Wearing part identification method and device, smart watch and smart ring

By collecting fingerprint information and detecting relative position through a smart ring, the smartwatch can identify the wearing position, solving the problem that smartwatches cannot identify the wearing position, and enabling personalized function adjustments and performance optimization.

CN119547966BActive Publication Date: 2026-04-10VIVO MOBILE COMM CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
VIVO MOBILE COMM CO LTD
Filing Date
2024-11-28
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing smartwatches cannot recognize the part of the user's wrist, resulting in differences in communication performance and sound effects, and making it impossible to achieve personalized function adjustments.

Method used

The smart ring collects fingerprint information from the wearing area and combines it with the relative position information of the smartwatch and the ring over a certain period of time to determine whether the wearing area has changed, generating information on the wearing area of ​​the same or opposite limb, so as to adjust the working mode of the smartwatch.

Benefits of technology

This technology enables smartwatches to automatically recognize the wearing position and adjust their functions accordingly, improving user experience and performance consistency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a wearing part identification method and device, a smart watch and a smart ring, and belongs to the field of smart wearable devices. The wearing part identification method comprises the following steps: receiving first wearing part information, wherein the first wearing part information is obtained by a smart ring according to first fingerprint information collected from a wearing part; acquiring relative position information of the smart ring and the smart watch within a first time length; in the case that a change range of the relative position information is less than or equal to a preset range, generating second wearing part information of the smart watch, wherein the second wearing part information is a same-side limb of the first wearing part information; and in the case that the change range of the relative position information is greater than the preset range, generating second wearing part information of the smart watch, wherein the second wearing part information is a different-side limb of the first wearing part information.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the field of intelligent wearable devices, and particularly relates to a wearing part identification method and device, an intelligent watch, an intelligent ring, a readable storage medium, and a computer program product. BACKGROUND

[0002] With the emphasis on the concept of sports health, the use of intelligent wearable devices such as intelligent watches and intelligent rings is becoming more and more common.

[0003] A user can wear an intelligent watch or an intelligent ring on a left or right limb as needed. The intelligent watch worn on the left or right limb has differences in performance and use effect. For example, when the intelligent watch is worn on the left or right limb, the limb will block part of the antenna, thereby causing the communication performance of the same intelligent watch worn on the left or right limb to be different. For another example, when the intelligent watch is worn on the left or right limb, the sound channel of the loudspeaker is different, thereby causing the sound effect of the same intelligent watch worn on the left or right limb to be different. Therefore, identifying the part where the user wears the intelligent watch and improving the product design for the part where the intelligent watch is worn will effectively improve the effect of the intelligent watch in realizing different functions. In the related art, the intelligent watch cannot identify the wearing part of the user. SUMMARY

[0004] The purpose of the embodiments of the present application is to provide a wearing part identification method and device, an intelligent watch, and an intelligent ring, which can solve the problem that the intelligent watch cannot identify the wearing part of the user.

[0005] In a first aspect, the embodiments of the present application provide a wearing part identification method applied to an intelligent watch, and the method comprises the following steps.

[0006] Receiving first wearing part information, the first wearing part information being obtained by an intelligent ring according to first fingerprint information collected from a wearing part;

[0007] Obtaining relative position information of the intelligent ring and the intelligent watch within a first time length;

[0008] In a case where a change amplitude of the relative position information is less than or equal to a preset range, generating second wearing part information of the intelligent watch, the second wearing part information being a same-side limb of the first wearing part information;

[0009] In a case where the change amplitude of the relative position information is greater than the preset range, generating second wearing part information of the intelligent watch, the second wearing part information being a different-side limb of the first wearing part information.

[0010] In a second aspect, the embodiments of the present application provide a wearing part identification method applied to an intelligent ring, and the method comprises the following steps.

[0011] collect first fingerprint information of a wearing part, and determine first wearing part information corresponding to the first fingerprint information according to a first mapping relationship between the fingerprint information and the wearing part;

[0012] obtain relative position information of the smart ring and the smart watch within a first time length;

[0013] send the first wearing part information to the smart watch, so that the smart watch generates second wearing part information of the smart watch according to the first wearing part information and the relative position information of the smart ring and the smart watch within the first time length,

[0014] wherein, in a case where a change range of the relative position information is less than or equal to a preset range, the smart watch generates the second wearing part information of the smart watch, and the second wearing part information is a same-side limb as the first wearing part information;

[0015] in a case where the change range of the relative position information is greater than the preset range, the smart watch generates the second wearing part information of the smart watch, and the second wearing part information is a different-side limb as the first wearing part information.

[0016] In a third aspect, an embodiment of the present application provides a wearing part identification device, comprising:

[0017] a first receiving module configured to receive first wearing part information, the first wearing part information being obtained by a smart ring according to first fingerprint information of a wearing part;

[0018] a first obtaining module configured to obtain relative position information of the smart ring and the smart watch within a first time length;

[0019] a first wearing part generating module configured to, in a case where a change range of the relative position information is less than or equal to a preset range, generate second wearing part information of the smart watch, the second wearing part information being a same-side limb as the first wearing part information;

[0020] the first wearing part generating module is further configured to, in a case where the change range of the relative position information is greater than the preset range, generate the second wearing part information of the smart watch, the second wearing part information being a different-side limb as the first wearing part information.

[0021] In a fourth aspect, an embodiment of the present application provides a wearing part identification device, comprising:

[0022] a second wearing part generating module configured to collect first fingerprint information of a wearing part, and determine first wearing part information corresponding to the first fingerprint information according to a first mapping relationship between the fingerprint information and the wearing part;

[0023] The second acquisition module is configured to acquire relative position information of the smart ring and the smart watch within a first time length.

[0024] The second sending module is configured to send the first wearing position information to the smart watch, so that the smart watch generates second wearing position information of the smart watch according to the first wearing position information and the relative position information of the smart ring and the smart watch within the first time length.

[0025] In a case where the change range of the relative position information is less than or equal to a preset range, the smart watch generates the second wearing position information of the smart watch, and the second wearing position information is a same-side limb as the first wearing position information.

[0026] In a case where the change range of the relative position information is greater than the preset range, the smart watch generates the second wearing position information of the smart watch, and the second wearing position information is a different-side limb as the first wearing position information.

