Heating control method and system for heating clothing and heating clothing

By performing partition heating control on the heating garment, the problems of uneven temperature and high cost of the heating garment are solved, the temperature uniformity and power efficiency are improved, and a good heating experience and energy-saving effect are provided.

CN115551125BActive Publication Date: 2025-09-02SHENZHEN TOPBAND CO LTD
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Patent Information

Application Number
CN202211167528.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-23
Publication Date
2025-09-02
Estimated Expiration
2042-09-23

AI Technical Summary

Technical Problem

Due to the overall heating of existing heating garments, the temperature is uneven and the heat loss rate of each part is inconsistent, which leads to problems of overcooling or overheating during use, and the production cost is high.

Method used

The partition heating control method is used to divide the heating into multiple heating groups. By setting the final target temperature value and the time-sharing target temperature value, the heating group is circulated and time-sharing heating in turn, and the heating strategy is adjusted according to the real-time temperature to ensure the temperature uniformity and power efficiency of each heating zone.

Benefits of technology

The temperature uniformity of each part of the heating suit is achieved, the user comfort is improved, the power load is reduced, the production cost is saved, and the constant temperature can be continuously maintained at the target temperature.

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Abstract

The present invention discloses a heating control method, system, and heating garment for heating clothing. The heating control method for heating clothing is applicable to a heating system having N heating zones; a final target temperature value is set; the N heating zones are divided into M heating groups; a time-sharing target temperature value is obtained according to a first preset rule; the M heating groups are sequentially subjected to cyclic time-sharing heating; if the temperature of the N heating zones does not reach the time-sharing target temperature value, the cyclic time-sharing heating is continued; if the temperature of the N heating zones reaches the time-sharing target temperature value but does not reach the final target temperature value, the time-sharing target temperature value is increased according to a second preset rule, and the cyclic time-sharing heating is continued; after reaching the final target temperature value, the N heating zones are maintained at a constant temperature. The present invention adopts zoned heating and groups the heating zones, which saves power supply pressure, improves user comfort, and can maintain a constant temperature after reaching the preset target temperature.
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Description

Technical Field

[0001] The present invention relates to the technical field of clothing heating, and in particular to a heating control method and system for heated clothing, and the heated clothing. Background Art

[0002] Current heating clothes generally heat the entire heating wire installed on the heating clothes, and the heating wire is usually in sheets. In terms of hardware, heating clothes of different sizes need to be customized with heating sheets or heating wires of different specifications, so the production cost is high. In terms of heating effect and heat preservation effect, the tightness of different parts of the heating clothes varies. When the human body exercises, the heating clothes will also fold to different degrees. In addition to various other factors, the heat loss rate of different parts of the heating clothes is inconsistent. Because the current heating clothes are heated as a whole, the temperature of different parts of the heating clothes will be uneven during use, and some parts will be too cold or too hot, and users will not get a good experience. Summary of the Invention

[0003] The technical problem to be solved by the present invention is to provide a heating control method and system for heating clothing and heating clothing.

[0004] The technical solution adopted by the present invention to solve the technical problem is to construct a heating control method for heated clothing, which is applicable to a heating system with N heating zones, where N ≥ 2, and includes the following steps:

[0005] S1. Setting the final target temperature values ​​of the N heating zones;

[0006] S2. Divide the N heating zones into M heating groups, where 2≤M≤N;

[0007] S3. Obtaining a time-sharing target temperature value according to a first preset rule;

[0008] S4, performing cyclic time-sharing heating on the M heating groups in sequence;

[0009] S5, determining whether the first real-time temperatures of the N heating zones are greater than or equal to the time-sharing target temperature value, if so, executing step S6; if not, executing step S4;

[0010] S6. Determine whether the first real-time temperature is greater than or equal to the final target temperature value. If so, execute step S7; if not, increase the time-sharing target temperature value according to a second preset rule, and return to step S4.

[0011] S7, maintaining the N heating zones at a constant temperature at the final target temperature.

[0012] Preferably, in the heating control method for heating clothing provided by the present invention, step S3 includes:

[0013] The second real-time temperature values ​​of the N heating zones are obtained, the temperature average value of the N heating zones is calculated according to the second real-time temperature values, and the time-sharing target temperature value is obtained by adding the temperature average value to a first preset value.

[0014] Preferably, in the heating control method for heating clothing provided by the present invention, step S4 includes: preferentially heating the heating group including the heating zone with the lowest second real-time temperature value.

[0015] