An intelligent ring with monitoring data and a control method

The smart ring with interlocking ring bodies addresses the limitation of single-function smart rings by enabling flexible mode switching and efficient power management for multi-scenario data monitoring and interaction.

CN115211648BActive Publication Date: 2025-07-15深圳市魔样科技股份有限公司
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Patent Information

Application Number
CN202210939687.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-08-05
Publication Date
2025-07-15
Estimated Expiration
2042-08-05

AI Technical Summary

Technical Problem

The existing smart ring has a single function, making it difficult to quickly switch in multiple scenarios, and cannot meet the diverse usage needs.

Method used

Two ring bodies are designed to form three working modes through merging, separation or combination, and free switching of different modes is achieved by using magnetic connection and distance detection. In the combined state, power is used to supply the main power supply and data correction is performed in the separated state.

Benefits of technology

It realizes free switching of smart rings in different modes, improves the efficiency of power utilization, reduces errors, and expands functional application scenarios.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an intelligent ring with monitoring data and a control method, which includes two ring bodies, namely a first body and a second body. The two ring bodies can be combined, separated or assembled, and three working modes are formed through combination, separation or assembly; when the two ring bodies are combined, the user can wear the combined two rings on one finger to monitor the first motion data; when the two ring bodies are separated, the user can wear the separated two rings on the same type of fingers of both hands to monitor the second motion data, and the two rings can be mutually corrected according to the second motion data; when the two ring bodies are assembled, the user wears the assembled two rings on different types of fingers of the same hand, and data interaction between the intelligent ring and the terminal device can be realized. The free switching of multiple data monitoring modes can be achieved.
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Description

Technical Field

[0001] The present invention relates to the technical field of smart wearable devices, and particularly to a smart ring with monitoring data and a control method therefor. Background Art

[0002] Smart wearable technologies have gradually become popular in daily life, providing great convenience for people's lives. As an application scenario of wearable devices, smart rings generally have single functions such as data detection in the prior art. The current applications of smart rings are limited to the use of single functions. If the application scenarios of smart rings are to be improved so that they can be better used in life scenarios and their functions are extended, and how to quickly switch between modes in multiple scenarios, this is a difficult problem for the wide application of smart rings. Summary of the Invention

[0003] The present invention discloses a smart ring with monitoring data, which includes two ring bodies. The two ring bodies include a first body and a second body. The two ring bodies can be combined, separated, or assembled to form three working modes through combination, separation, or assembly.

[0004] When the two ring bodies are combined, the user can wear the combined two ring bodies on one finger to monitor first motion data.

[0005] When the two ring bodies are separated, the user can wear the separated two ring bodies on the same type of fingers of both hands to monitor second motion data, and the two ring bodies can be mutually corrected according to the second motion data.

[0006] When the two ring bodies are assembled, the user can wear the combined two ring bodies on different types of fingers of the same hand to realize data interaction between the smart ring and the terminal device.

[0007] In the smart ring with monitoring data, a first magnetic component is arranged on the side of the first body, and a second magnetic component is arranged on the side of the second body. The first magnetic component and the second magnetic component are combined in an attracting manner. The first magnetic component includes a first marked magnetic component and a first ordinary magnetic component, and the second magnetic component includes a second marked magnetic component and a second ordinary magnetic component. When the first marked magnetic component and the second marked magnetic component are aligned and attracted, a marked signal is generated, and the marked signal is respectively sent to the control modules inside the first body and the second body to mark that the first body and the second body are correctly aligned. At this time, the first body and the second body are in a combined state. When the first marked magnetic component and the second marked magnetic component are not aligned or not attracted, at this time, the two ring bodies are in at least one of an abnormal connection state, a separated state, or an assembled state.

[0008] An intelligent ring with monitoring data, wherein a first control module and a first distance sensor are arranged inside the first body, and a second control module and a second distance sensor are arranged inside the second body. The first control module first determines whether the first marked magnetic part is aligned with and attracted to the second marked magnetic part;

[0009] If so, it is determined that the first body and the second body are in a combined state at this time, then the second control module, the first distance sensor, and the second distance sensor are turned off, and the combined first body and second body are uniformly controlled by the first control module to perform first motion data monitoring;

[0010] If not, the distance value between the first distance sensor and the second distance sensor is judged. If the distance value is less than the first distance threshold, it is determined that the two finger ring bodies are in an abnormal connection state at this time, and an abnormal connection prompt message is sent to the user; if the distance value is greater than the first distance threshold and less than the second distance threshold, it is determined that the two finger ring bodies are in a combined state at this time; if the distance value is greater than the second distance threshold, it is determined that the two finger ring bodies are in a separated state.

