A linkage purification method and device, article purification equipment and storage medium

By automatically detecting items to be purified and linking them with air purifiers, the problem of bacteria and viruses spreading in the home is solved, achieving comprehensive automatic sterilization, disinfection, and air purification, thus improving user convenience and the health of the living environment.

CN116474146BActive Publication Date: 2026-01-23GREE ELECTRIC APPLIANCE INC OF ZHUHAI
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Patent Information

Application Number
CN202310455078.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-24
Publication Date
2026-01-23
Estimated Expiration
2043-04-24

AI Technical Summary

Technical Problem

The lack of existing technologies for comprehensive sterilization and disinfection after people return to a designated space leads to the spread of bacteria and viruses within the home.

Method used

The device automatically detects the presence of items to be purified and activates the air purification system accordingly, enabling automatic detection and activation, simplifying user operation, and improving sterilization and disinfection efficiency.

Benefits of technology

It enables comprehensive automatic sterilization and disinfection after users return home, reducing user operations and improving the health and convenience of the living environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to a kind of linkage purification method, device, article purification equipment and storage medium, linkage purification method, comprising: determine whether the article purification equipment is put into the article to be purified in the purification space corresponding;If the article to be purified is put into the purification space, the article to be purified is purified;Determine target air purification equipment, send linkage purification instruction to the target air purification equipment, the linkage purification instruction is used to indicate that the air purification equipment carries out air purification.The present application embodiment can realize from automatic induction to automatic start, user reduces manual operation, greatly improve the convenience of use of user;And can realize the comprehensive automatic sterilization and disinfection of user people after returning home, simplify user operation, improve sterilization and disinfection efficiency, facilitate to provide more healthy living environment for user.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of smart home, and in particular to a linkage purification method and device, an article purification apparatus, and a storage medium. BACKGROUND

[0002] With the development of modern society, people go out more and more frequently, and the opportunity of contacting bacteria and viruses also increases a lot. In public places, since many people may be contacted, these people may carry various bacteria and viruses, so that people may carry bacteria and viruses after returning home, which brings great health threat to people's life.

[0003] After people return home, the bacteria and viruses carried by people spread gradually in the whole family space, therefore, comprehensive sterilization and disinfection are needed, however, there is no method that can perform comprehensive sterilization and disinfection after people return to a specified space from outside. SUMMARY

[0004] In order to solve the technical problem that there is no method that can perform comprehensive sterilization and disinfection after people return to a specified space from outside, the present application provides a linkage purification method and device, an article purification apparatus, and a storage medium.

[0005] In a first aspect, the present application provides a linkage purification method, comprising:

[0006] determining whether a to-be-purified article is placed in a purification space corresponding to an article purification apparatus;

[0007] if the to-be-purified article is placed in the purification space, purifying the to-be-purified article;

[0008] determining a target air purification apparatus, and sending a linkage purification instruction to the target air purification apparatus, the linkage purification instruction being used to instruct the air purification apparatus to perform air purification.

[0009] Optionally, determining whether a to-be-purified article is placed in a purification space corresponding to an article purification apparatus comprises:

[0010] acquiring a first weight collected by a weight collection device at a current time, the weight collection device being used to collect the weight of an article placed in the purification space;

[0011] acquiring a second weight collected by the weight collection device in a preset time period before the current time;

[0012] if the difference between the first weight and the second weight is greater than a preset threshold, determining that the to-be-purified article is placed in the purification space.

[0013] Optionally, determining whether an item to be purified is placed in the purification space corresponding to the item purification device further includes:

[0014] If the difference between the first weight and the second weight is less than or equal to a preset threshold, it is determined that no items to be purified are placed in the purification space.

[0015] Optionally, determining whether an item to be purified is placed in the purification space corresponding to the item purification device further includes:

[0016] If the difference between the first weight and the second weight is less than or equal to a preset threshold, a first prompt is issued, which prompts the user to input the item placement status.

[0017] If a confirmation message is received from the user, it is determined that the item to be purified is placed in the purification space.

[0018] If no confirmation message is received from the user, it is determined that no items to be purified are placed in the purification space.

[0019] Optionally, the target air purification device is defined, including:

[0020] Obtain the number of air purification devices corresponding to the item purification device;

[0021] If the number of air purification devices is at least two, obtain the actual distance between each air purification device and the item purification device;

[0022] The target air purification device is determined based on the actual distance between each of the air purification devices and the item purification device.

