Intelligent linkage electronic device

By using intelligent electronic devices, sensors and audio modules inside the shoe detect data and switch modes to provide feedback, the problem of traditional smart running shoes being unable to provide real-time feedback is solved, enabling users to directly adjust their movements during exercise with convenience and real-time capability.

CN223682055UActive Publication Date: 2025-12-191MORE ACOUSTIC TECH CO LTD
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Patent Information

Application Number
CN202422857219.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2025-12-19
Estimated Expiration
2034-11-22

AI Technical Summary

Technical Problem

Traditional smart running shoes cannot provide users with real-time exercise information; users need to stop exercising to obtain relevant information, which is inconvenient.

Method used

Design an intelligent linkage electronic device, including a wireless communication unit, a processor, a sensor module, an audio module, and a light-emitting module, which can switch between sports mode and audio mode, and provide real-time feedback on the shoe status or surrounding audio sounds through the light-emitting module, so as to achieve direct and timely feedback of information.

Benefits of technology

Users can directly and in real time adjust their movements during exercise to achieve sports health management or entertainment purposes, improving the convenience and real-time nature of information access.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an intelligent linkage electronic device which is used for being embedded or attached to a shoe body and comprises a wireless communication unit, a processor, a sensor module, an audio module and a light emitting module. When the intelligent linkage electronic device is in a motion light-emitting mode, the sensor module is used for sensing the state of the shoe body and generating corresponding sensor data; when the intelligent linkage electronic device is in the audio light-emitting mode, the audio module is used for sensing audio sound of the surrounding environment and generating corresponding audio data; the wireless communication unit is used for sending the sensor data and the audio data to the control end and receiving a light emitting instruction sent by the control end in response to the sensor data or the audio data; and the light emitting module is used for emitting light according to the light emitting instruction. According to the intelligent linkage electronic device, the shoe body state information or lamplight related to surrounding audio sound is fed back to a user in time through the light-emitting module, and the user can conveniently and directly adjust own actions in real time according to the lamplight emitted by the light-emitting module.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of intelligent footwear systems, and in particular to an intelligent linkage electronic device. BACKGROUND

[0002] With the continuous improvement of people's living standards, people's concern for their own health is increasing. The development of science and technology enables people to use various scientific and technological products to monitor their own health indicators, helping people to manage and improve their health level. Portable body index and sports index intelligent monitors are widely used by people, and intelligent running shoes are one of them. The traditional intelligent running shoes collect the motion state information of the runner through the sensors installed in the shoe body, and send it to the electronic terminal. The electronic terminal analyzes and processes the motion state information to obtain the corresponding motion information and / or physical health information, and presents it to the runner in a certain form. The runner generally needs to stop running to obtain the relevant information from the electronic terminal. The traditional intelligent running shoes are generally only collectors of user information and cannot directly present information to the user. It is inconvenient for the user to directly and timely obtain information from the intelligent running shoes in order to adjust their own motion actions for the purpose of sports health or entertainment. SUMMARY

[0003] Therefore, it is necessary to provide an intelligent linkage electronic device that can conveniently and timely feedback information to the user.

[0004] An intelligent linkage electronic device for embedding or attaching to a shoe body, comprising a wireless communication unit, a processor, a sensor module, an audio module, and a light-emitting module;

[0005] The processor comprises a judgment circuit, a sensing start circuit, and an audio start circuit. The judgment circuit is used to judge whether the intelligent linkage electronic device is in a motion light-emitting mode or an audio light-emitting mode.

[0006] The sensing start circuit is used to control the sensor module to sense the state of the shoe body and generate corresponding sensor data when the intelligent linkage electronic device is in the motion light-emitting mode. The wireless communication unit is used to send the sensor data to the control terminal.

[0007] The audio start circuit is used to control the audio module to sense the audio sound of the surrounding environment and generate corresponding audio data when the intelligent linkage electronic device is in the audio light-emitting mode. The wireless communication unit is also used to send the audio data to the control terminal.

[0008] The wireless communication unit is also used to receive the light-emitting instruction sent by the control terminal in response to the sensor data or the audio data.

[0009] The light-emitting module is configured to emit light according to the light-emitting instruction.

