Heating garment capable of automatically adjusting temperature and control method thereof

By integrating temperature sensors and attitude sensors in heated clothing, the automatic temperature adjustment function of heated clothing is realized, solving the problem that existing heated clothing cannot adapt to the temperature needs of different scenarios, and improving user comfort and user experience.

CN120052627APending Publication Date: 2025-05-30SUZHOU JERNANO CARBON CO LTD
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Patent Information

Application Number
CN202510239878.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-03
Publication Date
2025-05-30

AI Technical Summary

Technical Problem

Existing heating clothing cannot be automatically adjusted, resulting in the inability to provide the most suitable heating temperature in different usage scenarios, and the use effect is poor.

Method used

A heating garment including a garment body, a heating part and a adjustment control part is designed. By providing a first temperature sensor on the heating part, a second temperature sensor and a attitude sensor are provided on the adjustment control part, the heating power of the heating part is automatically adjusted using the data of these sensors.

Benefits of technology

Automatic temperature adjustment under different sports conditions and ambient temperatures is achieved, ensuring that the user is in a comfortable temperature adaptation, avoiding overheating or overcooling, and improving the user's user experience.

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Abstract

The invention provides a heating garment capable of automatically adjusting temperature and a control method thereof, and relates to the technical field of heating garments. The heating garment capable of automatically adjusting the temperature comprises a garment body, a heating piece and an adjusting control piece. The adjusting control piece is connected with the heating piece; a first temperature sensor used for detecting the temperature inside the clothes is arranged on the heating piece, and a second temperature sensor used for detecting the temperature of the external environment and a posture sensor used for detecting the motion state of a user are arranged on the adjusting control piece. The control method of the heating clothes capable of automatically adjusting the temperature comprises the following steps: acquiring a weighted average of a plurality of first temperature sensors, and acquiring data of a second temperature sensor; data of the attitude sensor are obtained, if the adjusting control part judges that the user is in the strenuous motion state, the adjusting control part controls the heating part to stop working, and otherwise, the adjusting control part automatically adjusts the heating power of the heating part according to data of the second temperature sensor. The technical effect that the temperature of the heating garment can be automatically adjusted is achieved.
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Description

Technical Field

[0001] The present invention relates to the technical field of heating clothing, and more particularly, to a heating garment capable of automatically adjusting temperature and its control method. Background Art

[0002] Electric heating clothing has become increasingly common in people's lives. People tend to have a light clothing experience in some cold environments. At present, most electric heating clothes can only set fixed temperature gears, and the fixed temperature cannot meet the most suitable heating temperature requirements of users in different usage scenarios, either being too hot or too cold, resulting in poor usage effects. Summary of the Invention

[0003] The purpose of the present invention is to provide a heating garment capable of automatically adjusting temperature and its control method to alleviate the technical problem that heating clothing in the prior art cannot automatically adjust temperature.

[0004] In a first aspect, an embodiment of the present invention provides a heating garment capable of automatically adjusting temperature, including a garment body, a heating element, and an adjustment control element;

[0005] The heating element is arranged on the garment body, the adjustment control element is arranged on the garment body, and the adjustment control element is connected to the heating element;

[0006] A first temperature sensor for detecting the temperature inside the clothes is arranged on the heating element, a second temperature sensor for detecting the external environmental temperature and an attitude sensor for detecting the user's movement state are arranged on the adjustment control element;

[0007] The adjustment control element is provided with a trigger control element for the user to use.

[0008] In combination with the first aspect, an embodiment of the present invention provides a possible implementation manner of the first aspect, wherein a plurality of first temperature sensors are arranged in an array on the heating element.

[0009] In combination with the first aspect, an embodiment of the present invention provides a possible implementation manner of the first aspect, wherein the adjustment control element includes a first circuit board and a second circuit board;

[0010] The first circuit board is arranged inside the garment body, the attitude sensor is arranged on the first circuit board, and the first circuit board is connected to the heating element;

[0011] The second circuit board is arranged on the surface of the garment body, the second temperature sensor is arranged on the second circuit board, and the second circuit board is connected to the first circuit board;

[0012] The trigger control element is arranged on the second circuit board.

[0013] In combination with the first aspect, an embodiment of the present invention provides a possible implementation manner of the first aspect, wherein a plurality of LED lamp beads are arranged on the second circuit board, and the plurality of LED lamp beads are located on the outer periphery of the trigger control member.

