump and the second breast pump according to the induction data includes: Determining the relative position between the sensor component and the induction component; Based on the induction data and the relative position between the sensor and the induction component, determining the position wearing result of the first breast pump and the second breast pump.

37. The wearing position detection system according to claim 36, characterized in that, Determining the relative position between the sensor and the induction component includes: Determining the relative position according to whether the sensor component detects the induction component; and / or Determining the relative position according to the signal strength of the induction component detected by the sensor.

38. The wearing position detection system according to claim 36, wherein, The first induction component includes a first inductor and a second inductor, and the first inductor is different from the second inductor; Determining the relative position between the sensor component and the induction component includes: When the sensor component detects the first inductor, it is determined that the first sensor component is close to the first inductor; When the first sensor component detects the second inductor, it is determined that the first sensor component is close to the second inductor.

39. The wearing position detection system according to claim 36, wherein The sensor component includes a first sensor and a second sensor, and the first sensor is different from the second sensor; Determining the relative position between the sensor component and the induction component includes: When the first sensor detects the inductor, it is determined that the inductor is close to the first sensor; When the second sensor detects the inductor, it is determined that the inductor is close to the second sensor.

40. A wearing position detection system for a breast pump, characterized in that, It includes: A first breast pump and a second breast pump; A first sensor and a first inductor, arranged on the first breast pump; A second sensor and a second inductor, arranged on the second breast pump; A controller, arranged on the first breast pump or the second breast pump; The first sensor is used to collect first induction data about the first inductor and / or the second inductor; The second sensor is used to collect second induction data about the first inductor and / or the second inductor; The controller is used to determine the wearing position result of the first breast pump and the second breast pump according to the first induction data and / or the second induction data.

41. A computer-readable storage medium stores a computer program, which when executed by a processor causes the processor to execute the steps of detecting the wearing position of the breast pump according to any one of claims 28 to 34.

42. A wearing prompt method for a breast pump, characterized in that, It includes: Obtaining the wearing information corresponding to the breast pump, where the wearing information is collected by a sensor arranged on the breast pump; Controlling the breast pump and / or the terminal device to execute a prompt event according to the wearing information.

43. The wearing reminder method according to claim 42, wherein The prompt event includes: Playing a prompt sound for correct wearing, and / or; A prompt sound for incorrect wearing.

44. The wearing prompt method according to claim 42, wherein, The prompt event includes: Displaying a prompt message for incorrect wearing on the display screen of the breast pump and / or the terminal device.

45. The wearing prompt method according to claim 44, wherein It further includes: Displaying a wearing guide for correct wearing on the display screen of the breast pump and / or the terminal device.

46. The wearing reminder method according to claim 44, wherein The prompt event includes: When the wearing is correct, controlling the breast pump and / or the current device to vibrate a first preset number of times; When the wearing is incorrect, controlling the breast pump and / or the current device to vibrate a second preset number of times.

47. The wearing reminder method according to claim 46, wherein The first preset number is different from the second preset number.

48. The wearing reminder method according to any one of claims 42 to 47, characterized in that, Obtaining the wearing information corresponding to the breast pump includes: Obtaining the wearing information corresponding to the breast pump according to the acceleration information of the breast pump.

49. A breast pump, characterized in that, It includes: The breast pump body; A wearing detection mechanism for detecting the wearing information of the breast pump main body.

50. The breast pump according to claim 49, wherein, The wearing detection mechanism includes: A signal prompting element; A processor for controlling the signal prompting element to output a prompt message based on the wearing information according to the wearing information.

51. The breast pump according to claim 50, wherein: The signal prompting element includes a speaker; Controlling the signal prompting element to output a prompt message based on the wearing information includes: controlling the speaker to broadcast a prompt sound for correct wearing and / or a prompt sound for incorrect wearing.

52. The breast pump according to claim 50 or 51, wherein: The signal prompting element includes a display screen; Controlling the signal prompting element to output a prompt message based on the wearing information includes: controlling the display screen to display a prompt message for incorrect wearing.

53. The breast pump according to claim 52, characterized in that: The processor is further configured to control the display screen to display a wearing guide for correct wearing.

54. The breast pump according to any one of claims 50 to 53, wherein: The signal prompting element includes a vibration element; Controlling the signal prompting element to output a prompt message based on the wearing information includes: When the wearing is correct, controlling the breast pump and / or the current device to vibrate a first preset number of times; When the wearing is incorrect, controlling the breast pump and / or the current device to vibrate a second preset number of times.

55. The breast pump according to claim 49, characterized in that, Further includes: A processor for generating a prompt message according to the wearing information; A transmitter for sending the prompt message to a terminal device.