[0010] The smart linkage electronic device of the embodiment is configured to be embedded in or attached to a shoe body. A sensor module senses a state of the shoe body and generates corresponding sensor data. An audio module senses audio sounds of a surrounding environment and generates corresponding audio data. The smart linkage electronic device can be switched between a motion mode and an audio mode. A control end processes the sensor data or the audio data and generates corresponding light-emitting instructions. A light-emitting module is configured to emit light according to the light-emitting instructions. The smart linkage electronic device can timely feed back, to a user, information about the state of the shoe body or the audio sounds of the surrounding environment through the light-emitting module. The user can directly adjust actions in real time according to the light emitted by the light-emitting module, so as to achieve the purpose of motion health management or entertainment.

[0011] In one embodiment, the wireless communication unit is further configured to receive a light-emitting mode instruction sent by the control end, the light-emitting mode instruction including a motion mode instruction and an audio mode instruction.

[0012] When the wireless communication unit receives the motion mode instruction, the judgment circuit determines that the smart linkage electronic device is in a motion light-emitting mode. When the wireless communication unit receives the audio mode instruction, the judgment circuit determines that the smart linkage electronic device is in an audio light-emitting mode.

[0013] In one embodiment, the smart linkage electronic device further includes a mode setting component configured to receive or sense a user operation and generate a corresponding light-emitting mode signal. The judgment circuit is configured to determine whether the smart linkage electronic device is in the motion light-emitting mode or the audio light-emitting mode according to the light-emitting mode signal.

[0014] In one embodiment, the sensor module includes a pressure sensor and a pressure sensor interface unit. The pressure sensor is configured to sense a pressure received by the shoe body and generate a pressure signal. The pressure sensor interface unit is configured to receive the pressure signal sent by the pressure sensor and generate corresponding pressure data. The wireless communication unit is configured to send the pressure data to the control end.

[0015] The wireless communication unit is further configured to receive a light-emitting instruction sent by the control end after identifying, in a first preset mode, a pressure value corresponding to the pressure data. The greater the pressure value, the brighter the light indicated by the light-emitting instruction.

[0016] The light-emitting module is configured to receive the light-emitting instruction and generate corresponding light.

[0017] In one embodiment, the wireless communication unit is further configured to receive a light-emitting instruction sent by the control end in response to the control end identifying whether the footstep rhythm corresponding to the pressure data matches a specified music rhythm in the second preset mode, and the light-emitting instruction is configured to instruct to generate a first preset type of light if the footstep rhythm corresponding to the pressure data matches the specified music rhythm, or to generate a second preset type of light if the footstep rhythm corresponding to the pressure data does not match the specified music rhythm.

[0018] In one embodiment, the sensor module includes a motion sensor configured to sense a motion state of the shoe body and generate a motion signal, and a motion sensor interface unit configured to receive the motion signal sent by the motion sensor and generate corresponding motion data, and the wireless communication unit is configured to send the motion data to the control end.

[0019] The wireless communication unit is further configured to receive a light-emitting instruction sent by the control end in response to the control end identifying a motion speed corresponding to the motion data, and the light-emitting instruction is configured to instruct to generate brighter light as the motion speed is greater.

[0020] The light-emitting module is configured to receive the light-emitting instruction and generate corresponding light.

[0021] In one embodiment, the light-emitting instruction is further configured to instruct to generate light of a first preset color when the motion speed is greater than or equal to a preset first threshold, to generate light of a second preset color when the motion speed is less than the preset first threshold and greater than a preset second threshold, and to turn off the light when the motion speed is less than or equal to the preset second threshold, and the preset first threshold is greater than the preset second threshold.

[0022] In one embodiment, the sensor module includes a multi-spectrum sensor configured to sense ambient light and generate a corresponding light signal, and a light spectrum sensor interface unit configured to receive the light signal sent by the multi-spectrum sensor and generate corresponding light data, and the wireless communication unit is configured to send the light data to the control end.

[0023] The wireless communication unit is further configured to receive a light-emitting instruction sent by the control end in response to the light data, and the light-emitting instruction is configured to instruct to generate light with brightness and color adapted to the light data to meet a predetermined visibility condition, and the light-emitting module is configured to receive the light-emitting instruction and generate light with brightness and color adapted to the light data.

[0024] In one embodiment, the audio module comprises a microphone and an audio converter configured to convert an analog signal generated by the microphone into audio data; the wireless communication unit is configured to send the audio data to the control terminal; the wireless communication unit is further configured to receive a light-emitting instruction sent by the control terminal in response to the audio data in a third preset mode, the light-emitting instruction being configured to instruct to generate light with a lighting rhythm matching a music rhythm corresponding to the audio data; and the light-emitting module is configured to receive the light-emitting instruction and generate light with a lighting rhythm matching the music rhythm corresponding to the audio data.