[0023] Optionally, determining the target air purification device based on the actual distance between each of the air purification devices and the item purification device includes:

[0024] The target air purification device is determined by identifying the air purification devices that are closest to the actual distance of the item purification device.

[0025] or,

[0026] The user's movement path is obtained, and the air purifier that is closest to the item purification device on the movement path is identified as the target air purifier.

[0027] Optionally, a linkage purification command is sent to the target air purification device, including:

[0028] The linkage purification intensity is determined based on the actual distance between the target air purification device and the item purification device, and the linkage purification intensity decreases as the actual distance increases.

[0029] Generate and send a linkage purification command that includes the linkage purification intensity.

[0030] Secondly, this application provides a linkage purification device, comprising:

[0031] The determination module is used to determine whether an item to be purified is placed in the purification space corresponding to the item purification equipment;

[0032] The item purification module is used to purify the item to be purified if it is placed in the purification space.

[0033] The linkage purification module is used to identify a target air purification device and send a linkage purification command to the target air purification device, wherein the linkage purification command is used to instruct the air purification device to perform air purification.

[0034] Optionally, the determining module includes:

[0035] The first acquisition unit is used to acquire the first weight collected by the weight acquisition device in the purification space at the current moment. The weight acquisition device is used to collect the weight of the items that have been placed in the purification space.

[0036] The second acquisition unit is used to acquire the second weight collected by the weight acquisition device in the clean space before a preset time period.

[0037] The first determining unit is used to determine that an item to be purified is placed in the purification space if the difference between the first weight and the second weight is greater than a preset threshold.

[0038] Optionally, the determining module further includes:

[0039] The second determining unit is used to determine that no items to be purified are placed in the purification space if the difference between the first weight and the second weight is less than or equal to a preset threshold.

[0040] Optionally, the determining module further includes:

[0041] The prompting unit is used to issue a first prompt if the difference between the first weight and the second weight is less than or equal to a preset threshold. The first prompt is used to prompt the user to input the item placement status.

[0042] The third determining unit is used to determine, if it receives confirmation information input by the user, to place the item to be purified in the purification space.

[0043] The fourth determining unit is used to determine that no items to be purified are placed in the purification space if no confirmation information input by the user is received.

[0044] Optionally, the linkage purification module includes:

[0045] The third acquisition unit is used to acquire the number of air purification devices corresponding to the item purification device;

[0046] The fourth acquisition unit is used to acquire the actual distance between each air purification device and the item purification device if the number of air purification devices is at least two.

[0047] The fifth determining unit is used to determine the target air purification device based on the actual distance between each of the air purification devices and the item purification device.

[0048] Optionally, the fifth determining unit is further configured to:

[0049] The target air purification device is determined by identifying the air purification devices that are closest to the actual distance of the item purification device.

[0050] or,

[0051] The user's movement path is obtained, and the air purifier that is closest to the item purification device on the movement path is identified as the target air purifier.

[0052] Optionally, the linkage purification module includes:

[0053] The sixth determining unit is used to determine the linkage purification intensity according to the actual distance between the target air purification device and the item purification device, wherein the linkage purification intensity decreases as the actual distance increases;

[0054] A generation and sending unit is used to generate and send a linkage purification command containing the linkage purification intensity.

[0055] Thirdly, this application provides an article purification device, including a processor, a communication interface, a memory, and a communication bus, wherein the processor, the communication interface, and the memory communicate with each other through the communication bus;

[0056] Memory, used to store computer programs;

[0057] When the processor executes the program stored in the memory, it implements the linkage purification method described in any of the first aspects.

[0058] Fourthly, this application provides a computer-readable storage medium storing a program for a linkage purification method, wherein when the program for the linkage purification method is executed by a processor, it implements the steps of any of the linkage purification methods described in the first aspect.