[0011] An intelligent ring with monitoring data, wherein the first body includes a first control module, a first distance sensor, a first power supply, a first indicator light, a vibration module, a first wireless communication module, a first motion sensor, and a first calibration and comparison module; the second body includes a second control module, a second distance sensor, a second power supply, a second wireless communication module, a second motion sensor, and a second calibration and comparison module.

[0012] An intelligent ring with monitoring data, wherein the first power supply can be connected to the second power supply through the external interface of the first body; when the first body and the second body are in a combined state, the first power supply serves as the main power supply module to supply power to the first body and the second body, and the second power supply serves as a backup power supply. When the electric energy of the first power supply is exhausted, the second power supply supplies power to the first body and the second body; when the first body and the second body are in a combined state, the first control module sends a control instruction to the second control module. After receiving the control instruction, the second control module closes the power supply path from the second power supply to the second distance sensor, the second wireless communication module, the second motion sensor, and the second calibration and comparison module. At this time, the second distance sensor, the second wireless communication module, the second motion sensor, and the second calibration and comparison module pause working. Then, the second control module sends a first feedback instruction to the first control module. After receiving the first feedback instruction, the first control module switches the first power supply to supply power to the second control module, turns off the second power supply, and then the second control module checks whether the second power supply is turned off. If it is turned off, it sends a second feedback instruction to the first control module. After receiving the second feedback instruction, the first control module closes the power supply path from the first power supply to the second control module.

[0013] An intelligent ring with monitoring data, wherein the first calibration and comparison module is configured to receive the first motion data of the first motion sensor and receive the second motion data of the second motion sensor through the first wireless communication module, compare the first motion data and the second motion data to form first comparison deviation data, and correct the motion data according to the first comparison deviation data; alternatively, the second calibration and comparison module is configured to receive the second motion data of the second motion sensor and receive the first motion data of the first motion sensor through the second wireless communication module, compare the second motion data and the first motion data to form second comparison deviation data, and correct the motion data according to the second comparison deviation data.

[0014] An intelligent ring with monitoring data, wherein the first indicator light is used to indicate the modes of the first body and the second body, and represents three different modes through three different colors; the vibration module is used to prompt the user of an abnormal connection state.

[0015] The described intelligent ring with monitoring data, where the first indicator light shows red indicating that the first body and the second body are in the combined working mode, the first indicator light shows green indicating that the first body and the second body are in the separated working mode, and the first indicator light shows yellow indicating that the first body and the second body are in the combined working mode.

[0016] A control method for an intelligent ring with monitoring data as described in any of the above, comprising the following steps:

[0017] S1. Determine whether the first marked magnetic component and the second marked magnetic component are aligned and attracted. If so, execute step S2; if not, execute step S3.

[0018] S2. Generate a marked signal and send the marked signal to the control modules inside the first body and the second body respectively to mark that the first body and the second body are correctly aligned. At this time, the first body and the second body are in the combined state.

[0019] When the first body and the second body are in the combined state, the first power supply serves as the main power supply module to supply power to the first body and the second body, and the second power supply serves as the backup power supply. When the electrical energy of the first power supply is exhausted, the second power supply supplies power to the first body and the second body; when the first body and the second body are in the combined state, the first control module sends a control instruction to the second control module. After receiving the control instruction, the second control module closes the power supply paths of the second power supply to the second distance sensor, the second wireless communication module, the second motion sensor, and the second calibration and comparison module. At this time, the second distance sensor, the second wireless communication module, the second motion sensor, and the second calibration and comparison module pause working. Then the second control module sends a first feedback instruction to the first control module. After receiving the first feedback instruction, the first control module switches the first power supply to supply power to the second control module, closes the second power supply, and then the second control module checks whether the second power supply is closed. If it is closed, it sends a second feedback instruction to the first control module. After receiving the second feedback instruction, the first control module closes the power supply path of the first power supply to the second control module.