56. The breast pump according to claim 49, characterized in that, Further includes: A transmitter for sending the wearing information to a terminal device.

57. A terminal device includes: A receiver for receiving the wearing information of the breast pump sent by the breast pump; A signal prompting element; A processor for controlling the signal prompting element to output a prompt message according to the wearing information.

58. The terminal device according to claim 57, wherein: The signal prompting element includes a speaker; Controlling the signal prompting element to output a prompt message based on the wearing information includes: controlling the speaker to broadcast a prompt sound for correct wearing and / or a prompt sound for incorrect wearing.

59. The terminal device according to claim 57 or 58, wherein: The signal prompting element includes a display screen; Controlling the signal prompting element to output a prompt message based on the wearing information includes: controlling the display screen to display a prompt message for incorrect wearing.

60. The breast pump according to claim 59, wherein: The processor is further configured to control the display screen to display a wearing guide for correct wearing.

61. The terminal device according to any one of claims 57 to 60, wherein: The signal prompting element includes a vibration element; Controlling the signal prompting element to output a prompt message based on the wearing information includes: When the wearing is correct, controlling the breast pump and / or the current device to vibrate a first preset number of times; When the wearing is incorrect, controlling the breast pump and / or the current device to vibrate a second preset number of times.

62. A terminal device includes: A receiver for receiving the wearing prompt message sent by the breast pump; A signal prompting element; A processor for controlling the signal prompting element to output the wearing prompt information according to the wearing prompt information.

63. The wearing prompt system of the breast pump according to claim 49, wherein, The prompt information includes a prompt sound, a prompt page, and a wearing guide.

64. The wearing prompt system of the breast pump according to claim 50, wherein, The wearing detection mechanism includes sensors for detecting whether the breast pump body is hermetically fitted to the breast, and / or for detecting whether the mother's nipple is placed along the nipple passage, and / or for detecting whether the breast pump body is worn obliquely.

65. A wearing guidance method for a breast pump, characterized in that, Including: In response to a wearing operation triggered for a target breast pump, display the wearing guidance information of the target breast pump, where the wearing guidance information is used to guide the user to wear the target breast pump in the working mode.

66. The wearing guidance method of the breast pump according to claim 65, wherein, Further including: Determine whether the current wearing state of the target breast pump meets a preset working wearing state; When the current wearing state of the target breast pump meets the working wearing state, configure the target breast pump with configuration parameters corresponding to the target working mode and / or display a prompt message indicating successful wearing.

67. The wearing guidance method according to claim 66, characterized in that, Configuring the target breast pump with configuration parameters corresponding to the target working mode includes: Displaying a parameter configuration page; In response to a parameter configuration operation on the parameter configuration page, configure the target breast pump with configuration parameters corresponding to the target working mode.

68. The wearing guidance method according to claim 66 or 67, characterized in that, Further including: Displaying an experience control; In response to a click operation on the experience control, control the target breast pump to work according to a preset suction strategy in the target working mode.

69. The wearing guidance method according to any one of claims 65 to 68, characterized in that, The method further includes: Displaying a selection control for wearing the target breast pump on the left breast or the right breast in the wearing guidance page.

70. The wearing guidance method according to claim 69, characterized in that, The method further includes: In response to a selection operation on the selection control, display the wearing position of the target breast pump in the wearing guidance page.

71. The wearing guidance method according to any one of claims 65 to 70, characterized in that, The method further includes: Prompting the user to select a wearing prompt for wearing the target breast pump on the left breast or the right breast in the wearing guidance page.

72. The wearing guidance method according to any one of claims 65 to 71, characterized in that, Further including: If the current wearing state does not meet the working wearing state, then display a prompt message indicating a wearing error in the wearing guidance page.

73. A breast pump system, characterized in that, Including: A breast pump body for wearing on the mother's breast and sucking milk from the breast, where the breast pump body includes: A breast milk container, where the breast milk container includes a milk storage container and a connecting portion, and the milk storage container is connected to the connecting portion; A milk sucking member, where the milk sucking member includes a fitting portion and a nipple passage, the shape of the fitting portion is adapted to the breast, and the nipple passage is connected to the milk storage container through the connecting portion; A wearing detection mechanism for detecting whether the milk sucking member is correctly worn.

74. The breast pump system according to claim 73, characterized in that, The wearing detection mechanism includes a first sensor and a second sensor, the first sensor is disposed on the fitting portion, the second sensor is disposed in the nipple passage, and the breast pump system further includes a controller disposed on the breast pump body, and the controller is configured to determine whether the milk sucking member is correctly worn according to the sensing information of the first sensor and the sensing information of the second sensor.