[0059] The technical solutions provided in this application have the following advantages compared with the prior art:

[0060] This application embodiment determines whether an item to be purified is placed in the purification space corresponding to the item purification device. After confirming that an item to be purified is placed in the purification space, the item purification device can be activated to purify the item placed in the purification space, and the air purification device can be activated in conjunction to purify the air. This achieves automatic sensing and automatic start, reducing manual operation for users and greatly improving user convenience. By purifying the item placed in the purification space through the item purification device and purifying the air through the air purification device, bacteria and viruses brought back by the user from the external environment can be purified. That is, while automatically eliminating bacteria and viruses carried on items brought back from the outside, bacteria and viruses transmitted through the air can also be automatically eliminated through the linkage purification command. This achieves comprehensive automatic sterilization and disinfection after the user returns home, simplifies user operation, improves sterilization and disinfection efficiency, and facilitates providing users with a healthier living environment. Attached Figure Description

[0061] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with the invention and, together with the description, serve to explain the principles of the invention.

[0062] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, for those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0063] Figure 1 A flowchart of a coordinated purification method provided in an embodiment of this application;

[0064] Figure 2 This application provides an architectural diagram of an article purification device and an air purification device according to embodiments of the present application.

[0065] Figure 3 A flowchart illustrating a collaborative purification method in practical application provided in this application embodiment;

[0066] Figure 4 A structural diagram of a linkage purification device provided in an embodiment of this application;

[0067] Figure 5 This is a structural diagram of an article purification device provided in an embodiment of this application. Detailed Implementation

[0068] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0069] Since people carry bacteria and viruses from their external contact with the outside world when they return home, and these bacteria and viruses can gradually spread throughout the home, comprehensive sterilization and disinfection are necessary. However, currently there is no method to perform comprehensive sterilization and disinfection after people return to a designated space from the outside. Therefore, this application provides a linked purification method, apparatus, item purification equipment, and storage medium.

[0070] The linkage purification method provided in this application embodiment can be applied to item purification equipment. Item purification equipment refers to equipment capable of disinfection and sterilization. The item purification equipment may have a purification space for disinfection and sterilization inside, or the item purification equipment may be installed within a purification space for disinfection and sterilization. For example, the item purification equipment may be an ultraviolet disinfection cabinet or an ultraviolet disinfection device, etc. Figure 1 As shown, this coordinated purification method may include the following steps:

[0071] Step S101: Determine whether the item to be purified is placed in the purification space corresponding to the item purification device;

[0072] In this embodiment of the application, the purification space corresponding to the item purification device may refer to the purification space inside the item purification device, or the purification space where the item purification device is installed, etc.

[0073] In this step, an object detection sensor can be used to detect whether an object to be purified is placed in the clean space. For example, the object sensor can be a weight sensor, a distance sensor (such as an infrared distance sensor or an ultrasonic distance sensor), a millimeter-wave radar sensor, a point cloud scanning device, etc.

[0074] In one embodiment of this application, a corresponding weight sensor can be installed on the item-carrying device in the clean space. The item-carrying device can be such as a clothes rod or an item-carrying platform. A weight sensor can be installed on the clothes rod to collect the weight of the items hanging on it, or a weight sensor can be installed under the item-carrying platform to collect the weight of the items placed on it. When the weight sensor detects an increase in the weight of the items on the item-carrying device, it can be determined that an item to be cleaned has been placed in the clean space.

[0075] In another embodiment of this application, a distance measuring sensor can be installed in the clean space. The distance measuring sensor is used to emit a distance measuring wave to the area on the item carrying device that carries the item. The distance between the obstacle and the distance measuring sensor is determined by the distance measuring wave. If the distance between the obstacle and the distance measuring sensor is less than the distance between the side wall of the clean space and the distance measuring sensor, it is determined that the item to be cleaned is placed in the clean space.

[0076] In another embodiment of this application, a millimeter-wave radar sensor or a point cloud scanning device can be installed in the clean space to scan the area on the item carrier that carries the item. If the scanning results indicate that a new item has been added, it can be determined that an item to be cleaned has been placed on the item carrier.

[0077] Step S102: If an item to be purified is placed in the purification space, the item to be purified is purified.

[0078] After confirming that the items to be purified have been placed in the purification space, the item purification equipment can be activated to purify the items, that is, to begin sterilization and disinfection. For example, the ultraviolet sterilization and disinfection function of the item purification equipment can be turned on to achieve timely and safe disinfection of clothing covered with viruses.

[0079] Step S103: Identify the target air purification device and send a linkage purification command to the target air purification device. The linkage purification command is used to instruct the air purification device to perform air purification.