[0020] S3. Determine that the two ring bodies are in at least one of the abnormal connection state, separated state, or combined state at this time.

[0021] For the described control method, step S3 specifically includes:

[0022] S31. Detect the distance value between the first distance sensor and the second distance sensor and send the distance value to the first control module.

[0023] S32. After receiving the distance value, the first control compares the distance value with a first distance threshold and the second distance threshold, and determines the states of the two finger ring bodies according to the comparison result;

[0024] The specific steps of step S32 include:

[0025] S321. If the distance value is less than the first distance threshold, it is determined that the two finger ring bodies are in an abnormal connection state at this time, and an abnormal connection prompt message is sent to the user through the vibration of the vibration module;

[0026] S322. If the distance value is greater than the first distance threshold and less than the second distance threshold, it is determined that the two finger ring bodies are in a combined state at this time; the user can wear the two combined finger rings on different types of fingers of the same hand to realize data interaction of the intelligent ring control terminal device;

[0027] S323. If the distance value is greater than the second distance threshold, it is determined that the two finger ring bodies are in a separated state at this time. The user can wear the two separated finger rings on the same type of fingers of both hands to monitor the second motion data, and the two finger rings can be mutually corrected according to the second motion data.

[0028] The present invention proposes an intelligent ring with monitoring data and a control method, which can realize the free switching of three working modes of the intelligent ring through different combination modes of two bodies, and is convenient for data monitoring and data interaction through the intelligent ring in different modes. As the main improvement of the present invention, it overcomes the single working mode of the intelligent ring in the prior art, such as only monitoring motion data or being used as a device for data interaction alone. The present invention uses magnetic connection in two finger ring bodies as a sign, and can better realize the free switching and state transformation of different working modes in cooperation with distance detection; as another improvement of the present invention, it can use different power supplies in different modes, especially in the combined state, using the first power supply for overall power supply and the second power supply as a backup. By using the first feedback signal and the second feedback signal to orderly turn off the corresponding modules in the second body, it can save electric energy while detecting data and improve the service life of the intelligent ring; as another improvement of the present invention, it realizes the correction of data in the separated state, which helps to distinguish different motion data in different motion states and reasonably corrects them to avoid errors in motion data. Description of the Drawings

[0029] Figure 1 It is a schematic diagram of the first body of the intelligent ring with monitoring data according to the present invention.

[0030] Figure 2 It is a schematic diagram of the second body of the intelligent ring with monitoring data according to the present invention.

[0031] Figure 3 It is a schematic diagram of the control method of the present invention.

[0032] Figure 4 It is a schematic diagram of the method for judging the abnormal connection state, separation state or combined state of the present invention. Detailed implementation manners

[0033] The following further describes the present application in detail with reference to the accompanying drawings. It is necessary to point out here that the following specific implementation manners are only used to further illustrate the present application and cannot be understood as limiting the protection scope of the present application. Those skilled in the art can make some non-essential improvements and adjustments to the present application according to the above application content.

[0034] The present invention discloses an intelligent ring with monitoring data, which includes two ring bodies. The two ring bodies include a first body and a second body. The two ring bodies can be combined, separated or combined to form three working modes through combination, separation or combination;

[0035] When the two ring bodies are combined, the user can wear the combined two rings on one finger to monitor the first motion data;

[0036] Preferably, the first body and the second body are combined into a whole by magnetic components, so that it can be worn on any finger and used to monitor data as a whole;

[0037] When the two ring bodies are separated, the user can wear the separated two rings on the same type of fingers of both hands to monitor the second motion data, and the two rings can be mutually corrected according to the second motion data;

[0038] Preferably, the first body is worn on the index finger of the left hand, and the second body is worn on the index finger of the right hand, or the first body is worn on the middle finger of the left hand, and the second body is worn on the middle finger of the right hand, that is, the first body and the second body are worn on different hands, but the corresponding fingers should be the same;

[0039] When the two ring bodies are combined, the user wears the combined two rings on different types of fingers of the same hand, and can realize the data interaction between the intelligent ring and the control terminal device.