[0014] In combination with the first aspect, an embodiment of the present invention provides a possible implementation manner of the first aspect, wherein the attitude sensor adopts an acceleration sensor.

[0015] In combination with the first aspect, an embodiment of the present invention provides a possible implementation manner of the first aspect, wherein a power interface is arranged on the adjustment control member.

[0016] In a second aspect, an embodiment of the present invention provides a control method for a heating garment capable of automatically adjusting temperature, which is used for the heating garment capable of automatically adjusting temperature, and includes the following steps:

[0017] Obtain the weighted average of a plurality of first temperature sensors and obtain the data of the second temperature sensor;

[0018] Obtain the attitude sensor data. If the adjustment control member determines that the user is in a state of strenuous exercise, the adjustment control member controls the heating member to stop working;

[0019] If the adjustment control member determines that the user is in a non-strenuous exercise state, the adjustment control member automatically adjusts the heating power of the heating member according to the data of the second temperature sensor.

[0020] In combination with the second aspect, an embodiment of the present invention provides a possible implementation manner of the second aspect, wherein after the adjustment control member obtains the judgment result of the attitude sensor, it first determines whether the user is in a state of strenuous exercise;

[0021] If the user is in a state of strenuous exercise, the adjustment control member controls the heating member to stop working;

[0022] If the user is in a non-strenuous exercise state, the adjustment control member will obtain the non-strenuous time when the user is in a non-strenuous exercise state. If the non-strenuous time is greater than the first preset time, the adjustment control member automatically adjusts the heating power of the heating member according to the data of the second temperature sensor.

[0023] In combination with the second aspect, an embodiment of the present invention provides a possible implementation manner of the second aspect, wherein when the user is in a non-strenuous exercise state, when the second temperature sensor measures that the ambient temperature is not less than 22 degrees Celsius, the heating member does not work;

[0024] When the second temperature sensor measures that the ambient temperature is less than 22 degrees Celsius, the adjustment control member automatically adjusts the heating power of the heating member according to the preset temperature.

[0025] In combination with the second aspect, an embodiment of the present invention provides a possible implementation manner of the second aspect. Wherein, the attitude sensor is electrically connected to the adjustment control member, and the sensor transmits at least 100 acceleration values in the X-axis direction, Y-axis direction, and Z-axis direction per second. The adjustment control member processes the received acceleration values.

[0026] (Wherein, aX, aY, and aZ are the acceleration values in the X-axis direction, Y-axis direction, and Z-axis direction detected by the attitude sensor, with the unit of g, and g represents a gravitational acceleration);

[0027] S = |A - 1|;

[0028] M = S * 512 / 2;

[0029] MA is the average value of M in the last 3 seconds;

[0030] If MA < 100, it is determined that the user is in a stationary state;

[0031] If 250 > MA > 100, it is determined that the user is in a slight movement state;

[0032] If MA > 250, it is determined that the user is in a violent movement state.

[0033] Beneficial effects:

[0034] The present invention provides a heating garment capable of automatically adjusting temperature, including a garment body, a heating member, and an adjustment control member; the heating member is provided on the garment body, the adjustment control member is provided on the garment body, and the adjustment control member is connected to the heating member; a first temperature sensor for detecting the temperature inside the clothes is provided on the heating member, a second temperature sensor for detecting the external environmental temperature and an attitude sensor for detecting the user's movement state are provided on the adjustment control member; a trigger control member for the user to use is provided on the adjustment control member.

[0035] Specifically, after the user wears the heating garment capable of automatically adjusting temperature, the user can turn on the automatic temperature adjustment function through the adjustment control member. The adjustment control member can detect the user's movement state through the attitude sensor thereon. When the user is performing violent exercises such as running, the adjustment control member can detect and determine that the user is in a violent movement state, thereby stopping the heating member from working. When the adjustment control member can detect and determine that the user is in a non-violent movement state, the adjustment control member automatically adjusts the heating power of the heating member through the data of the first temperature sensor and the second temperature sensor, so that the user is in a comfortable temperature adaptation, avoiding the user from feeling overheated or cold, and improving the user's usage experience.