[0027] In a fifth aspect, an embodiment of the present application provides a smart watch, which comprises a first processor and a first memory. The first memory stores programs or instructions executable on the first processor. When the programs or instructions are executed by the first processor, the steps of the method in the first aspect are implemented.

[0028] In a sixth aspect, an embodiment of the present application provides a smart ring, which comprises a second processor and a second memory. The second memory stores programs or instructions executable on the second processor. When the programs or instructions are executed by the second processor, the steps of the method in the second aspect are implemented.

[0029] In a seventh aspect, an embodiment of the present application provides a readable storage medium. The readable storage medium stores programs or instructions. When the programs or instructions are executed by a processor, the steps of the method in the first aspect or the second aspect are implemented.

[0030] In an eighth aspect, an embodiment of the present application provides a chip. The chip comprises a processor and a communication interface. The communication interface and the processor are coupled. The processor is configured to run programs or instructions, and implement the method in the first aspect or the second aspect.

[0031] In a ninth aspect, an embodiment of the present application provides a computer program product. The program product is stored in a storage medium. The program product is executed by at least one processor to implement the method in the first aspect or the second aspect.

[0032] In the embodiments of the present application, the second wearing position information of the smart watch is generated in the case that the change range of the relative position information is less than or equal to a preset range, and the second wearing position information is the same side limb as the first wearing position information; the second wearing position information of the smart watch is generated in the case that the change range of the relative position information is greater than the preset range, and the second wearing position information is the opposite side limb of the first wearing position information, so that the ability of the smart ring to collect the first fingerprint information is used to determine the first wearing position of the user wearing the smart ring, and the change range of the relative position information is used to determine the second wearing position information of the user wearing the smart watch, thereby realizing the identification of the wearing position of the user by the smart watch. BRIEF DESCRIPTION OF DRAWINGS

[0033] Figure 1 is one of the flow diagrams of the wearing position identification method provided in an embodiment of the present application;

[0034] Figure 2 is another flow diagram of the wearing position identification method provided in an embodiment of the present application;

[0035] Figure 3 is one of the structural diagrams of the wearing position identification device provided in an embodiment of the present application;

[0036] Figure 4 is another structural diagram of the wearing position identification device provided in an embodiment of the present application;

[0037] Figure 5 is a structural diagram of the smart watch provided in an embodiment of the present application;

[0038] Figure 6 is a hardware structural diagram of the smart watch provided in an embodiment of the present application;

[0039] Figure 7 is a structural diagram of the smart watch provided in an embodiment of the present application. DETAILED DESCRIPTION

[0040] The technical solutions in the embodiments of the present application will be clearly described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are some of the embodiments of the present application, but not all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art belong to the scope of protection of the present application.

[0041] The terms "first", "second", etc. in the specification and claims of the present application are used to distinguish similar objects, and are not used to describe a specific order or sequence. It should be understood that the data used in this way can be interchanged under appropriate circumstances, so that the embodiments of the present application can be implemented in an order other than those illustrated or described herein, and the objects distinguished by "first", "second", etc. are generally of a kind and do not limit the number of objects, for example, the first object can be one or more. In addition, "and / or" in the specification and claims indicates at least one of the connected objects, and the character " / ", generally indicates that the objects before and after are in a "or" relationship.

[0042] The wearing position recognition method, device, smart watch, smart ring, readable storage medium and computer program product provided by the embodiments of the present application will be described in detail below in conjunction with the drawings, specific embodiments and application scenarios.

[0043] Please refer to Figure 1 The present application provides a wearing position recognition method, which is applied to a smart watch, and the method comprises:

[0044] S110, receiving first wearing position information, the first wearing position information being obtained by a smart ring according to first fingerprint information collected from a wearing position.

[0045] The smart ring is a wearable device integrating multiple sensors. The smart ring can be worn on the user's finger. Compared with other wearable devices, the smart ring is small and light, has various appearances and materials, and provides users with rich choices. The smart ring can integrate mobile sensors, biological information collectors, etc. The mobile sensors can be used to detect motion data such as moving steps, distance, calorie consumption, etc., to help users track and manage their own motion activities. The biological information collector can include a heart rate collector, a blood oxygen saturation collector, a fingerprint sensor, etc., to ensure that the user can monitor and manage his / her physical condition.

[0046] When the smart ring is worn on the user's finger, the smart ring can collect first fingerprint information of the wearing position through the fingerprint sensor. Since the fingerprint of each user and the fingerprint of different fingers of the same user are different, the first fingerprint information can be used to determine on which finger of which user the smart ring is worn, and on which side of the body the smart ring is worn.

[0047] The smart ring generates wearing position information according to the first fingerprint information, and the wearing position information can include a left side of the body and a right side of the body. The first wearing position information can be any one of the left side of the body and the right side of the body.

[0048] The smart watch is a multifunctional watch with an embedded intelligent system and a network connection. The smart watch not only has the function of displaying time like a traditional watch, but also can realize more intelligent applications by connecting with a mobile phone and other wearable devices. The smart watch can be embedded with various sensors to collect health data such as heart rate, blood pressure, and blood oxygen saturation of the user, helping the user understand their physical condition and prevent diseases. It can also record exercise data, including exercise time, distance, and calorie consumption, to provide personalized exercise recommendations for the user. It can also synchronize with a mobile phone to receive and display message reminders such as phone calls, text messages, and social software messages, and realize payment, audio and video playback, etc. Compared with a smart ring, a smart watch can have a larger size, allowing more sensors to be installed to realize more functions.

[0049] The smart watch can be worn on the wrist of the left or right limb of the user. The smart watch can also establish a communication connection with a smart ring, a mobile phone, a base station, and the like. The first wearing site information generated by the smart ring can be directly sent to the smart watch, so that the smart watch receives the first wearing site information. It can also be sent to a third electronic device such as a mobile phone or a server, and forwarded to the smart watch through the third electronic device, so that the smart watch receives the first wearing site information.

[0050] In S120, relative position information of the smart ring and the smart watch in a first time length is obtained.

[0051] The smart watch can establish a communication connection with the smart ring directly through a Bluetooth module, an UltraWide Band (UBW) module, and the like. The smart watch can detect the strength, speed, and the like of the signals transmitted between the smart ring and the smart watch, to analyze and obtain the relative position information of the smart ring and the smart watch. The smart ring can also detect the strength, speed, and the like of the signals transmitted between the smart ring and the smart watch, to analyze and obtain the relative position information of the smart ring and the smart watch, and send the generated relative position information to the smart watch.