[0025] In one embodiment, the wireless communication unit is further configured to receive a light-emitting instruction corresponding to a preset category sent by the control terminal in response to the audio data in a fourth preset mode, the light-emitting instruction being configured to instruct to generate light corresponding to the preset category.

[0026] The light-emitting module is configured to receive the light-emitting instruction and generate light corresponding to the preset category.

[0027] In one embodiment, the shoe body further comprises an insole layer and a shoe bottom part, the insole layer being arranged on the shoe bottom part;

[0028] The pressure sensor is embedded in the shoe bottom part and arranged close to the insole layer, and is configured to sense pressure received by the insole layer and generate a pressure signal. BRIEF DESCRIPTION OF DRAWINGS

[0029] The accompanying drawings, which form a part of the present application, are intended to provide further understanding of the present application, and are used to interpret the specific embodiments of the present application and their descriptions, and do not constitute improper limitations to the present application.

[0030] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the accompanying drawings needed to be used in the embodiment description will be briefly introduced. Obviously, the accompanying drawings in the following description are only some embodiments of the present application, and other accompanying drawings can be obtained by those skilled in the art without any creative effort on the basis of these accompanying drawings.

[0031] Figure 1 A structural schematic diagram of an intelligent linkage electronic device in one embodiment;

[0032] Figure 2 A structural schematic diagram of an intelligent linkage electronic device in one embodiment;

[0033] Figure 3 A structural schematic diagram of a sensor module in one embodiment;

[0034] Figure 4A structural schematic diagram of a sensor module in one embodiment;

[0035] Figure 5 A structural schematic diagram of a sensor module in one embodiment;

[0036] Figure 6 A structural schematic diagram of an audio module in one embodiment. DETAILED DESCRIPTION

[0037] In order to make the above objectives, features and advantages of the present application more apparent, specific embodiments of the present application will be described in detail below with reference to the accompanying drawings. The specific embodiments set forth below are offered to more fully enable those skilled in the art to practice the application. However, the application is not limited to the embodiments disclosed below, and one skilled in the art will recognize that modifications and variations can be made without departing from the spirit of the application.

[0038] As shown in Figure 1 In one embodiment, an intelligent linkage electronic device 10 for embedding or attaching to a shoe body includes a wireless communication unit 101, a processor 102, a sensor module 103, an audio module 104, and a light-emitting module 105. The processor 102 includes a judgment circuit 1022, a sensing start circuit 1024, and an audio start circuit 1026. The judgment circuit 1022 is configured to determine whether the intelligent linkage electronic device 10 is in a motion light-emitting mode or an audio light-emitting mode. The sensing start circuit 1024 is configured to control the sensor module 103 to sense a state of the shoe body and generate corresponding sensor data when the intelligent linkage electronic device 10 is in the motion light-emitting mode. The wireless communication unit 101 is configured to send the sensor data to a control terminal. The audio start circuit 1026 is configured to control the audio module 104 to sense audio sounds of a surrounding environment and generate corresponding audio data when the intelligent linkage electronic device 10 is in the audio light-emitting mode. The wireless communication unit 101 is further configured to send the audio data to the control terminal. The wireless communication unit 101 is further configured to receive a light-emitting instruction sent by the control terminal in response to the sensor data or the audio data. The light-emitting module 105 is configured to emit light according to the light-emitting instruction.

[0039] The wireless communication unit 101 can communicate with the control terminal wirelessly through a Bluetooth communication mode or a wireless local area network communication mode (Wi-Fi communication mode). The light-emitting module 105 can include an LED light-emitting module, and specifically, the light-emitting module 105 can include a plurality of LED lamp beads.

[0040] The smart linkage electronic device of the embodiment is used for being embedded or attached to the shoe body. The sensor module senses the state of the shoe body and generates corresponding sensor data. The audio module senses the audio sound of the surrounding environment and generates corresponding audio data. The smart linkage electronic device can be switched between the motion mode and the audio mode. The control end processes the sensor data or the audio data and generates corresponding light-emitting instructions. The light-emitting module is used for emitting light according to the light-emitting instructions. The smart linkage electronic device can feed back the light related to the shoe body state information or the surrounding audio sound to the user in time through the light-emitting module, so as to facilitate the user to directly adjust the action of the user in real time according to the light emitted by the light-emitting module, so as to achieve the purpose of motion health management or entertainment.