[0040] Preferably, the first body is worn on the index finger of the left hand, and the second body is worn on the middle finger of the left hand, or the first body is worn on the middle finger of the right hand, and the second body is worn on the index finger of the right hand, that is, the first body and the second body are worn on the same hand, but the corresponding fingers should be different; preferably, when the smart ring is used for data interaction of the terminal device, it can adopt the method of using two rings in combination as the input of the mouse function in the prior art, which will not be elaborated here. The terminal device includes devices such as mobile phones, computers, and tablets that require external data input.

[0041] Preferably, the first motion data is for ordinary motion data monitoring. Since only the first motion sensor is used at this time, there is only one set of motion data monitoring at this time; the second motion data can be obtained by performing two sets of data monitoring through the first motion sensor and the second motion sensor and then performing data correction to obtain the final motion data.

[0042] Preferably, the first motion sensor and the second motion sensor include a gyroscope, an acceleration sensor, a direction sensor, etc.

[0043] For the smart ring with monitoring data, a first magnetic component is arranged on the side of the first body, and a second magnetic component is arranged on the side of the second body. The first magnetic component and the second magnetic component are combined in an attracting manner; the first magnetic component includes a first marked magnetic component and a first ordinary magnetic component, and the second magnetic component includes a second marked magnetic component and a second ordinary magnetic component. When the first marked magnetic component and the second marked magnetic component are aligned and attracted, a marked signal is generated, and the marked signal is sent to the control modules inside the first body and the second body respectively to mark that the first body and the second body are correctly aligned. At this time, the first body and the second body are in a combined state; when the first marked magnetic component and the second marked magnetic component are not aligned or not attracted, at this time, the two ring bodies are in at least one of an abnormal connection state, a separated state, or a combined state.

[0044] For the smart ring with monitoring data, a first control module and a first distance sensor are arranged inside the first body, and a second control module and a second distance sensor are arranged inside the second body. The first control module first judges whether the first marked magnetic component is aligned and attracted to the second marked magnetic component;

[0045] If so, judge that the first body and the second body are in a combined state at this time, then turn off the second control module, the first distance sensor, and the second distance sensor, and uniformly control the combined first body and second body by the first control module to perform the first motion data monitoring;

[0046] If not, determine the distance value between the first distance sensor and the second distance sensor at this time. If the distance value is less than the first distance threshold, it is determined that the two ring bodies are in an abnormal connection state at this time, and an abnormal connection prompt message is sent to the user; if the distance value is greater than the first distance threshold and less than the second distance threshold, it is determined that the two ring bodies are in a combined state at this time; if the distance value is greater than the second distance threshold, it is determined that the two ring bodies are in a separated state.

[0047] It should be noted that the second distance threshold is greater than the first distance threshold, and the specific threshold can be determined by the distance between the user's fingers and the distance between the two hands.

[0048] As Figure 1 shown, it is a schematic diagram of the first body of the intelligent ring with monitoring data according to the present invention.

[0049] As Figure 2 shown, it is a schematic diagram of the second body of the intelligent ring with monitoring data according to the present invention.

[0050] For the intelligent ring with monitoring data described above, the first body includes a first control module, a first distance sensor, a first power supply, a first indicator light, a vibration module, a first wireless communication module, a first motion sensor, and a first calibration and comparison module; the second body includes a second control module, a second distance sensor, a second power supply, a second wireless communication module, a second motion sensor, and a second calibration and comparison module.

[0051] An intelligent ring with monitoring data, wherein the first power supply can be connected to the second power supply through the external interface of the first body; when the first body and the second body are in a combined state, the first power supply serves as the main power supply module to supply power to the first body and the second body, and the second power supply serves as the backup power supply. When the power of the first power supply is exhausted, the second power supply supplies power to the first body and the second body; when the first body and the second body are in a combined state, the first control module sends a control instruction to the second control module. After receiving the control instruction, the second control module closes the power supply path from the second power supply to the second distance sensor, the second wireless communication module, the second motion sensor, and the second calibration and comparison module. At this time, the second distance sensor, the second wireless communication module, the second motion sensor, and the second calibration and comparison module pause working. Then the second control module sends a first feedback instruction to the first control module. After receiving the first feedback instruction, the first control module switches the first power supply to supply power to the second control module, turns off the second power supply, and then the second control module checks whether the second power supply is turned off. If it is turned off, it sends a second feedback instruction to the first control module. After receiving the second feedback instruction, the first control module closes the power supply path from the first power supply to the second control module.