[0052] The smart watch and the smart ring can also establish a communication connection with a third electronic device through a Bluetooth module, an UltraWide Band (UBW) module, and the like, respectively. The third electronic device detects the relative position of the smart ring and the third electronic device, and the relative position of the smart watch and the third electronic device, and then generates the relative position information of the smart ring and the smart watch according to the relative position of the smart ring and the third electronic device, and the relative position of the smart watch and the third electronic device.

[0053] In S130, in the case where the change amplitude of the relative position information is less than or equal to a preset range, the second wearing site information of the smart watch is generated, and the second wearing site information is the same side limb as the first wearing site information.

[0054] S140, in the case that the change range of the relative position information is greater than a preset range, generating second wearing position information of the smart watch, the second wearing position information being a limb on the opposite side of the first wearing position information.

[0055] The first wearing information and the second wearing information are on the same side, indicating that the user wears the smart watch and the smart ring on the same side, for example, the user wears the smart watch and the smart ring on the left side.

[0056] The first wearing information and the second wearing information are on the opposite sides, indicating that the user wears the smart watch and the smart ring on different sides, for example, the user wears the smart watch and the smart ring on the left side and the right side respectively.

[0057] When the user wears the smart watch and the smart ring on the same side, and the side makes a moving action, the smart watch and the smart ring move together with the side, so that the relative position information of the smart watch and the smart ring does not change or changes slightly. When the user wears the smart watch and the smart ring on different sides, the two sides do not always keep the same moving action, and the smart watch and the smart ring move with different sides respectively, so that the relative position information of the smart watch and the smart ring changes greatly.

[0058] The relative position information in the first time period can be a change value, and the change range of the relative position information can be the difference between the maximum value and the minimum value of the relative position information in the first time period. The preset range is a preset value, and the change range of the relative position information is less than or equal to the preset range, indicating that the relative position information of the smart watch and the smart ring does not change or changes slightly, and the smart watch and the smart ring are worn on the same side, that is, the second wearing position information on the same side as the first wearing position information can be generated. The change range of the relative position information is greater than the preset range, indicating that the relative position information of the smart watch and the smart ring changes greatly, and the smart watch and the smart ring are worn on different sides, that is, the second wearing position information on the opposite side of the first wearing position information can be generated. Optionally, the preset range is 5cm-15cm. The first time period can be 1h, 3h, 6h, 12h, 24h, etc.

[0059] The smart watch can collect the second wearing position information and adjust the working mode, so that the smart watch is more suitable for being worn on the position where the second wearing position information is located. The staff or the user can also adjust the hardware design of the smart watch according to the second wearing position information, so that the smart watch is more suitable for being worn by the user.

[0060] In the scheme, the second wearing position information of the smart watch is generated when the change range of the relative position information is less than or equal to a preset range, and the second wearing position information is a same-side limb of the first wearing position information; the second wearing position information of the smart watch is generated when the change range of the relative position information is greater than the preset range, and the second wearing position information is a different-side limb of the first wearing position information, so that the ability of the smart ring to collect the first fingerprint information is used to determine the first wearing position of the user wearing the smart ring, and the change range of the relative position information is used to determine the second wearing position information of the user wearing the smart watch, thereby realizing the identification of the wearing position of the user wearing the smart watch.

[0061] In a possible implementation, the wearing position information includes a left finger, a left wrist, a right finger and a right wrist, the first wearing position information is any one of the left finger or the right finger, and the second wearing position information is any one of the left wrist or the right wrist.

[0062] When the first wearing position information is the left finger and the second wearing position information is the left wrist, the first wearing position information and the second wearing position information are same-side limbs. When the first wearing position information is the right finger and the second wearing position information is the right wrist, the first wearing position information and the second wearing position information are same-side limbs. When the first wearing position information is the left finger and the second wearing position information is the right wrist, the first wearing position information and the second wearing position information are different-side limbs. When the first wearing position information is the right finger and the second wearing position information is the left wrist, the first wearing position information and the second wearing position information are different-side limbs.

[0063] In a possible implementation, S120 includes:

[0064] S310, sending first ranging information to the smart ring in a first time length;

[0065] S320, receiving first feedback information fed back by the smart ring according to the first ranging information;

[0066] S330, generating relative position information of the smart ring and the smart watch according to a sending time of the first ranging information and a receiving time of the first feedback information, or according to a signal strength of the first ranging information and a signal strength of the first feedback information.

[0067] The smart watch can send first ranging information to the smart ring through an infrared sensor, an ultrasonic distance meter, etc., the first ranging information is reflected at the smart ring to generate first feedback information, or the smart ring receives the first ranging information and sends first feedback information to the smart watch through an infrared sensor, an ultrasonic distance meter, etc. The smart watch generates relative position information of the smart ring and the smart watch according to a sending time of the first ranging information and a receiving time of the first feedback information, or according to a signal strength of the first ranging information and a signal strength of the first feedback information.

[0068] In the first time length, the smart watch can send first ranging information to the smart ring at a preset frequency to obtain relative position information of multiple values, so as to realize detection of relative position information of the smart ring and the smart watch in the first time length, and avoid a second wearing position information error caused by the fact that the relative position information of the smart ring and the smart watch worn on different limbs does not change when the limbs on both sides of the user remain stationary.

[0069] In a possible implementation, S130 or S140 comprises the following after S130 or S140:

[0070] Switching to a working mode corresponding to the second wearing position information, the working mode comprising at least one of the following:

[0071] The smart watch comprises a first antenna and a second antenna arranged oppositely, the first antenna is away from the wearing wrist relative to the second antenna, and the working mode corresponding to the second wearing position information is to set the first antenna to work.

[0072] The smart watch comprises a first speaker and a second speaker arranged oppositely, the first speaker is away from the wearing wrist relative to the second speaker, and the working mode corresponding to the second wearing position information is to set the first speaker to work.

[0073] Please refer to Figure 2 The embodiment of the present application provides a wearing position identification method, the method is applied to a smart ring, and the method comprises the following steps:

[0074] S210, collecting first fingerprint information of a wearing position, and determining first wearing position information corresponding to the first fingerprint information according to a first mapping relationship between the fingerprint information and the wearing position.