[0036] The present invention provides a control method for a heating garment capable of automatic temperature adjustment, which is used for a heating garment capable of automatic temperature adjustment, and includes the following steps: obtaining the weighted average of multiple first temperature sensors, and obtaining the data of a second temperature sensor; obtaining the data of an attitude sensor, if the adjustment control member determines that the user is in a state of strenuous exercise, the adjustment control member controls the heating member to stop working; if the adjustment control member determines that the user is in a non-strenuous exercise state, the adjustment control member automatically adjusts the heating power of the heating member according to the data of the second temperature sensor. The control method of the heating garment capable of automatic temperature adjustment has the above advantages compared with the prior art, which will not be elaborated here. BRIEF DESCRIPTION OF THE DRAWINGS

[0037] In order to more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the following will briefly introduce the drawings required for use in the description of the specific embodiments or the prior art. Obviously, the drawings in the following description are some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0038] Figure 1 Schematic diagram of the first embodiment of the heating garment capable of automatic temperature adjustment provided by the embodiment of the present invention (the trigger control member adopts a button);

[0039] Figure 2 Schematic diagram of the first embodiment of the heating garment capable of automatic temperature adjustment provided by the embodiment of the present invention (the trigger control member adopts a touchpad);

[0040] Figure 3 Logic flowchart of automatic temperature adjustment of the control method of the heating garment capable of automatic temperature adjustment provided by the embodiment of the present invention.

[0041] ICON:

[0042] 100 - Garment body;

[0043] 200 - Heating member; 210 - First temperature sensor;

[0044] 300 - Adjustment control member; 301 - First circuit board; 302 - Second circuit board; 303 - LED lamp bead; 310 - Second temperature sensor; 320 - Attitude sensor; 330 - Trigger control member; 340 - Power interface. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0045] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without making creative efforts shall fall within the protection scope of the present invention.

[0046] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. They are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation of the present invention.

[0047] In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present invention, "a plurality" means two or more unless otherwise specifically defined.

[0048] In the present invention, unless otherwise clearly defined and limited, the terms "mounted", "connected", "coupled", "fixed", etc. shall be construed in a broad sense. For example, it may be a fixed connection, a detachable connection, or integrated; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the internal communication of two elements or the interaction relationship between two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0049] The present invention will be further described in detail below through specific embodiments in conjunction with the accompanying drawings.

[0050] See Figure 1 、 Figure 2 and Figure 3As shown in the figure, this embodiment provides a heating garment capable of automatically adjusting temperature, which includes a garment body 100, a heating element 200, and an adjustment control element 300; the heating element 200 is arranged on the garment body 100, the adjustment control element 300 is arranged on the garment body 100, and the adjustment control element 300 is connected to the heating element 200; a first temperature sensor 210 for detecting the temperature inside the clothes is arranged on the heating element 200, a second temperature sensor 310 for detecting the external environmental temperature and an attitude sensor 320 for detecting the user's motion state are arranged on the adjustment control element 300; a trigger control element 330 for the user to use is arranged on the adjustment control element 300.

[0051] Specifically, after the user wears the heating garment capable of automatically adjusting temperature, the user can turn on the automatic temperature adjustment function through the adjustment control element 300. The adjustment control element 300 can detect the user's motion state through the attitude sensor 320 thereon. When the user is performing strenuous exercises such as running, the adjustment control element 300 can detect and determine that the user is in a strenuous exercise state, so as to stop the heating element 200 from working. When the adjustment control element 300 can detect and determine that the user is in a non-strenuous exercise state, the adjustment control element 300 automatically adjusts the heating power of the heating element 200 according to the data of the first temperature sensor 210 and the second temperature sensor 310, so that the user is in a comfortable temperature adaptation, avoiding the user from feeling overheated or cold and improving the user's use experience.

[0052] Among them, the attitude sensor 320 adopts an acceleration sensor.

[0053] It should be noted that waterproof treatments are performed on all components of the heating garment capable of automatically adjusting temperature provided in this embodiment to ensure that the heating garment can be washed by water. Those skilled in the art can select the waterproof treatment form according to actual needs and will not be elaborated here.