[0080] This application utilizes a target air purification device to disinfect and sterilize viruses and bacteria that users spread into the air after returning home, eliminating health threats and enhancing people's sense of security.

[0081] Since there may be multiple air purifiers in a home, in order to save resources and avoid unnecessary air purifiers from starting up, you can identify the target air purifier that needs to be linked with the system and send a linkage purification command to the target air purifier. The linkage purification command can include control parameters for controlling the target air purifier, such as the linkage purification intensity.

[0082] This application embodiment determines whether an item to be purified is placed in the purification space corresponding to the item purification device. If an item to be purified is placed in the purification space, the item to be purified can be purified. Furthermore, a target air purification device can be identified, and a linkage purification command can be sent to the target air purification device to instruct the air purification device to perform air purification.

[0083] This application embodiment determines whether an item to be purified is placed in the purification space corresponding to the item purification device. After confirming that an item to be purified is placed in the purification space, the item purification device can be activated to purify the item placed in the purification space, and the air purification device can be activated in conjunction to purify the air. This achieves automatic sensing and automatic start, reducing manual operation for users and greatly improving user convenience. By purifying the item placed in the purification space through the item purification device and purifying the air through the air purification device, bacteria and viruses brought back by the user from the external environment can be purified. That is, while automatically eliminating bacteria and viruses carried on items brought back from the outside, bacteria and viruses transmitted through the air can also be automatically eliminated through the linkage purification command. This achieves comprehensive automatic sterilization and disinfection after the user returns home, simplifies user operation, improves sterilization and disinfection efficiency, and facilitates providing users with a healthier living environment.

[0084] In another embodiment of this application, step S101, determining whether an item to be purified is placed in the purification space corresponding to the item purification device, includes:

[0085] Step S201: Obtain the first weight collected by the weight collection device in the purification space at the current moment. The weight collection device is used to collect the weight of the items placed in the purification space.

[0086] A weight acquisition device can refer to a device that can measure weight, such as a weight sensor or a device containing a weight sensor. The purpose of acquiring the first weight is to calculate the difference between it and the second weight acquired a time period earlier, thereby determining whether to place an item to be purified in the clean space.

[0087] Step S202: Obtain the second weight collected by the weight collection device in the clean space before the preset time period.

[0088] In this embodiment of the application, the preset time period can be a relatively short period of time, such as 20 seconds, 10 seconds, or 5 seconds, etc.

[0089] Step S203: If the difference between the first weight and the second weight is greater than a preset threshold, determine that the item to be purified is placed in the purification space.

[0090] In this embodiment of the application, when it is determined that the first weight of the items in the purification space is greater than the second weight, that is, the current first weight is greater than the second weight before a preset time period, it indicates that the number of items in the purification space has increased. Therefore, it can automatically determine that items to be purified are placed in the purification space, thereby facilitating the initiation of air purification in the indoor environment and the purification of items in the purification space.

[0091] In another embodiment of this application, step S101, determining whether an item to be purified is placed in the purification space corresponding to the item purification device, further includes:

[0092] Step S204: If the difference between the first weight and the second weight is less than or equal to a preset threshold, it is determined that no items to be purified are placed in the purification space.

[0093] In this embodiment of the application, when the first weight of the items in the purification space is less than or equal to the second weight, that is, when the current first weight is less than or equal to the second weight before a preset time period, it indicates that the number of items in the purification space has decreased or remained unchanged. Therefore, it can be automatically determined that no items to be purified have been placed in the purification space, and thus it is not necessary to start the air purification of the indoor environment and the purification of the items in the purification space.

[0094] Based on the aforementioned embodiments, since in practical applications a user may remove a heavier item and then place a lighter item, resulting in a decrease in the overall weight within the purification space, the aforementioned embodiments may misjudge that no item to be purified has been placed, when in fact an item to be purified has been placed. To increase the accuracy of determining whether an item to be purified has been placed, in another embodiment of this application, step S101, which determines whether an item to be purified has been placed within the purification space corresponding to the item purification device, further includes:

[0095] Step S301: If the difference between the first weight and the second weight is less than or equal to a preset threshold, a first prompt is issued. The first prompt is used to prompt the user to input the item placement status.

[0096] In this embodiment of the application, the first prompt can be a voice prompt or a text prompt. For example, the item purification device can issue a voice prompt, or the item purification device can issue a text prompt to the user terminal used by the user, etc., to prompt the user to input the item placement status through human-computer interaction.