[0075] The smart ring is a wearable device integrating multiple sensors. The smart ring can be worn on the user's finger. Compared with other wearable devices, the smart ring is small and light, and has various appearances and materials, providing users with rich choices. The smart ring can integrate mobile sensors, biological information collectors, etc. The mobile sensors can be used to detect motion data such as the number of steps, distance, and calorie consumption, helping users track and manage their own exercise activities. The biological information collector can include a heart rate collector, a blood oxygen saturation collector, a fingerprint sensor, etc., to ensure the monitoring and management of the user's physical condition.

[0076] When the smart ring is worn on the user's finger, the smart ring can collect first fingerprint information of the wearing part through the fingerprint sensor. Since the fingerprint of each user and the fingerprint of different fingers of the same user are different, the first fingerprint information can be used to determine which user's finger the smart ring is worn on, and which finger of the user and which side of the body the smart ring is worn on.

[0077] The smart ring generates wearing part information according to the first fingerprint information. The wearing part information can include the left side of the body and the right side of the body. The first wearing part information can be any one of the left side of the body and the right side of the body.

[0078] The smart watch is a multifunctional watch with an embedded intelligent system and connected to a network. The smart watch not only has the function of displaying time like a traditional watch, but also can realize more intelligent applications by connecting to a mobile phone and other wearable devices. The smart watch can be embedded with multiple sensors to collect health data such as heart rate, blood pressure, and blood oxygen saturation of the user, helping the user understand their physical condition and prevent diseases; it can also record exercise data, including exercise time, distance, calorie consumption, etc., to provide personalized exercise suggestions for the user; it can also be synchronized with a mobile phone to receive and display message reminders such as phone calls, text messages, and social software messages, and realize payment, audio and video playback, etc. Compared with the smart ring, the smart watch can realize more functions.

[0079] The smart watch can be worn on the wrist of the left side of the body or the right side of the body. The smart watch can also establish a communication connection with the smart ring, the mobile phone, the base station, etc. The first wearing part information generated by the smart ring can be sent directly to the smart watch, so that the smart watch receives the first wearing part information. It can also be sent to a third electronic device such as a mobile phone or a server, and forwarded to the smart watch through the third electronic device, so that the smart watch receives the first wearing part information.

[0080] S230, sending the first wearing part information to the smart watch, so that the smart watch generates second wearing part information of the smart watch according to the first wearing part information and the relative position information of the smart ring and the smart watch within the first time length,

[0081] wherein, in a case where the change range of the relative position information is less than or equal to a preset range, the smart watch generates second wearing position information of the smart watch, the second wearing position information being a same-side limb as the first wearing position information;

[0082] In a case where the change range of the relative position information is greater than the preset range, the smart watch generates second wearing position information of the smart watch, the second wearing position information being a different-side limb as the first wearing position information.

[0083] The smart ring can directly establish a communication connection with the smart watch through a communication module such as a Bluetooth module, an UltraWide Band (UBW) module, etc. The signal strength, speed, etc. sent between the smart ring and the smart watch are detected by the smart ring or the smart watch, and the relative position information of the smart ring and the smart watch is analyzed.

[0084] The first wearing information and the second wearing information are same-side limbs, indicating that the user wears the smart watch and the smart ring on the same side of the limbs, for example, the user wears the smart watch and the smart ring on the left side of the limbs. For example, the user wears the smart watch and the smart ring on the right side of the limbs.

[0085] The first wearing information and the second wearing information are different-side limbs, indicating that the user wears the smart watch and the smart ring on different sides of the limbs, for example, the user wears the smart watch and the smart ring on the left side and the right side of the limbs, respectively.

[0086] When the user wears the smart watch and the smart ring on the same side of the limbs, the limbs make a moving action, and the smart watch and the smart ring move together with the limbs, so that the relative position information of the smart watch and the smart ring does not change or changes slightly. When the user wears the smart watch and the smart ring on different sides of the limbs, the two limbs do not always maintain the same moving action, and the smart watch and the smart ring move with different limbs, respectively, so that the relative position information of the smart watch and the smart ring changes greatly.

[0087] The relative position information in the first time length can be a change value, and a change range of the relative position information can be a difference between a maximum value and a minimum value of the relative position information in the first time length. The preset range is a preset value, and the change range of the relative position information is less than or equal to the preset range, which indicates that the relative position information of the smart watch and the smart ring does not change or changes slightly, and the smart watch and the smart ring are worn on the same side of the body, that is, the second wearing position information located on the same side of the body as the first wearing position information can be generated. The change range of the relative position information is greater than the preset range, which indicates that the relative position information of the smart watch and the smart ring changes greatly, and the smart watch and the smart ring are worn on different sides of the body, that is, the second wearing position information located on the different sides of the body as the first wearing position information can be generated. Optionally, the preset range is 5 cm to 15 cm. The first time length can be 1 h, 3 h, 6 h, 12 h, 24 h, and the like.

[0088] The smart watch can collect the second wearing position information, and adjust the working mode, so that the smart watch is more suitable for being worn on the position where the second wearing position information is located. The staff or the user can also adjust the hardware design of the smart watch according to the second wearing position information, so that the smart watch is more suitable for being worn by the user.

[0089] In the scheme, the first fingerprint information of the wearing position is collected, and the first wearing position information corresponding to the first fingerprint information is determined according to the first mapping relationship between the fingerprint information and the wearing position, so that the smart ring can determine the first wearing position information of the smart ring worn by the user by using the fingerprint information. In the case that the change range of the relative position information is less than or equal to the preset range, the second wearing position information of the smart watch is generated, and the second wearing position information is the same side of the body as the first wearing position information. In the case that the change range of the relative position information is greater than the preset range, the second wearing position information of the smart watch is generated, and the second wearing position information is the different side of the body as the first wearing position information. Therefore, the second wearing position information of the smart watch worn by the user can be determined by using the first wearing information and the change range of the relative position information collected by the smart ring, and the smart watch can identify the wearing position of the user.

[0090] In a possible implementation, the wearing position information includes a left finger, a left wrist, a right finger, and a right wrist, the first wearing position information is any one of the left finger or the right finger, and the second wearing position information is any one of the left wrist or the right wrist.