[0054] Among them, a plurality of first temperature sensors 210 are arranged in an array on the heating element 200, and the temperature data measured by the plurality of first temperature sensors 210 are processed on the adjustment control element 300, and finally the weighted average of the temperature data measured by the plurality of first temperature sensors 210 is obtained. Since there are structural barriers such as fabrics between the first temperature sensor 210 and the heating element 200, and during actual wearing, the temperature of the heating element 200 will be quickly transferred to the user's body, resulting in the temperature of the heating element 200 being smaller towards the edge and the highest temperature in the middle of the heating element 200. Therefore, to avoid the problem of low temperature control accuracy of the heating element 200 caused by uneven temperature, the plurality of first temperature sensors 210 arranged in an array are processed to obtain their weighted average, so as to ensure the overall true temperature of the heating element 200. For example, one first temperature sensor 210 can be set on the heating element 200, the weight item of the first temperature sensor 210 is 1, and the finally obtained weighted average is the measured value of the first temperature sensor 210; three first temperature sensors 210 can be set on the heating element 200, one first temperature sensor 210 is located in the middle of the heating element 200, and the two are respectively located in the upper and lower parts of the heating element 200. The weight items of the first temperature sensors 210 in the upper and lower parts are 1.1, and the weight item of the first temperature sensor 210 in the middle is 0.9.

[0055] See Figure 1 、 Figure 2 and Figure 3 As shown, in an alternative solution of this embodiment, the adjustment control element 300 includes a first circuit board 301 and a second circuit board 302; the first circuit board 301 is arranged inside the clothing body 100, the attitude sensor 320 is arranged on the first circuit board 301, and the first circuit board 301 is connected to the heating element 200; the second circuit board 302 is arranged on the surface of the clothing body 100, the second temperature sensor 310 is arranged on the second circuit board 302, and the second circuit board 302 is connected to the first circuit board 301; the trigger control element 330 is arranged on the second circuit board 302.

[0056] Among them, a plurality of LED beads 303 are arranged on the second circuit board 302, and the plurality of LED beads 303 are located on the outer periphery of the trigger control element 330. When the user triggers different control operations, the LED beads 303 will change different colors or flashing frequencies. Among them, the trigger control element 330 can adopt a trigger button or a touchpad.

[0057] For example, when the user uses it for the first time, the user long-presses the trigger control 330 to turn on the device. Then, the user short-presses the trigger control 330 once to enter the color switching gear. At this time, the LED lamp bead 303 is constantly lit with a green light, and the heating element 200 corresponds to a heating temperature between 38°C and 41°C (the specific temperature is determined according to the user's preference settings). After the user short-presses the trigger control 330 again, the LED lamp bead 303 is constantly lit with an orange light, and the heating element 200 corresponds to a heating temperature between 42°C and 46°C. After the user short-presses the trigger control 330 again, the LED lamp bead 303 is constantly lit with a red light, and the heating element 200 corresponds to a heating temperature between 47°C and 50°C. When the user short-presses the trigger control 330 again, the adjustment control 300 enters the automatic temperature adjustment mode. At this time, the LED lamp bead 303 is a white breathing light, and the adjustment control 300 automatically adjusts the heating power of the heating element 200 according to the data of the first temperature sensor 210, the second temperature sensor 310, and the attitude sensor 320.

[0058] See Figure 1 、 Figure 2 and Figure 3 As shown, in an alternative embodiment of the present embodiment, a power interface 340 is provided on the adjustment control 300.

[0059] Specifically, a power interface 340 is provided on the adjustment control 300, and the user can supply power to the heatable clothing capable of automatic temperature adjustment in this embodiment by connecting an external power bank.

[0060] In addition, the power interface 340 adopts a waterproof interface, such as a waterproof Type-c structure.

[0061] See Figure 1 、 Figure 2 and Figure 3 As shown, the present embodiment provides a control method for heatable clothing capable of automatic temperature adjustment, which is used for heatable clothing capable of automatic temperature adjustment, and includes the following steps: obtaining the weighted average of multiple first temperature sensors 210 and obtaining the data of the second temperature sensor 310; obtaining the data of the attitude sensor 320. If the adjustment control 300 determines that the user is in a strenuous exercise state, the adjustment control 300 controls the heating element 200 to stop working; if the adjustment control 300 determines that the user is in a non-strenuous exercise state, the adjustment control 300 automatically adjusts the heating power of the heating element 200 according to the data of the second temperature sensor 310.

[0062] Among them, the control method for heatable clothing capable of automatic temperature adjustment provided in this embodiment has the advantages of the above-mentioned heatable clothing capable of automatic temperature adjustment compared with the prior art, which will not be elaborated here.

[0063] In an alternative solution of this embodiment, after the adjustment control member 300 obtains the judgment result of the attitude sensor 320, it first determines whether the user is in a state of intense exercise; if the user is in a state of intense exercise, the adjustment control member 300 controls the heating member 200 to stop working; if the user is in a state of non-intense exercise, the adjustment control member 300 will obtain the non-intense time when the user is in a state of non-intense exercise. If the non-intense time is greater than the first preset time, the adjustment control member 300 automatically adjusts the heating power of the heating member 200 according to the data of the second temperature sensor 310.