[0052] An intelligent ring with monitoring data, wherein the first calibration and comparison module is configured to receive the first motion data of the first motion sensor, and receive the second motion data of the second motion sensor through the first wireless communication module, compare the first motion data and the second motion data to form first comparison deviation data, and correct the motion data according to the first comparison deviation data; alternatively, the second calibration and comparison module is configured to receive the second motion data of the second motion sensor, and receive the first motion data of the first motion sensor through the second wireless communication module, compare the second motion data and the first motion data to form second comparison deviation data, and correct the motion data according to the second comparison deviation data.

[0053] An intelligent ring with monitoring data, wherein the first indicator light is configured to indicate the modes of the first body and the second body, and represents three different modes through three different colors; the vibration module is configured to prompt the user of an abnormal connection state.

[0054] The described intelligent ring with monitoring data, where the first indicator light shows red indicating that the first body and the second body are in the combined working mode, the first indicator light shows green indicating that the first body and the second body are in the separated working mode, and the first indicator light shows yellow indicating that the first body and the second body are in the combined working mode.

[0055] As Figure 3 shown, it is a schematic diagram of the control method of the present invention. A control method for an intelligent ring with monitoring data as described in any one of the above, comprising the following steps:

[0056] S1. Determine whether the first marked magnetic component and the second marked magnetic component are aligned and attracted. If so, execute step S2; if not, execute step S3;

[0057] S2. Generate a marked signal and send the marked signal to the control modules inside the first body and the second body respectively to mark that the first body and the second body are correctly aligned. At this time, the first body and the second body are in the combined state;

[0058] When the first body and the second body are in the combined state, the first power supply serves as the main power supply module to supply power to the first body and the second body, and the second power supply serves as the backup power supply. When the electric energy of the first power supply is consumed, the second power supply supplies power to the first body and the second body; when the first body and the second body are in the combined state, the first control module sends a control instruction to the second control module. After receiving the control instruction, the second control module closes the power supply paths of the second power supply to the second distance sensor, the second wireless communication module, the second motion sensor, and the second calibration and comparison module. At this time, the second distance sensor, the second wireless communication module, the second motion sensor, and the second calibration and comparison module pause working. Then the second control module sends a first feedback instruction to the first control module. After receiving the first feedback instruction, the first control module switches the first power supply to supply power to the second control module and turns off the second power supply. Then the second control module checks whether the second power supply is turned off. If it is turned off, it sends a second feedback instruction to the first control module. After receiving the second feedback instruction, the first control module closes the power supply path of the first power supply to the second control module;

[0059] S3. Determine that at this time, the two ring bodies are in at least one of the abnormal connection state, the separated state, or the combined state.

[0060] As Figure 4 shown, it is a schematic diagram of the method for judging the abnormal connection state, the separated state, or the combined state of the present invention. For the described control method, step S3 specifically includes:

[0061] S31. Detect the distance value between the first distance sensor and the second distance sensor, and send the distance value to the first control module;

[0062] S32. After receiving the distance value, the first control compares the distance value with a first distance threshold and a second distance threshold, and determines the states of the two ring bodies according to the comparison result;

[0063] The step S32 specifically includes:

[0064] S321. If the distance value is less than the first distance threshold, it is determined that the two ring bodies are in an abnormal connection state at this time, and an abnormal connection prompt message is sent to the user through the vibration module vibrating;

[0065] S322. If the distance value is greater than the first distance threshold and less than the second distance threshold, it is determined that the two ring bodies are in a combined state at this time; the user can wear the two combined rings on different types of fingers of the same hand to realize data interaction of the intelligent ring control terminal device;

[0066] S323. If the distance value is greater than the second distance threshold, it is determined that the two ring bodies are in a separated state at this time. The user can wear the two separated rings on the same type of fingers of both hands to monitor the second motion data, and the two rings can be mutually corrected according to the second motion data.