[0091] When the first wearing position information is a left finger and the second wearing position information is a left bowl, the first wearing position information and the second wearing position information are ipsilateral limbs. When the first wearing position information is a right finger and the second wearing position information is a right bowl, the first wearing position information and the second wearing position information are ipsilateral limbs. When the first wearing position information is a left finger and the second wearing position information is a right bowl, the first wearing position information and the second wearing position information are contralateral limbs. When the first wearing position information is a right finger and the second wearing position information is a left bowl, the first wearing position information and the second wearing position information are contralateral limbs.

[0092] In a possible implementation, the method further includes:

[0093] S410, sending second ranging information to the smart watch in the first time length;

[0094] S420, receiving second feedback information fed back by the smart watch according to the second ranging information;

[0095] S430, generating relative position information of the smart ring and the smart watch according to a sending time of the second ranging information and a receiving time of the second feedback information;

[0096] S440, sending the relative position information to the smart watch.

[0097] The smart ring can collect and generate the relative position information through the distance sensor. The distance sensor can be a Bluetooth module, a UBW module, or an ultrasonic module, etc. The smart ring can send the second ranging information to the smart watch through the distance sensor. After the smart watch receives the second ranging information, the smart watch sends the second feedback information to the smart ring through the communication module. The smart ring generates the relative position information of the smart ring and the smart watch according to the sending time of the second ranging information and the receiving time of the second feedback information.

[0098] In the first time length, the smart ring can send the second ranging information to the smart ring at a preset frequency to obtain multiple values of the relative position information, so as to realize detection of the relative position information of the smart ring and the smart watch in the first time length, and avoid the case that the relative position information of the smart ring and the smart watch worn on different limbs is unchanged when the user's limbs on both sides remain stationary, resulting in an error of the second wearing position information.

[0099] In another possible implementation, the method further includes:

[0100] receiving first ranging information sent by the smart watch in the first time length;

[0101] The first feedback information is fed back to the smart watch according to the first ranging information, so that the smart watch generates relative position information of the smart ring and the smart watch according to a sending time of the first ranging information and a receiving time of the first feedback information, or according to a signal strength of the first ranging information and a signal strength of the first feedback information.

[0102] Compared with the embodiment of performing S410-S440, in the embodiment, the smart watch generates the relative position information according to the first ranging information and the first feedback information.

[0103] In a possible implementation, S210 includes the following steps:

[0104] S710, collecting second fingerprint information of a wearing finger, the wearing finger including a thumb, an index finger, a middle finger, a ring finger and a little finger;

[0105] S720, receiving a first input;

[0106] S730, in response to the first input, establishing a first mapping relationship according to the second fingerprint information and input third wearing part information;

[0107] S740, collecting third fingerprint information of a wearing part, the second fingerprint information and the third fingerprint information being fingerprint information of different side limbs and same wearing fingers;

[0108] S750, receiving a second input;

[0109] S760, in response to the second input, establishing the first mapping relationship according to the third fingerprint information and input fourth wearing part information.

[0110] The second fingerprint information can be fingerprint information of any finger on the left hand or the right hand of the user. The first input can be a combination of one or more inputs such as clicking, touching, pressing, etc. of the smart ring. The user can give, through the first input, whether the second fingerprint information is fingerprint information of the left limb or fingerprint information of the right limb, so that the smart ring can respond to the first input to establish the first mapping relationship according to the second fingerprint information and the input third wearing part information.

[0111] The third fingerprint information can be fingerprint information of any finger on the left hand or the right hand of the user, and the second fingerprint information and the third fingerprint information are fingerprint information of different side limbs and same wearing fingers. The second input can be a combination of one or more inputs such as clicking, touching, pressing, etc. of the smart ring. The user can give, through the second input, whether the third fingerprint information is fingerprint information of the left limb or fingerprint information of the right limb, so that the smart ring can respond to the second input to establish the first mapping relationship according to the third fingerprint information and the input fourth wearing part information.

[0112] Generally, a user has a left hand and a right hand, each of which includes a thumb, an index finger, a middle finger, a ring finger and a little finger. Different fingers have different thicknesses, and the smart ring has a certain size, so that the smart ring can only be worn on the same finger of the left hand or the right hand. For example, a smart ring with a certain size is suitable for being worn on the ring finger of the left hand or the right hand of the user. If the user wears the smart ring on the thumb, the index finger or the middle finger, the smart ring will not be moved to the comfortable position of the user, or the smart ring cannot be fixed on the finger of the user. If the user wears the smart ring on the little finger, the gap between the smart ring and the little finger will be large, and the smart ring cannot be fixed on the finger of the user. Therefore, by inputting the fingerprint information of the same finger of different limbs of the user, a basis can be provided for subsequent generation of first wearing position information.

[0113] The first mapping relationship at least includes a mapping relationship of the fingerprint information and the wearing position information of two same thumbs of different limbs of the same user, and can also include a mapping relationship of the fingerprint information and the wearing position information of two same thumbs of different limbs of other users. The first wearing position information can be any one of the third wearing position information or the fourth wearing position information.

[0114] The execution subject of the wearing position identification method provided by the embodiments of the present application can be a wearing position identification device. In the embodiments of the present application, the wearing position identification device is taken as an example to illustrate the wearing position identification device provided by the embodiments of the present application.

[0115] Please refer to Figure 3 , Figure 3 is a structural schematic diagram of the wearing position identification device provided by another embodiment of the present application, as Figure 3 shown, the wearing position identification device can include:

[0116] The first receiving module 301 is configured to receive first wearing position information, and the first wearing position information is obtained by the smart ring according to the first fingerprint information collected from the wearing position.

[0117] The first obtaining module 302 is configured to obtain relative position information of the smart ring and the smart watch within a first time length.

[0118] The first wearing position generation module 303 is configured to generate second wearing position information of the smart watch in a case where the change amplitude of the relative position information is less than or equal to a preset range, and the second wearing position information is a same-side limb of the first wearing position information.

[0119] The first wearing position generation module 303 is further configured to generate second wearing position information of the smart watch in a case where the change amplitude of the relative position information is greater than the preset range, and the second wearing position information is a different-side limb of the first wearing position information.

[0120] In an optional example, the wearing part information includes a left finger, a left wrist, a right finger and a right wrist, the first wearing part information is any one of the left finger or the right finger, and the second wearing part information is any one of the left wrist or the right wrist.

[0121] In an optional example, the first obtaining module 302 includes:

[0122] The first sending unit is configured to send first ranging information to the smart ring within a first time length.