[0064] Specifically, after the adjustment control member 300 determines that the user is in a state of non-intense exercise, it determines whether the time when the user is in a state of non-intense exercise is greater than the first preset time, so as to avoid heating immediately after the user has just exercised intensely, improving the comfort of the user.

[0065] Among them, the first preset time is not less than 5 minutes.

[0066] In an alternative solution of this embodiment, when the user is in a state of non-intense exercise, when the second temperature sensor 310 measures that the ambient temperature is not less than 22 degrees Celsius, the heating member 200 does not work; when the second temperature sensor 310 measures that the ambient temperature is less than 22 degrees Celsius, the adjustment control member 300 automatically adjusts the heating power of the heating member 200 according to the preset temperature.

[0067] Specifically, a Bluetooth module is provided on the adjustment control member 300. The user can connect to the adjustment control member 300 through an APP such as a mobile phone terminal, so as to adjust their heating clothing personalized. For example, for ordinary users, the user can set the heating preference to normal. For users who are afraid of cold, the user can set the heating preference to relatively hot. For users who are afraid of heat, the user can set the heating preference to relatively cold. Among them, the default is the normal mode.

[0068] For example, when the adjustment control member 300 detects that the user is in a static or slow movement (non-intense exercise) state and the user sets the heating preference to normal, when the temperature environment T detected by the second temperature sensor 310 ≥ 22 °C, the heating member 200 does not heat. When 21 °C ≥ T environment ≥ 17 °C, the heating member 200 heats according to the target temperature of 38 °C. When 16 °C ≥ T environment ≥ 12 °C, the heating member 200 heats according to the target temperature of 42 °C. When 11 °C ≥ T environment ≥ 7 °C, the heating member 200 heats according to the target temperature of 46 °C. When 6 °C ≥ T environment, the heating member 200 heats according to the target temperature of 50 °C.

[0069] For example, when the adjustment control 300 detects that the user is in a stationary state or moving slowly, and the user sets the heating preference to be on the cooler side, when the ambient temperature T detected by the second temperature sensor 310 is ≥ 22°C, the heating element 200 does not heat. When 21°C ≥ T ≥ 17°C, the heating element 200 heats according to the target temperature of 36°C. When 16°C ≥ T ≥ 12°C, the heating element 200 heats according to the target temperature of 40°C. When 11°C ≥ T ≥ 7°C, the heating element 200 heats according to the target temperature of 44°C. When 6°C ≥ T, the heating element 200 heats according to the target temperature of 48°C.

[0070] For example, when the adjustment control 300 detects that the user is in a stationary state or moving slowly, and the user sets the heating preference to be on the warmer side, when the ambient temperature T detected by the second temperature sensor 310 is ≥ 22°C, the heating element 200 does not heat. When 21°C ≥ T ≥ 17°C, the heating element 200 heats according to the target temperature of 40°C. When 16°C ≥ T ≥ 12°C, the heating element 200 heats according to the target temperature of 44°C. When 11°C ≥ T ≥ 7°C, the heating element 200 heats according to the target temperature of 48°C. When 6°C ≥ T, the heating element 200 heats according to the target temperature of 52°C.

[0071] In addition, the current ambient temperature and the user's motion state can be displayed on the mobile terminal APP, and the mobile terminal APP can also control whether the heating element 200 works or not, that is, the user can directly turn off the heating element 200 through the mobile terminal APP.

[0072] In an alternative solution of this embodiment, the attitude sensor 320 is electrically connected to the adjustment control 300. The sensor transmits the acceleration values in the X-axis direction, Y-axis direction, and Z-axis direction at least 100 times per second, and the adjustment control 300 processes the received acceleration values;

[0073] (where aX, aY, and aZ are the acceleration values in the X-axis direction, Y-axis direction, and Z-axis direction detected by the attitude sensor 320, with the unit of g, and g represents a gravitational acceleration);

[0074] S = |A - 1|;

[0075] M = S * 512 / 2;

[0076] MA is the average value of M in the most recent 3 seconds;

[0077] If MA < 100, it is determined that the user is in a stationary state;

[0078] If 250 > MA > 100, it is determined that the user is in a slightly moving state;

[0079] If MA > 250, it is determined that the user is in a state of intense exercise.