[0067] The present invention provides an intelligent ring with monitoring data and a control method, which can realize free switching of three working modes of the intelligent ring through different combination modes of two bodies, and is convenient for data monitoring and data interaction in different modes through the intelligent ring. As the main improvement of the present invention, it overcomes the single working mode of the intelligent ring in the prior art, such as only monitoring motion data or being used alone as a device for data interaction. The present invention uses magnetic connection in two ring bodies as a mark, and can better realize free switching of different working modes and state transformation in cooperation with distance detection; as another improvement of the present invention, it can use different power supplies in different modes, especially in the combined state, using the first power supply for overall power supply and the second power supply as a backup, and orderly closing the corresponding modules in the second body through the first feedback signal and the second feedback signal, which can save electric energy while detecting data and improve the service life of the intelligent ring; as another improvement of the present invention, it realizes the correction of data in the separated state, which helps to distinguish different motion data in different motion states and reasonably corrects them to avoid errors in motion data.

Claims

1. An intelligent ring with monitoring data, characterized in that, It includes two ring bodies, the two ring bodies include a first body and a second body, and the two ring bodies can be combined, separated or assembled to form three working modes through combination, separation or assembly; When the two ring bodies are combined, the user wears the combined two rings on one finger to monitor the first motion data; When the two ring bodies are separated, the user wears the separated two rings on the same type of fingers of both hands to monitor the second motion data, and the two rings can be mutually corrected according to the second motion data; When the two ring bodies are assembled, the user wears the assembled two rings on different types of fingers of the same hand to realize data interaction between the intelligent ring and the control terminal device; a first magnetic component is arranged on the side of the first body, and a second magnetic component is arranged on the side of the second body, and the first magnetic component and the second magnetic component are combined in an attracting manner; the first magnetic component includes a first marked magnetic component and a first ordinary magnetic component, and the second magnetic component includes a second marked magnetic component and a second ordinary magnetic component. When the first marked magnetic component and the second marked magnetic component are aligned and attracted, a marked signal is generated, and the marked signal is respectively sent to the control modules inside the first body and the second body to mark that the first body and the second body are correctly aligned. At this time, the first body and the second body are in a combined state; when the first marked magnetic component and the second marked magnetic component are not aligned or not attracted, at this time, the two ring bodies are in at least one of an abnormal connection state, a separated state or an assembled state; through the magnetic connection in the two ring bodies as a mark, and in cooperation with distance detection, free switching between different working modes and state transformation are realized.

2. The intelligent ring with monitoring data according to claim 1, characterized in that A first control module and a first distance sensor are arranged inside the first body, and a second control module and a second distance sensor are arranged inside the second body. The first control module first judges whether the first marked magnetic component is aligned and attracted to the second marked magnetic component; If so, it is judged that the first body and the second body are in a combined state at this time, then the second control module, the first distance sensor and the second distance sensor are turned off, and the combined first body and second body are uniformly controlled by the first control module to monitor the first motion data; If not, the distance value between the first distance sensor and the second distance sensor is judged. If the distance value is less than a first distance threshold, it is determined that the two ring bodies are in an abnormal connection state at this time, and an abnormal connection prompt message is sent to the user; if the distance value is greater than the first distance threshold and less than a second distance threshold, it is determined that the two ring bodies are in an assembled state at this time; if the distance value is greater than the second distance threshold, it is determined that the two ring bodies are in a separated state.

3. The intelligent ring with monitoring data according to claim 1, characterized in that, The first body includes a first control module, a first distance sensor, a first power supply, a first indicator light, a vibration module, a first wireless communication module, a first motion sensor, and a first calibration and comparison module; the second body includes a second control module, a second distance sensor, a second power supply, a second wireless communication module, a second motion sensor, and a second calibration and comparison module.