[0123] The first receiving unit is configured to receive first feedback information fed back by the smart ring according to the first ranging information.

[0124] The first position generating unit is configured to generate relative position information of the smart ring and the smart watch according to a sending time of the first ranging information and a receiving time of the first feedback information, or according to a signal strength of the first ranging information and a signal strength of the first feedback information.

[0125] The wearing part identification method provided in the embodiments of the present application can be executed by the wearing part identification device. In the embodiments of the present application, the wearing part identification method is executed by the wearing part identification device as an example, and the wearing part identification device provided in the embodiments of the present application is described.

[0126] Please refer to Figure 4 , Figure 4 is a structural schematic diagram of the wearing part identification device provided in another embodiment of the present application, as Figure 4 shown, the wearing part identification device can include:

[0127] The second wearing part generating module 401 is configured to collect first fingerprint information of a wearing part, and determine first wearing part information corresponding to the first fingerprint information according to a first mapping relationship between the fingerprint information and the wearing part.

[0128] The second obtaining module 402 is configured to obtain relative position information of the smart ring and the smart watch within a first time length.

[0129] The second sending module 403 is configured to send the first wearing part information to the smart watch, so that the smart watch generates second wearing part information of the smart watch according to the first wearing part information and the relative position information of the smart ring and the smart watch within the first time length.

[0130] In a case where a change range of the relative position information is less than or equal to a preset range, the smart watch generates the second wearing part information of the smart watch, and the second wearing part information is a same-side limb of the first wearing part information.

[0131] In a case where the change range of the relative position information is greater than the preset range, the smart watch generates second wearing position information of the smart watch, the second wearing position information being a limb different from the first wearing position information.

[0132] In an optional example, the wearing positions include a left finger, a left wrist, a right finger and a right wrist, the first wearing position information is any one of the left finger or the right finger, and the second wearing position information is any one of the left wrist or the right wrist.

[0133] In an optional example, the second acquisition module 402 includes:

[0134] The second sending unit is configured to send second ranging information to the smart watch within a first time length.

[0135] The second receiving unit is configured to receive second feedback information fed back by the smart watch according to the second ranging information.

[0136] The second position generation unit is configured to generate relative position information of the smart ring and the smart watch according to a sending time of the second ranging information and a receiving time of the second feedback information.

[0137] The third sending unit is configured to send the relative position information to the smart watch.

[0138] In an optional example, the wearing position identification apparatus further includes:

[0139] The second acquisition module 404 is configured to acquire second fingerprint information of a wearing finger, the wearing finger including a thumb, an index finger, a middle finger, a ring finger and a little finger.

[0140] The second input module 405 is configured to receive a first input.

[0141] The second mapping relationship establishment module 406 is configured to, in response to the first input, establish a first mapping relationship according to the second fingerprint information and input third wearing position information.

[0142] The second acquisition module 404 is further configured to acquire third fingerprint information of the wearing position, the second fingerprint information and the third fingerprint information being fingerprint information of different limbs and same wearing fingers.

[0143] The second input module 405 is further configured to receive a second input.

[0144] The second mapping relationship establishment module 406 is further configured to, in response to the second input, establish the first mapping relationship according to the third fingerprint information and input fourth wearing position information.

[0145] The wearing position recognition apparatus in the embodiments of the present applicationapplicationbe a smart watch, a smart ring, or a component in the smart watch or the smart ring, such as an integrated circuit or a chip. The smart watch or the smart ringapplicationbe a terminal or another device other than the terminal.

[0146] The wearing position recognition apparatus in the embodiments of the present applicationapplicationbe an apparatus having an operating system. The operating systemapplicationbe an Android operating system, an ios operating system, a BlueOS operating system, or another possible operating system, which is not limited in the embodiments of the present application.

[0147] The wearing position recognition apparatus provided in the embodiments of the present applicationapplicationimplement the method embodiments Figure 1 The processes implemented by the method embodimentsapplicationbe described above, which will not be described herein again to avoid repetition.

[0148] Optionally, as shown in Figure 5 The embodiments of the present application further provide a smart watch 100, whichapplicationinclude a first processor 101 and a first memory 102. The first memory 102applicationstore a program or instructions executable on the first processor 101. The program or instructionsapplicationbe executed by the first processor 101 to implement each step of the above wearing position recognition method embodiments and achieve the same technical effects. The processes implemented by the method embodimentsapplicationbe described above, which will not be described herein again to avoid repetition.

[0149] Figure 6 To implement the hardware structure of the smart watch in the embodiments of the present application.

[0150] The smart watch 1000applicationinclude, but is not limited to, a radio frequency unit 601, a network module 602, an audio output unit 603, an input unit 604, a sensor 605, a display unit 606, a user input unit 607, an interface unit 608, a first memory 609, and a first processor 610.

[0151] Those skilled in the art can understand that the smart watch 1000applicationfurther include a power supply (such as a battery) for supplying power to each component. The power supplyapplicationbe logically connected to the first processor 610 through a power management system, so as to realize the functions of power management, such as charging, discharging, and power consumption management, through the power management system. Figure 6 The structure of the smart watch shown in the above

[0152] The first processor 610applicationbe configured to receive first wearing position information. The first wearing position informationapplicationbe obtained by the smart ring according to first fingerprint information collected from a wearing position.

[0153] The first processor 610 is configured to acquire relative position information of the smart ring and the smart watch in a first time length.

[0154] The first processor 610 is configured to generate second wearing part information of the smart watch in a case where a variation range of the relative position information is less than or equal to a preset range, the second wearing part information being a same-side limb of the first wearing part information.

[0155] The first processor 610 is configured to generate second wearing part information of the smart watch in a case where the variation range of the relative position information is greater than the preset range, the second wearing part information being a cross-side limb of the first wearing part information.

[0156] Optionally, the wearing part information includes a left finger, a left wrist, a right finger and a right wrist, the first wearing part information being any one of the left finger or the right finger, and the second wearing part information being any one of the left wrist or the right wrist.

[0157] Optionally, the first processor 610 is configured to send first ranging information to the smart ring in the first time length.

[0158] The first processor 610 is configured to receive first feedback information fed back by the smart ring according to the first ranging information.