75. The breast pump system according to claim 74, wherein The first sensor is used to detect whether the fitting portion is hermetically fitted to the breast.

76. The breast pump system according to any one of claims 74 or 75, characterized in that, The second sensor is used to detect whether the mother's nipple is placed along the extension of the nipple channel.

77. The breast pump system according to any one of claims 73 to 76, characterized in that, The wearing detection mechanism further includes a third sensor, which is used to detect whether the breast pump main body is worn obliquely.

78. The breast pump system according to any one of claims 73 to 77, characterized in that The breast pump system further includes a communication connection module, which is used to connect the breast pump main body and the terminal device or server, and transmit lactation-related information of the breast pump main body.

79. The breast pump system according to any one of claims 73 to 78, characterized in that, The breast pump system further includes an identification element for at least identifying one target breast pump main body, so that the terminal device or server can identify and match the target breast pump main body.

80. The breast pump system according to any one of claims 73 to 79, characterized in that, The breast pump system further includes identification elements for at least respectively identifying two target breast pump main bodies, namely a first identification element and a second identification element, so that the terminal device or server can respectively identify and match the target breast pump main bodies.

81. A method for recording the wearing position of a breast pump, characterized in that, Including: When it is detected that the target breast pump is in a worn state, display a wearing mark interface; In response to a first marking operation, mark the wearing position of the target breast pump on the wearing mark interface, and / or turn on the marking prompt of the target breast pump.

82. The wearing position recording method according to claim 81, characterized in that, The wearing mark interface includes a first option and a second option. The step of marking the wearing position of the target breast pump on the wearing mark interface in response to the first marking operation includes: In response to a click operation on the first option, mark the wearing position of the target breast pump as the first position; In response to a click operation on the second option, mark the wearing position of the target breast pump as the second position.

83. The wearing position recording method according to claim 81, wherein, The step of marking the wearing position of the target breast pump on the wearing mark interface in response to the first marking operation includes: In response to the first marking operation, identify the operation direction of the first marking operation; When it is identified that the operation direction is the first preset direction, mark the wearing position of the target breast pump as the first position; When it is identified that the operation direction is the second preset direction, mark the wearing position of the target breast pump as the second position.

84. The wearing position recording method according to claim 81, characterized in that, An auxiliary marking object is shown on the wearing mark interface. The step of marking the wearing position of the target breast pump on the wearing mark interface in response to the first marking operation includes: In response to a trigger operation on the auxiliary marking object, control the change of the auxiliary marking object according to the operation information of the trigger operation; Based on the changed auxiliary marking object, mark the wearing position of the target breast pump on the wearing mark interface.

85. The wearing position recording method according to claim 81, characterized in that, The step of marking the wearing position of the target breast pump on the wearing mark interface in response to the first marking operation includes: In response to the first marking operation, obtain the number of taps corresponding to the first marking operation; Based on the number of taps, mark the wearing position of the target breast pump on the wearing mark interface.

86. The wearing position recording method according to claim 81, characterized in that, The step of turning on the marking prompt of the target breast pump in response to the first marking operation includes: In response to the first marking operation, determine the marking position corresponding to the first marking operation; Turn on the marking prompt at the corresponding marking position of the target breast pump.

87. The wearing position recording method according to claim 86, characterized in that, A display area is provided on the target breast pump for displaying the marking prompt.

88. The method for recording a wearing position according to claim 86, wherein The marking prompt is a prompt message indicating that the target breast pump is worn on the left breast or the right breast.

89. A method for recording the wearing position of a breast pump, characterized in that, Including: When the target breast pump is in a worn state, in response to a second marking operation on the target breast pump, turn on the marking indicator light of the target breast pump, and / or display a wearing mark in the wearing mark interface.

90. The method for recording a wearing position according to claim 89, characterized in that, Further including: When a position change operation on the target breast pump is detected, update the wearing mark in the wearing mark interface based on the changed indicator light.

91. A method for recording the wearing position of a breast pump, characterized in that, Including: Configure a detection element disposed on the bra and / or the breast pump to detect whether the target breast pump is worn on the left breast or the right breast; According to the wearing information of the target breast pump, mark the wearing position of the target breast pump in the wearing mark interface, and / or turn on the marking prompt of the target breast pump.

92. A terminal device, including a memory and a processor, characterized in that: The memory is used to store a computer program; The processor is used to execute the computer program; The computer program is used to cause the processor to execute the method described in claims 79-89.

93. A computer-readable storage medium stores a computer program, characterized in that: When the computer program is executed by the processor, the processor is caused to execute the wearing position recording method described in any one of claims 79 to 89.

Citation Information

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