[0097] Step S302: If a confirmation message is received from the user, it is determined that the item to be purified is placed in the purification space.

[0098] Users can input relevant information, such as confirmation or denial, via voice or text on their user terminal within a specified time period. Confirmation information indicates that the user has placed the item to be purified into the purification space, while denial information indicates that the user has not placed the item to be purified into the purification space.

[0099] Step S303: If no confirmation information is received from the user, it is determined that no items to be purified are placed in the purification space.

[0100] If a user does not receive a confirmation message within a specified time period, it can be determined that the user did not place any items to be purified into the purification space.

[0101] The embodiments of this application can improve the accuracy of determining whether to place an item to be purified, based on the foregoing embodiments.

[0102] In another embodiment of this application, step S101, determining the target air purification device, includes:

[0103] Step S401: Obtain the number of air purification devices corresponding to the item purification device;

[0104] Since users may have multiple air purification devices in their homes, such as one air purification device in each room, it may be a waste of resources to start all the air purification devices at once. Therefore, you can choose to start the air purification function of several devices as needed.

[0105] Step S402: If the number of air purification devices is at least two, obtain the actual distance between each air purification device and the item purification device;

[0106] The actual distance refers to the walking distance from the item purification device to the air purification device, not the straight-line distance.

[0107] Step S403: Determine the target air purification device based on the actual distance between each of the air purification devices and the item purification device.

[0108] Since users may place items to be purified after returning home and then walk to other rooms, viruses or bacteria may spread during this process. The closer the items are to the purification device, the more bacteria and viruses may be scattered. Therefore, the target air purification device can be determined from multiple air purification devices based on the actual distance.

[0109] In one embodiment of this application, step S403, which determines the target air purification device based on the actual distance between each of the air purification devices and the item purification device, includes:

[0110] The target air purification devices are identified by selecting the air purification devices that are closest to the actual purification device. By selecting the target air purification devices that are closest to the actual purification device, areas with high concentrations of viruses and bacteria can be purified, saving resources.

[0111] or,

[0112] The user's movement path is obtained, and the air purifier that is closest to the item purification device on the movement path is identified as the target air purifier.

[0113] In practical applications, there may be rooms that users have not visited, but which are actually close to the user. Rooms that users have not visited will not cause the spread of viruses and bacteria. If the air purification equipment in that room is activated, it may result in a waste of resources. Therefore, it is possible to further obtain the user's movement path and select the air purification equipment that is closest to the user on the movement path as the target air purification equipment, so as to achieve more precise linkage control of air purifiers.

[0114] In another embodiment of this application, sending a linkage purification command to the target air purification device includes:

[0115] Step S501: Determine the linkage purification intensity according to the actual distance between the target air purification device and the item purification device. The linkage purification intensity decreases as the actual distance increases.

[0116] Since the concentration of viruses and bacteria may decrease as users move, the linkage purification intensity of the target air purifier can be greater the closer it is to the actual object purification device, that is, the greater the purification power, while the linkage purification intensity of the target air purifier can be smaller the farther it is from the actual object purification device, that is, the smaller the purification power.

[0117] Step S502: Generate a linkage purification command containing the linkage purification intensity and send it.

[0118] This application embodiment saves energy and avoids resource waste by setting the actual distance and the linkage purification intensity to a negative correlation.

[0119] For ease of understanding, this application also provides an embodiment in practical application, as follows:

[0120] Taking a UV clothing sterilizer as an example of a purification device, such as... Figure 2 As shown, this application also provides an architecture diagram of an item purification device and an air purification device. When the item purification device detects new clothing, it will give a voice prompt to "close the cabinet door". At the same time, the transmitting circuit in the item purification device sends a signal to the air purifier. After the cabinet door is closed, the control circuit in the item purification device controls the ultraviolet clothing sterilizer to turn on the ultraviolet lamp to start sterilization. After the air purifier receives the signal, the control circuit in the item purification device controls the air purifier motor to start, realizing the transition from automatic sensing to automatic start.

[0121] The ultraviolet clothing sterilizer includes a detection circuit, a control circuit 1, a signal transmission circuit, and a voice prompt circuit; the air purifier includes a signal receiving circuit and a control circuit 2.