[0041] In one embodiment, the wireless communication unit 101 is also used for receiving the light-emitting mode instruction sent by the control end. The light-emitting mode instruction includes the motion mode instruction and the audio mode instruction.

[0042] When the wireless communication unit 101 receives the motion mode instruction, the judgment circuit 1022 judges that the smart linkage electronic device 10 is in the motion light-emitting mode. When the wireless communication unit 101 receives the audio mode instruction, the judgment circuit 1022 judges that the smart linkage electronic device 10 is in the audio light-emitting mode. In the embodiment, the user can set the light-emitting mode through the control end, so that the control end generates the light-emitting mode instruction to instruct the light-emitting module to emit light based on the sensor module or based on the audio module.

[0043] In another embodiment, as shown in Figure 2 The smart linkage electronic device 10 further includes a mode setting component 106 for receiving or sensing the user operation and generating corresponding light-emitting mode signals. The judgment circuit 1022 is used for judging whether the smart linkage electronic device 10 is in the motion light-emitting mode or the audio light-emitting mode according to the light-emitting mode signals. For example, the mode setting component 106 can be an adjuster with at least two gears. One gear corresponds to the motion light-emitting mode, and the other gear corresponds to the audio light-emitting mode. The user can switch between the two gears. When the mode setting component 106 is adjusted to the motion light-emitting mode gear, the motion mode signal can be generated. The judgment circuit 1022 judges that the smart linkage electronic device 10 is in the motion light-emitting mode. When the mode setting component 106 is adjusted to the audio light-emitting mode gear, the audio mode signal can be generated. The judgment circuit 1022 judges that the smart linkage electronic device 10 is in the audio light-emitting mode.

[0044] As shown in Figure 3As shown, in one embodiment, the sensor module 103 comprises a pressure sensor 1031 for sensing the pressure received by the shoe body and generating a pressure signal, and a pressure sensor interface unit 1032 for receiving the pressure signal sent by the pressure sensor 1031 and generating corresponding pressure data, and the wireless communication unit 101 is configured to send the pressure data to the control end; in the first preset mode, after receiving the pressure data sent by the wireless communication unit 101, the control end identifies the pressure value corresponding to the pressure data, generates and sends corresponding light-emitting instructions, and the greater the pressure value, the brighter the light-emitting instructions are used to indicate the light generated.

[0045] The wireless communication unit 101 is also configured to receive the light-emitting instructions sent by the control end after identifying the pressure value corresponding to the pressure data in the first preset mode.

[0046] The light-emitting module 105 is configured to receive the light-emitting instructions and generate corresponding light. For example, in one scenario, the light-emitting module 105 displays increasingly bright light during the process of the user's movement touching the ground, and increasingly dark light during the process of the user's movement leaving the ground.

[0047] In one embodiment, in the second preset mode, after receiving the pressure data sent by the wireless communication unit 101, the control end identifies whether the stepping rhythm corresponding to the pressure data matches the specified music rhythm, and generates and sends corresponding light-emitting instructions, if the stepping rhythm corresponding to the pressure data matches the specified music rhythm, the light-emitting instructions are used to indicate the generation of the first preset category of light, if not, the light-emitting instructions are used to indicate the generation of the second preset category of light; further, the wireless communication unit 101 is also configured to receive the light-emitting instructions sent by the control end, and the light-emitting module 105 is configured to emit light according to the light-emitting instructions.

[0048] It is worth noting that the control end can provide a selection interface or a selection interface for the user to select whether the control end works in the first preset mode or in the second preset mode.

[0049] As Figure 4As shown, in one embodiment, the sensor module 103 comprises a motion sensor 1033 for sensing the motion state of the shoe body and generating a motion signal, and a motion sensor interface unit 1034 for receiving the motion signal sent by the motion sensor 1033 and generating corresponding motion data, and the wireless communication unit 101 is configured to send the motion data to the control terminal; the wireless communication unit 101 is also configured to receive a light-emitting instruction sent by the control terminal after identifying the motion speed corresponding to the motion data, and the greater the motion speed, the brighter the light-emitting instruction is used to indicate the light; the light-emitting module 105 is configured to receive the light-emitting instruction and generate corresponding light. The motion sensor can include one or both of an accelerometer and a gyroscope sensor for collecting foot movement direction and speed and other foot movement data.