[0080] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements on some or all of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present invention.

Claims

1. A heating garment capable of automatically adjusting temperature, characterized in that: include: A garment body (100), a heating element (200) and an adjustment control element (300); The heating element (200) is arranged on the clothing body (100), the adjustment control element (300) is arranged on the clothing body (100), and the adjustment control element (300) is connected to the heating element (200); The heating element (200) is provided with a first temperature sensor (210) for detecting the internal temperature of the clothes, and the adjustment control element (300) is provided with a second temperature sensor (310) for detecting the external environment temperature and a posture sensor (320) for detecting the movement state of the user; The adjustment control member (300) has a trigger control member (330) for use by a user.

2. The heating garment capable of automatically regulating temperature according to claim 1, characterized in that: A plurality of first temperature sensors (210) are arranged in an array on the heating element (200).

3. The heating garment capable of automatically regulating temperature according to claim 1, characterized in that: The adjustment control component (300) comprises a first circuit board (301) and a second circuit board (302); The first circuit board (301) is arranged in the clothing body (100), the posture sensor (320) is arranged on the first circuit board (301), and the first circuit board (301) is connected to the heating element (200); The second circuit board (302) is arranged on the surface of the clothing body (100), the second temperature sensor (310) is arranged on the second circuit board (302), and the second circuit board (302) is connected to the first circuit board (301); The trigger control component (330) is arranged on the second circuit board (302).

4. The heating garment capable of automatically regulating temperature according to claim 3, characterized in that: A plurality of LED lamp beads (303) are arranged on the second circuit board (302), and the plurality of LED lamp beads (303) are located on the periphery of the trigger control component (330).

5. The heating garment capable of automatically regulating temperature according to claim 3, characterized in that: The posture sensor (320) is an acceleration sensor.

6. The heating garment capable of automatically regulating temperature according to claim 5, characterized in that: The adjustment control component (300) is provided with a power supply interface (340).

7. A control method for a heating garment capable of automatic temperature regulation, used for the heating garment capable of automatic temperature regulation according to any one of claims 1 to 6, characterized in that: The following steps are involved: Obtaining a weighted average of a plurality of first temperature sensors (210) and obtaining data of a second temperature sensor (310); Acquiring data from a posture sensor (320), and if the adjustment control component (300) determines that the user is in a state of intense exercise, the adjustment control component (300) controls the heating component (200) to stop working; If the adjustment control component (300) determines that the user is in a non-violent exercise state, the adjustment control component (300) automatically adjusts the heating power of the heating component (200) according to the data of the second temperature sensor (310).

8. The control method of the heating garment capable of automatic temperature regulation according to claim 7, characterized in that: After obtaining the judgment result of the posture sensor (320), the adjustment control component (300) first judges whether the user is in a state of intense exercise; If the user is in a state of intense exercise, the adjustment control element (300) controls the heating element (200) to stop working; If the user is in a non-strenuous exercise state, the adjustment control component (300) will obtain the non-strenuous time that the user is in the non-strenuous exercise state. If the non-strenuous time is greater than the first preset time, the adjustment control component (300) automatically adjusts the heating power of the heating component (200) according to the data of the second temperature sensor (310).

9. The control method of the heating garment capable of automatic temperature regulation according to claim 7 or 8, characterized in that: When the user is not exercising vigorously, when the second temperature sensor (310) measures an ambient temperature of not less than 22 degrees Celsius, the heating element (200) does not operate; When the second temperature sensor (310) measures that the ambient temperature is less than 22 degrees Celsius, the adjustment control element (300) automatically adjusts the heating power of the heating element (200) according to a preset temperature.

10. The control method of the heating garment capable of automatic temperature regulation according to claim 7 or 8, characterized in that: The attitude sensor (320) is electrically connected to the adjustment control component (300), the sensor transmits back acceleration values ​​in the X-axis direction, the Y-axis direction and the Z-axis direction at least 100 times per second, and the adjustment control component (300) receives the transmitted acceleration values ​​for processing; (where aX, aY and aZ are the acceleration values ​​in the X-axis, Y-axis and Z-axis directions detected by the attitude sensor, in g, where g represents one gravitational acceleration); S = |A-1|; M = S * 512 / 2; MA is the average value of M in the last 3 seconds; If MA < 100, the user is considered to be in a stationary state; If 250>MA>100, the user is judged to be in a state of slight exercise; If MA>250, it is determined that the user is in a state of intense exercise.