4. The intelligent ring with monitoring data according to claim 3, characterized in that, The first power supply can be connected to the second power supply through the external interface of the first body; when the first body and the second body are in the combined state, the first power supply serves as the main power supply module to supply power to the first body and the second body, and the second power supply serves as the backup power supply. When the power of the first power supply is exhausted, the second power supply supplies power to the first body and the second body; when the first body and the second body are in the combined state, the first control module sends a control instruction to the second control module. After receiving the control instruction, the second control module closes the power supply paths of the second power supply to the second distance sensor, the second wireless communication module, the second motion sensor, and the second calibration and comparison module. At this time, the second distance sensor, the second wireless communication module, the second motion sensor, and the second calibration and comparison module suspend operation. Then, the second control module sends a first feedback instruction to the first control module. After receiving the first feedback instruction, the first control module switches the first power supply to supply power to the second control module, closes the second power supply, and then the second control module checks whether the second power supply is closed. If it is closed, it sends a second feedback instruction to the first control module. After receiving the second feedback instruction, the first control module closes the power supply path of the first power supply to the second control module.

5. The intelligent ring with monitoring data according to claim 3, characterized in that, The first calibration and comparison module is configured to receive the first motion data of the first motion sensor and receive the second motion data of the second motion sensor through the first wireless communication module, compare the first motion data and the second motion data to form first comparison deviation data, and correct the motion data according to the first comparison deviation data; alternatively, the second calibration and comparison module is configured to receive the second motion data of the second motion sensor and receive the first motion data of the first motion sensor through the second wireless communication module, compare the second motion data and the first motion data to form second comparison deviation data, and correct the motion data according to the second comparison deviation data.

6. The intelligent ring with monitoring data according to claim 3, wherein, The first indicator light is used to indicate the modes of the first body and the second body, and represents three different modes through three different colors; the vibration module is used to prompt the user of an abnormal connection state.

7. The intelligent ring with monitoring data according to claim 6, wherein, When the first indicator light shows red, it means that the first body and the second body are in the combined working mode; when the first indicator light shows green, it means that the first body and the second body are in the separated working mode; when the first indicator light shows yellow, it means that the first body and the second body are in the combined working mode.

8. A control method for an intelligent ring with monitoring data as described in any one of claims 1-7, characterized in that, It includes the following steps: S1. Determine whether the first marked magnetic component and the second marked magnetic component are aligned and attracted to each other. If so, execute step S2; if not, execute step S3; S2. Generate a marked signal and send the marked signal to the control modules inside the first body and the second body respectively to mark that the first body and the second body are correctly aligned. At this time, the first body and the second body are in a combined state; When the first body and the second body are in a combined state, the first power supply serves as the main power supply module to supply power to the first body and the second body, and the second power supply serves as the backup power supply. When the electric energy of the first power supply is consumed, the second power supply supplies power to the first body and the second body; when the first body and the second body are in a combined state, the first control module sends a control instruction to the second control module. After receiving the control instruction, the second control module closes the power supply paths of the second power supply to the second distance sensor, the second wireless communication module, the second motion sensor, and the second calibration comparison module. At this time, the second distance sensor, the second wireless communication module, the second motion sensor, and the second calibration comparison module suspend operation. Then the second control module sends a first feedback instruction to the first control module. After receiving the first feedback instruction, the first control module switches the first power supply to supply power to the second control module and turns off the second power supply. Then the second control module checks whether the second power supply is turned off. If it is turned off, it sends a second feedback instruction to the first control module. After receiving the second feedback instruction, the first control module closes the power supply path of the first power supply to the second control module; S3. Determine that the two finger ring bodies are in at least one of an abnormal connection state, a separated state, and a combined state at this time.

9. The control method according to claim 8, wherein, The specific steps of step S3 include: S31. Detect the distance value between the first distance sensor and the second distance sensor and send the distance value to the first control module; S32. After receiving the distance value, the first control module compares the distance value with a first distance threshold and a second distance threshold and determines the state of the two finger ring bodies according to the comparison result; The specific steps of step S32 include: S321. If the distance value is less than the first distance threshold, determine that the two finger ring bodies are in an abnormal connection state at this time, and send an abnormal connection prompt message to the user through the vibration module; S322. If the distance value is greater than the first distance threshold and less than the second distance threshold, determine that the two finger ring bodies are in a combined state at this time; the user can wear the two combined finger rings on different types of fingers of the same hand to realize data interaction of the intelligent ring control terminal device; S323. If the distance value is greater than the second distance threshold, determine that the two finger ring bodies are in a separated state at this time. The user can wear the two separated finger rings on the same type of fingers of two hands to monitor second motion data, and the two finger rings can be mutually calibrated according to the second motion data.

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