[0122] The sensor used in the detection circuit described in this application is a weight sensor, which is attached to the clothes drying rack of the ultraviolet clothing sterilizer.

[0123] like Figure 3 As shown, the detection method described in this application is as follows: The initial state weight is s1. When clothing is hung in, the gravity sensor bears a different weight than in the initial state. The detection is performed every 20 seconds. After 20 seconds, the second state weight is s2. s2 is sent to the system and compared with s1 to calculate the value of s2-s1. If it is positive, it indicates that clothing has been hung in; if it is 0, it indicates that no new clothing has been hung in; if it is negative, it indicates that clothing has been removed.

[0124] Furthermore, if the result is negative, a voice prompt can be made asking if any new clothing items have been added; the user simply needs to answer yes or no. If "yes" is received, the system will be processed as "clothing items have been added"; if "no" is received, the system will be processed as "no new clothing items have been added". If the user does not respond within 20 seconds, the system will select the "default state," which the user can set to "disinfect" or "no disinfection".

[0125] The control circuit 1 described in this application automatically starts the ultraviolet clothing sterilizer when it detects that clothes are hung in the ultraviolet clothing sterilizer and waits for the user to close the cabinet door. It turns on the ultraviolet lamp and sterilizes the clothes in the cabinet in a closed manner. After working continuously for 30 minutes, the sterilization is completed and the clothing sterilizer enters the standby state.

[0126] The voice prompt module described in this application provides prompts to the user. When clothing is detected being hung in, a signal is transmitted to the voice prompt module to provide a voice prompt to the user: "Close the cabinet door." When the clothing has been disinfected, a voice prompt to the user: "Disinfection complete."

[0127] The signal transmitting circuit described in this application transmits a signal synchronously to the air purifier when clothing is detected hanging inside.

[0128] The signal receiving circuit described in this application is used in an air purifier to receive signals emitted by the transmitting circuit in an ultraviolet clothing sterilizer;

[0129] The control circuit 2 described in this application is a control circuit in an air purifier that automatically controls the air purifier to enter the maximum purification mode after the signal receiving circuit receives a signal. It operates continuously at the maximum fan speed for 30 minutes and then enters the automatic mode.

[0130] Generally, after a user returns home, they hang their clothes in the UV clothing sterilizer. When the system detects new clothing, it will prompt the user to "close the cabinet door." Simultaneously, the transmitting circuit sends a signal to the air purifier. After the cabinet door is closed, control circuit 1 controls the UV clothing sterilizer to turn on the UV lamps and begin sterilization. Once the air purifier receives the signal, control circuit 2 controls the air purifier motor to start operating, thus transitioning from automatic sensing to automatic start-up. When no new clothing is detected, the voice prompt circuit does not activate, the transmitting circuit does not send a signal, and control circuit 1 controls the UV lamps to turn off. When clothing is detected being removed, the voice prompt circuit does not activate, the transmitting circuit does not send a signal, and control circuit 1 controls the UV lamps to turn off.

[0131] Generally, when a garment is detected hanging and its weight is s2, the garment is indicated as disinfected, and s1 is set to s2 (the value of s2 is assigned to s1). After 20 seconds, the value is re-detected and assigned to s2. When no new garment is detected and its weight is s2, s1 is set to s2 (the value of s2 is assigned to s1), and the value is re-detected and assigned to s2 after 20 seconds. When a garment is detected being removed and its weight is s2, s1 is set to s2 (the value of s2 is assigned to s1), and the value is re-detected and assigned to s2 after 20 seconds.

[0132] The weights obtained from subsequent measurements can be denoted as s3, s4, etc. The weight obtained from the most recent measurement can be represented as s(n+1), and the weight obtained from the previous measurement can be represented as s(n). Furthermore, following the judgment logic of s2-s1 above, we can determine whether s(n+1)-s(n) is greater than, equal to, or less than 0 to determine whether there are clothes hanging in, no new clothes added, or clothes removed.

[0133] In another embodiment of this application, a linkage purification device is also provided, which is applied to an item purification device, such as... Figure 4 As shown, it includes:

[0134] The determining module 11 is used to determine whether an item to be purified is placed in the purification space corresponding to the item purification device;

[0135] The item purification module 12 is used to purify the item to be purified if an item to be purified is placed in the purification space.