[0050] In one embodiment, the light-emitting instruction is also used to indicate the generation of a first preset color of light when the motion speed is greater than or equal to a first preset threshold, the generation of a second preset color of light when the motion speed is less than the first preset threshold and greater than a second preset threshold, and the extinguishing of the light when the motion speed is less than or equal to the second preset threshold, the first preset threshold being greater than the second preset threshold.

[0051] For example, in one scenario, the user is running on a treadmill, and when running fast, the light-emitting module 105 can display red, and the greater the running speed, the higher the brightness; when running slowly, the light-emitting module 105 can display green, and the smaller the running speed, the lower the brightness; and after the running stops, the light-emitting module 105 is extinguished.

[0052] As shown, Figure 5 As shown, in one embodiment, the sensor module 103 comprises a multi-spectrum sensor 1035 for sensing ambient light and generating a corresponding light signal, and a light spectrum sensor interface unit 1036 for receiving the light signal sent by the multi-spectrum sensor 1035 and generating corresponding light data; the wireless communication unit 101 is configured to send the light data to the control terminal; the wireless communication unit 101 is also configured to receive a light-emitting instruction sent by the control terminal in response to the light data, the light-emitting instruction being used to indicate the generation of light with brightness and color adapted to the light data to meet a predetermined visibility condition, and the light-emitting module 105 is configured to receive the light-emitting instruction and generate light with brightness and color adapted to the light data. The intelligent linkage electronic device 10 of the present embodiment can automatically adjust the brightness and color of the light emitted by the light-emitting module 105 according to the color and intensity of the ambient light, and can ensure that the light emitted by the light-emitting module 105 is clearly visible under different ambient light conditions.

[0053] In one embodiment, the sensor module 103 may include one, two, or three of the following combinations: a combination of a pressure sensor 1031 and a pressure sensor interface unit 1032; a combination of a motion sensor 1033 and a motion sensor interface unit 1034; and a combination of a multispectral sensor 1035 and a spectral sensor interface unit 1036. The control terminal may provide a selection interface or selection screen for the user to select which of the three combinations' data to process.

[0054] like Figure 6 As shown, in one embodiment, the audio module 104 includes a microphone 1042 and an audio converter 1044. The audio converter 1044 is used to convert the analog signal generated by the microphone 1042 into audio data. The wireless communication unit 101 is used to send the audio data to the control terminal. In a third preset mode, after receiving the audio data, the control terminal extracts the audio feature data related to the music rhythm corresponding to the audio data, generates and sends a light-emitting command based on the audio feature data, and the light-emitting command is used to instruct the generation of lights with a lighting rhythm matching the music rhythm corresponding to the audio data. The wireless communication unit 101 is also used to receive the light-emitting command sent by the control terminal in response to the audio data. The light-emitting module 105 is used to receive the light-emitting command and generate lights with a lighting rhythm matching the music rhythm corresponding to the audio data. The audio converter 1044 may include a preamplifier and an analog-to-digital converter. The preamplifier is used to amplify the analog signal generated by the microphone 1042, and the analog-to-digital converter (ADC) is used to convert the analog signal into audio data. In this embodiment, the music rhythm or beat of the surrounding environment can be reflected in the light-emitting module of the smart electronic shoe device. The smart linkage electronic device embedded or attached to the shoe body uses light effects to reflect the music rhythm or beat, so that the smart linkage electronic device can provide real-time feedback to the user. In one embodiment, the control terminal can use a preset sound-controlled rhythm algorithm to identify changes in the music rhythm or beat corresponding to the audio data, and further generate and send light-emitting commands.