[0159] The first processor 610 is configured to generate the relative position information of the smart ring and the smart watch according to a sending time of the first ranging information and a receiving time of the first feedback information, or according to a signal strength of the first ranging information and a signal strength of the first feedback information.

[0160] It should be understood that in the embodiments of the present application, the input unit 604 can include a graphics first processor (GPU) 6041 and a microphone 6042. The graphics first processor 6041 processes image data of a still picture or a video obtained by an image capture device (such as a camera) in a video capture mode or an image capture mode. The display unit 606 can include a display panel 6061, which can be configured in the form of a liquid crystal display, an organic light-emitting diode, etc. The user input unit 607 includes at least one of a touch panel 6071 and other input devices 6072. The touch panel 6071 is also called a touch screen. The touch panel 6071 can include two parts of a touch detection device and a touch controller. The other input devices 6072 can include, but are not limited to, a physical keyboard, function keys (such as volume control keys, on-off keys, etc.), trackballs, mice, joysticks, and the like, which will not be described here.

[0161] The first storage 609 can be used to store software programs and various data. The first storage 609 can mainly include a first storage area storing programs or instructions and a second storage area storing data, wherein the first storage area can store an operating system, application programs or instructions required by at least one function (such as a sound playing function, an image playing function, etc.), and the like. In addition, the first storage 609 can include a volatile first storage or a non-volatile first storage, or the first storage 609 can include both volatile and non-volatile first storages. The non-volatile first storage can be a Read-Only Memory (ROM), a Programmable ROM (PROM), an Erasable PROM (EPROM), an Electrically EPROM (EEPROM), or a flash memory. The volatile first storage can be a Random Access Memory (RAM), a Static RAM (SRAM), a Dynamic RAM (DRAM), a Synchronous DRAM (SDRAM), a Double Data Rate SDRAM (DDR SDRAM), an Enhanced SDRAM (ESDRAM), a Synch link DRAM (SLDRAM), and a Direct Rambus RAM (DRRAM). The first storage 609 in the embodiments of the present application includes but is not limited to these and any other suitable types of first storages.

[0162] The first processor 610 can include one or more processing units; optionally, the first processor 610 integrates an application first processor and a modem first processor, wherein the application first processor mainly processes operations related to an operating system, a user interface, and an application program, and the modem first processor mainly processes wireless communication signals, such as a baseband first processor. It can be understood that the above-mentioned modem first processor can also not be integrated into the first processor 610.

[0163] As Figure 7As shown, the embodiment of the present application further provides a smart ring 200, comprising a second processor 201 and a second memory 202, the second memory 202 storing a program or instruction executable on the second processor 201, the program or instruction being executed by the second processor 201 to implement each step of the above-mentioned wearing part recognition method embodiment and achieve the same technical effect. To avoid repetition, details are not described herein.

[0164] The second processor 201 is configured to collect first fingerprint information of the wearing part, and determine first wearing part information corresponding to the first fingerprint information according to a first mapping relationship between the fingerprint information and the wearing part.

[0165] The second processor 201 is configured to obtain relative position information of the smart ring and the smart watch within a first time length.

[0166] The second processor 201 is configured to send the first wearing part information to the smart watch, so that the smart watch generates second wearing part information of the smart watch according to the first wearing part information and the relative position information of the smart ring and the smart watch within the first time length.

[0167] In a case where the change range of the relative position information is less than or equal to a preset range, the smart watch generates the second wearing part information of the smart watch, and the second wearing part information is a same-side limb of the first wearing part information.

[0168] In a case where the change range of the relative position information is greater than the preset range, the smart watch generates the second wearing part information of the smart watch, and the second wearing part information is a different-side limb of the first wearing part information.

[0169] Optionally, the wearing part includes a left finger, a left wrist, a right finger and a right wrist, the first wearing part information is any one of the left finger or the right finger, and the second wearing part information is any one of the left wrist or the right wrist.

[0170] Optionally, the second processor 201 is configured to send second ranging information to the smart watch within the first time length.

[0171] The second processor 201 is configured to receive second feedback information fed back by the smart watch according to the second ranging information.

[0172] The second processor 201 is configured to generate the relative position information of the smart ring and the smart watch according to a sending time of the second ranging information and a receiving time of the second feedback information.

[0173] The second processor 201 is configured to send the relative position information to the smart watch.

[0174] Optionally, the second processor 201 is configured to collect second fingerprint information of a wearing finger, the wearing finger including a thumb, an index finger, a middle finger, a ring finger and a little finger.

[0175] The second processor 201 is configured to receive a first input.

[0176] The second processor 201 is configured to, in response to the first input, establish a first mapping relationship according to the second fingerprint information and input third wearing position information.

[0177] The second processor 201 is configured to collect third fingerprint information of a wearing position, the second fingerprint information and the third fingerprint information being fingerprint information of different sides of a limb and the same wearing finger.

[0178] The second processor 201 is configured to receive a second input.

[0179] The second processor 201 is configured to, in response to the second input, establish the first mapping relationship according to the third fingerprint information and input fourth wearing position information.

[0180] The embodiment of the present application further provides a readable storage medium, and the readable storage medium stores a program or instructions, the program or instructions are executed by the first processor or the second processor to realize each process of the wearing position identification method embodiment, and the same technical effects can be achieved, and details are not repeated here to avoid repetition.

[0181] The first processor is a processor in the smart watch in the above embodiment, and the second processor is a processor in the smart ring in the above embodiment. The readable storage medium includes a computer readable storage medium, such as a computer readable memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk.

[0182] The embodiment of the present application further provides a chip, and the chip includes a processor and a communication interface, the communication interface is coupled with the processor, and the processor is configured to run a program or instructions to realize each process of the wearing position identification method embodiment, and the same technical effects can be achieved, and details are not repeated here to avoid repetition.

[0183] The processor can be a first processor in a smart watch or a second processor in a smart ring.

[0184] It should be understood that the chip mentioned in the embodiment of the present application can also be referred to as a system-level chip, a system chip, a chip system or a system-on-chip chip.

[0185] The embodiment of the present application provides a computer program product, the program product is stored in a storage medium, and the program product is executed by at least one processor to realize each process of the wearing position identification method embodiment, and the same technical effects can be achieved, and details are not repeated here to avoid repetition.