[0136] The linkage purification module 13 is used to identify a target air purification device and send a linkage purification command to the target air purification device. The linkage purification command is used to instruct the air purification device to perform air purification.

[0137] Optionally, the determining module includes:

[0138] The first acquisition unit is used to acquire the first weight collected by the weight acquisition device in the purification space at the current moment. The weight acquisition device is used to collect the weight of the items that have been placed in the purification space.

[0139] The second acquisition unit is used to acquire the second weight collected by the weight acquisition device in the clean space before a preset time period.

[0140] The first determining unit is used to determine that an item to be purified is placed in the purification space if the difference between the first weight and the second weight is greater than a preset threshold.

[0141] Optionally, the determining module further includes:

[0142] The second determining unit is used to determine that no items to be purified are placed in the purification space if the difference between the first weight and the second weight is less than or equal to a preset threshold.

[0143] Optionally, the determining module further includes:

[0144] The prompting unit is used to issue a first prompt if the difference between the first weight and the second weight is less than or equal to a preset threshold. The first prompt is used to prompt the user to input the item placement status.

[0145] The third determining unit is used to determine, if it receives confirmation information input by the user, to place the item to be purified in the purification space.

[0146] The fourth determining unit is used to determine that no items to be purified are placed in the purification space if no confirmation information input by the user is received.

[0147] Optionally, the linkage purification module includes:

[0148] The third acquisition unit is used to acquire the number of air purification devices corresponding to the item purification device;

[0149] The fourth acquisition unit is used to acquire the actual distance between each air purification device and the item purification device if the number of air purification devices is at least two.

[0150] The fifth determining unit is used to determine the target air purification device based on the actual distance between each of the air purification devices and the item purification device.

[0151] Optionally, the fifth determining unit is further configured to:

[0152] The target air purification device is determined by identifying the air purification devices that are closest to the actual distance of the item purification device.

[0153] or,

[0154] The user's movement path is obtained, and the air purifier that is closest to the item purification device on the movement path is identified as the target air purifier.

[0155] Optionally, the linkage purification module includes:

[0156] The sixth determining unit is used to determine the linkage purification intensity according to the actual distance between the target air purification device and the item purification device, wherein the linkage purification intensity decreases as the actual distance increases;

[0157] A generation and sending unit is used to generate and send a linkage purification command containing the linkage purification intensity.

[0158] In another embodiment of this application, an item purification device is also provided, including a processor, a communication interface, a memory, and a communication bus, wherein the processor, the communication interface, and the memory communicate with each other through the communication bus.

[0159] Memory, used to store computer programs;

[0160] When the processor executes the program stored in the memory, it implements the linkage purification method described in any of the foregoing method embodiments.

[0161] The item purification device provided in this embodiment of the invention uses a processor to execute a program stored in a memory to determine whether an item to be purified is placed in the purification space corresponding to the item purification device. After confirming that an item to be purified is placed in the purification space, the device can be activated to purify the item and simultaneously activate an air purifier to purify the air. This achieves automatic sensing and automatic activation, reducing manual operation for the user and greatly improving user convenience. By purifying the item in the purification space and purifying the air, the device can also remove bacteria and viruses brought back from the external environment. In other words, while automatically eliminating bacteria and viruses carried on items brought back from the outside, the device can also automatically eliminate airborne bacteria and viruses through the linkage purification command. This achieves comprehensive automatic sterilization and disinfection after the user returns home, simplifying user operation, improving sterilization and disinfection efficiency, and providing a healthier living environment for the user.

[0162] The communication bus 1140 mentioned in the aforementioned purification equipment can be a Peripheral Component Interconnect (PCI) bus or an Extended Industry Standard Architecture (EISA) bus, etc. This communication bus 1140 can be divided into an address bus, a data bus, a control bus, etc. For ease of representation, Figure 5 The bus is represented by a single thick line, but this does not mean that there is only one bus or one type of bus.

[0163] Communication interface 1120 is used for communication between the above-mentioned purification equipment and other equipment.

[0164] The memory 1130 may include random access memory (RAM) or non-volatile memory, such as at least one disk storage device. Optionally, the memory may also be at least one storage device located remotely from the aforementioned processor.

[0165] The processor 1110 mentioned above can be a general-purpose processor, including a central processing unit (CPU), a network processor (NP), etc.; it can also be a digital signal processor (DSP), an application-specific integrated circuit (ASIC), a field-programmable gate array (FPGA), or other programmable logic devices, discrete gate or transistor logic devices, or discrete hardware components.