[0055] In one embodiment, in the fourth preset mode, after the control end receives the audio data sent by the wireless communication unit 101, the control end identifies the preset category corresponding to the audio data, and generates and sends a light-emitting instruction corresponding to the preset category; the wireless communication unit 101 is further configured to receive the light-emitting instruction corresponding to the preset category sent by the control end after the control end identifies the preset category corresponding to the audio data, and the light-emitting instruction is used to instruct to generate light corresponding to the preset category; the light-emitting module 105 is configured to receive the light-emitting instruction and generate light corresponding to the preset category. For example, in one scenario, the user is playing a certain type of game, and the game end (i.e., the electronic terminal running the game APP) will issue related sound effects at the pass-through link. For example, a pass-through success will issue a sound effect indicating a pass-through success, and a pass-through failure will correspondingly issue a sound effect indicating a pass-through failure. The microphone 1042 collects these sound effect vibrations and generates corresponding analog signals, and the audio converter 1044 converts the analog signals generated by the microphone 1042 into audio data, and the wireless communication unit 101 is configured to send the audio data to the control end; in the fourth preset mode, after the control end receives the audio data sent by the wireless communication unit 101, the control end identifies whether the preset category corresponding to the audio data belongs to the category indicating a pass-through failure or the category indicating a pass-through success; if the preset category corresponding to the audio data belongs to the category indicating a pass-through failure, a light-emitting instruction indicating a light indicating a pass-through failure is generated, for example, the light-emitting instruction instructs the light to be extinguished slowly; if the preset category corresponding to the audio data belongs to the category indicating a pass-through success, a light-emitting instruction indicating a light indicating a pass-through success is generated, for example, the light-emitting instruction instructs to emit a full-color light with a full score and the light to flash continuously; the control end further sends the light-emitting instruction to the wireless communication unit 101; the wireless communication unit 101 receives the light-emitting instruction, and the light-emitting module 105 emits corresponding light according to the light-emitting instruction.

[0056] It is worth noting that the control end can provide a selection interface or a selection interface for the user to select whether the control end works in the third preset mode or the fourth preset mode.

[0057] In one embodiment, the shoe body further comprises a shoe pad layer and a shoe sole part, the shoe pad layer covers the shoe sole part; the pressure sensor 1031 is embedded in the shoe sole part and is arranged close to the shoe pad layer, and is configured to sense the pressure received by the shoe pad layer and generate a pressure signal. In this embodiment, the thin film of the pressure sensor 1031 is arranged close to the shoe pad layer, which can more sensitively sense the pressure applied by each part of the foot, thereby improving the sensing accuracy.

[0058] In the description of the application, it should be understood that, if there are terms such as "first", "second" and the like, these terms are only used for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first", "second" can be explicitly or implicitly included at least one of the features. In the description of the application, if the term "a plurality of" appears, the meaning of "a plurality of" is at least two, for example, two, three, etc., unless otherwise specifically limited.

[0059] The technical features of the above embodiments can be combined in any way. In order to make the description simple, all possible combinations of the technical features in the above embodiments are not described, but as long as the combination of the technical features does not exist contradictory, it should be considered as the scope of the description.

[0060] The above embodiments only express several implementation manners of the application, and the description is more specific and detailed, but it should not be understood as a limitation on the scope of the patent application. It should be pointed out that for those skilled in the art, without departing from the concept of the application, a number of modifications and improvements can be made, which are all within the protection scope of the application. Therefore, the protection scope of the patent of the application should be subject to the appended claims.

Claims

1. An intelligent linkage electronic device for embedding or attaching to a shoe body, characterized in that, The wireless communication unit, the processor, the sensor module, the audio module and the light-emitting module are included; The processor includes a judgment circuit, an induction starting circuit and an audio starting circuit, the judgment circuit is used for judging whether the smart linkage electronic device is in a motion light-emitting mode or an audio light-emitting mode; The induction starting circuit is used for controlling the sensor module to sense the state of the shoe body and generate corresponding sensor data when the smart linkage electronic device is in the motion light-emitting mode, and the wireless communication unit is used for sending the sensor data to the control terminal; The audio starting circuit is used for controlling the audio module to sense the audio sound of the surrounding environment and generate corresponding audio data when the smart linkage electronic device is in the audio light-emitting mode, and the wireless communication unit is further used for sending the audio data to the control terminal; The wireless communication unit is further used for receiving the light-emitting instruction sent by the control terminal in response to the sensor data or the audio data; The light-emitting module is used for emitting light according to the light-emitting instruction.

2. The intelligent linked electronic device of claim 1, wherein, The wireless communication unit is further used for receiving the light-emitting mode instruction sent by the control terminal, and the light-emitting mode instruction includes a motion mode instruction and an audio mode instruction; When the wireless communication unit receives the motion mode instruction, the judgment circuit determines that the smart linkage electronic device is in the motion light-emitting mode; and when the wireless communication unit receives the audio mode instruction, the judgment circuit determines that the smart linkage electronic device is in the audio light-emitting mode. 3.The intelligent linkage electronic device according to claim 1, wherein, The smart linkage electronic device further includes a mode setting component for receiving or sensing a user operation and generating a corresponding light-emitting mode signal, and the judgment circuit is used for judging whether the smart linkage electronic device is in the motion light-emitting mode or the audio light-emitting mode according to the light-emitting mode signal.