[0186] It should be noted that, as used in this application, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can also include other elements not expressly listed or inherent to such process, method, article, or apparatus. An element proceeded by "comprises... a" does not, without more constraints, exclude the presence of additional identical elements in the process, method, article, or apparatus that comprises the element. Furthermore, it should be noted that the methods and apparatuses of the present application are not limited by the order of the steps or the sequence for performing the steps, as some steps can occur simultaneously, be performed in different orders, or be performed concurrently, unless expressly by the context required otherwise. Also, features described with respect to certain examples can be combined in other examples.

[0187] From the above description of the embodiments, it is apparent that the method of the above-mentioned embodiments can be realized by means of software plus necessary universal hardware platforms, and of course, can also be realized by hardware, but in many cases, the former is a better embodiment. Based on such an understanding, the technical solutions of the present application can be embodied in the form of a computer software product, which is stored in a storage medium (such as a ROM / RAM, a magnetic disk, or an optical disk), and includes a plurality of instructions for causing a terminal (which can be a mobile phone, a computer, a server, or a network device, etc.) to execute the method of each embodiment of the present application.

[0188] The embodiments of the present application are described above with reference to the accompanying drawings, but the present application is not limited to the above-described specific embodiments, and the above-described specific embodiments are merely illustrative, rather than limiting, and a person of ordinary skill in the art can make many forms under the inspiration of the present application without departing from the scope of the present application and the scope protected by the claims.

Claims

1. A wearing site identification method characterized by comprising: The method is applied to a smart watch, and the method comprises: receiving first wearing position information, the first wearing position information being obtained by a smart ring according to first fingerprint information of a wearing position, the first wearing position information being any one of a left side limb and a right side limb; obtaining relative position information of the smart ring and the smart watch within a first time length; in a case where a change range of the relative position information is less than or equal to a preset range, generating second wearing position information of the smart watch, the second wearing position information being a same side limb as the first wearing position information; in a case where the change range of the relative position information is greater than the preset range, generating second wearing position information of the smart watch, the second wearing position information being a different side limb as the first wearing position information.

2. The wearing part recognition method according to claim 1, characterized by, The wearing position information comprises a left finger, a left wrist, a right finger and a right wrist, the first wearing position information is any one of the left finger or the right finger, and the second wearing position information is any one of the left wrist or the right wrist.

3. The wearing part recognition method according to claim 1, characterized by, The obtaining of the relative position information of the smart ring and the smart watch within the first time length comprises: sending first ranging information to the smart ring within the first time length; receiving first feedback information fed back by the smart ring according to the first ranging information; generating the relative position information of the smart ring and the smart watch according to a sending time of the first ranging information and a receiving time of the first feedback information, or according to a signal strength of the first ranging information and a signal strength of the first feedback information.

4. A wearing site identification method characterized by comprising: The method is applied to a smart ring, and the method comprises: collecting first fingerprint information of a wearing position, and determining first wearing position information corresponding to the first fingerprint information according to a first mapping relationship between fingerprint information and a wearing position; sending the first wearing position information to a smart watch, so that the smart watch generates second wearing position information of the smart watch according to the first wearing position information and relative position information of the smart ring and the smart watch within a first time length; in a case where a change range of the relative position information is less than or equal to a preset range, the smart watch generates second wearing position information of the smart watch, the second wearing position information being a same side limb as the first wearing position information; in a case where the change range of the relative position information is greater than the preset range, the smart watch generates second wearing position information of the smart watch, the second wearing position information being a different side limb as the first wearing position information.

5. The wearing part identification method according to claim 4, characterized by, The method further comprises: sending second ranging information to the smart watch within the first time length; receiving second feedback information fed back by the smart watch according to the second ranging information; generating the relative position information of the smart ring and the smart watch according to a sending time of the second ranging information and a receiving time of the second feedback information; sending the relative position information to the smart watch.

6. The wearing part identification method according to claim 4, characterized by, Before the collecting of the first fingerprint information of the wearing position, the method further comprises: Collect second fingerprint information of a wearing finger, the wearing finger including a thumb, an index finger, a middle finger, a ring finger and a little finger; Receiving a first input; In response to the first input, establishing the first mapping relationship according to the second fingerprint information and input third wearing site information; Collecting third fingerprint information of a wearing site, the second fingerprint information and the third fingerprint information being fingerprint information of different side limbs and same wearing fingers; Receiving a second input; In response to the second input, establishing the first mapping relationship according to the third fingerprint information and input fourth wearing site information.

7. A wearing site identification device, characterized by Comprising: A first receiving module for receiving first wearing site information, the first wearing site information being obtained by a smart ring according to collected first fingerprint information of a wearing site, the first wearing site information being any one of a left side limb and a right side limb; A first acquiring module for acquiring relative position information of the smart ring and a smart watch within a first time length; A first wearing site generating module for generating second wearing site information of the smart watch in a case that a change amplitude of the relative position information is less than or equal to a preset range, the second wearing site information being a same side limb as the first wearing site information; The first wearing site generating module is further configured to generate second wearing site information of the smart watch in a case that the change amplitude of the relative position information is greater than the preset range, the second wearing site information being a different side limb as the first wearing site information.

8. A wearing site identification apparatus characterized by comprising: Comprising: A second wearing site generating module for collecting first fingerprint information of a wearing site, and determining first wearing site information corresponding to the first fingerprint information according to a first mapping relationship between fingerprint information and a wearing site; A second acquiring module for acquiring relative position information of a smart ring and a smart watch within a first time length; A second sending module for sending the first wearing site information to the smart watch, so that the smart watch generates second wearing site information of the smart watch according to the first wearing site information and the relative position information of the smart ring and the smart watch within the first time length, In a case that a change amplitude of the relative position information is less than or equal to a preset range, the smart watch generates second wearing site information of the smart watch, the second wearing site information being a same side limb as the first wearing site information; In a case that the change amplitude of the relative position information is greater than the preset range, the smart watch generates second wearing site information of the smart watch, the second wearing site information being a different side limb as the first wearing site information.

9. A smart watch, characterized by Comprising a first processor and a first memory, the first memory storing programs or instructions executable on the first processor, the programs or instructions being executed by the first processor to implement steps of the wearing site identification method according to any one of claims 1-3.

10. A smart ring, characterized by The smart ring comprises a second processor and a second memory storing a program or instructions executable on the second processor, the program or instructions being executed by the second processor to implement the steps of the wearing part identification method according to any one of claims 4-6.

Citation Information

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