[0166] In another embodiment of this application, a computer-readable storage medium is provided, on which a program for a linkage purification method is stored, wherein when the program for the linkage purification method is executed by a processor, the steps of the linkage purification method described in any of the foregoing method embodiments are implemented.

[0167] It should be noted that, in this document, relational terms such as "first" and "second" are used merely to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.

[0168] The above description is merely a specific embodiment of the present invention, enabling those skilled in the art to understand or implement the invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features claimed herein.

Claims

1. A coordinated purification method, characterized in that, Applications in item purification equipment, including: Determine whether the items to be purified are placed in the purification space corresponding to the item purification equipment; If an item to be purified is placed in the purified space, the item to be purified shall be purified. A target air purifier is identified, and a linkage purification command is sent to the target air purifier, the linkage purification command being used to instruct the air purifier to perform air purification. Identify the target air purification equipment, including: Obtain the number of air purification devices corresponding to the item purification device; If the number of air purification devices is at least two, obtain the actual distance between each air purification device and the item purification device; The target air purifier is determined based on the actual distance between each of the air purifiers and the item purifier. The target air purifier is used to purify the area that the user moves through after placing the item to be purified.

2. The linkage purification method according to claim 1, characterized in that, Determining whether an item to be purified is placed in the purification space corresponding to the item purification device includes: The weight is collected at the current moment by a weight collection device in the purification space. The weight collection device is used to collect the weight of items that have been placed in the purification space. Obtain the second weight collected by the weight acquisition device in the clean space before a preset time period; If the difference between the first weight and the second weight is greater than a preset threshold, it is determined that the item to be purified is placed in the purification space.

3. The linkage purification method according to claim 2, characterized in that, Determining whether an item to be purified is placed in the purification space corresponding to the item purification device also includes: If the difference between the first weight and the second weight is less than or equal to a preset threshold, it is determined that no items to be purified are placed in the purification space.

4. The linkage purification method according to claim 2, characterized in that, Determining whether an item to be purified is placed in the purification space corresponding to the item purification device also includes: If the difference between the first weight and the second weight is less than or equal to a preset threshold, a first prompt is issued, which prompts the user to input the item placement status. If a confirmation message is received from the user, it is confirmed that the item to be purified is placed in the purification space; If no confirmation message is received from the user, it is determined that no items to be purified are placed in the purification space.

5. The linkage purification method according to claim 1, characterized in that, Determining the target air purification device based on the actual distance between each of the air purification devices and the item purification device includes: The target air purification device is determined by identifying the air purification devices that are closest to the actual distance of the item purification device. or, The user's movement path is obtained, and the air purifier that is closest to the item purification device on the movement path is identified as the target air purifier.

6. The linkage purification method according to claim 1, characterized in that, Sending a linkage purification command to the target air purification device, including: The linkage purification intensity is determined based on the actual distance between the target air purification device and the item purification device, and the linkage purification intensity decreases as the actual distance increases. Generate and send a linkage purification command that includes the linkage purification intensity.

7. A linkage purification device, characterized in that, Applications in item purification equipment, including: The determination module is used to determine whether an item to be purified is placed in the purification space corresponding to the item purification equipment; The item purification module is used to purify the item to be purified if it is placed in the purification space. The linkage purification module is used to identify a target air purification device and send a linkage purification command to the target air purification device, the linkage purification command being used to instruct the air purification device to perform air purification; identifying the target air purification device includes: obtaining the number of air purification devices corresponding to the item purification device; if the number of air purification devices is at least two, obtaining the actual distance between each air purification device and the item purification device; determining the target air purification device based on the actual distance between each air purification device and the item purification device, the target air purification device being used to purify the area that the user moves through after placing the item to be purified.

8. A purification device for items, characterized in that, It includes a processor, a communication interface, a memory, and a communication bus, wherein the processor, the communication interface, and the memory communicate with each other through the communication bus; Memory, used to store computer programs; The processor, when executing a program stored in the memory, implements the linkage purification method according to any one of claims 1 to 6.

9. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores a program for a linkage purification method, which, when executed by a processor, implements the steps of the linkage purification method according to any one of claims 1-6.

Citation Information

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