4. The intelligent linked electronic device of claim 1, wherein, The sensor module includes a pressure sensor and a pressure sensor interface unit, the pressure sensor is used for sensing the pressure received by the shoe body and generating a pressure signal, the pressure sensor interface unit is used for receiving the pressure signal sent by the pressure sensor and generating corresponding pressure data, and the wireless communication unit is used for sending the pressure data to the control terminal; The wireless communication unit is further used for receiving the light-emitting instruction sent by the control terminal after identifying the pressure value corresponding to the pressure data in a first preset mode, and the greater the pressure value is, the brighter the light indicated by the light-emitting instruction is; The light-emitting module is used for receiving the light-emitting instruction and generating corresponding light.

5. The intelligent linked electronic device of claim 4, wherein, The wireless communication unit is further used for receiving the light-emitting instruction sent by the control terminal after identifying whether the foot-tapping rhythm corresponding to the pressure data matches a specified music rhythm in a second preset mode, and if the foot-tapping rhythm corresponding to the pressure data matches the specified music rhythm, the light-emitting instruction is used for indicating to generate a first preset category of light, and if not, the light-emitting instruction is used for indicating to generate a second preset category of light. 6.The intelligent linked electronic device of claim 1, wherein, The sensor module comprises a motion sensor and a motion sensor interface unit, the motion sensor is configured to sense a motion state of the shoe body and generate a motion signal, and the motion sensor interface unit is configured to receive the motion signal sent by the motion sensor and generate corresponding motion data, and the wireless communication unit is configured to send the motion data to the control terminal; The wireless communication unit is further configured to receive a light-emitting instruction sent by the control terminal after identifying the motion speed corresponding to the motion data, and the greater the motion speed, the brighter the light-emitting instruction indicates to generate the light; The light-emitting module is configured to receive the light-emitting instruction and generate corresponding light.

7. The intelligent linked electronic device of claim 6, wherein, The light-emitting instruction is further configured to indicate to generate light of a first preset color when the motion speed is greater than or equal to a first preset threshold, to generate light of a second preset color when the motion speed is less than the first preset threshold and greater than a second preset threshold, and to turn off the light when the motion speed is less than or equal to the second preset threshold, the first preset threshold being greater than the second preset threshold.

8. The intelligent linked electronic device of claim 1, wherein, The sensor module comprises a multi-spectrum sensor and a spectrum sensor interface unit, the multi-spectrum sensor is configured to sense ambient light and generate corresponding light signals, and the spectrum sensor interface unit is configured to receive the light signals sent by the multi-spectrum sensor and generate corresponding light data; the wireless communication unit is configured to send the light data to the control terminal; The wireless communication unit is further configured to receive a light-emitting instruction sent by the control terminal in response to the light data, the light-emitting instruction being configured to indicate to generate light with brightness and color adapted to the light data to meet a predetermined visibility condition, and the light-emitting module is configured to receive the light-emitting instruction and generate light with brightness and color adapted to the light data.

9. The intelligent linked electronic device of claim 1, wherein, The audio module comprises a microphone and an audio converter, the audio converter is configured to convert an analog signal generated by the microphone into audio data; the wireless communication unit is configured to send the audio data to the control terminal; the wireless communication unit is further configured to receive a light-emitting instruction sent by the control terminal in a third preset mode in response to the audio data, the light-emitting instruction being configured to indicate to generate light with a lighting rhythm matching a music rhythm corresponding to the audio data; and the light-emitting module is configured to receive the light-emitting instruction and generate light with a lighting rhythm matching the music rhythm corresponding to the audio data. 10.The intelligent linkage electronic device of claim 9, wherein, The wireless communication unit is further configured to receive a light-emitting instruction corresponding to a preset category sent by the control terminal in a fourth preset mode after identifying the preset category corresponding to the audio data, the light-emitting instruction being configured to indicate to generate light corresponding to the preset category; The light-emitting module is configured to receive the light-emitting instruction and generate light corresponding to the preset category.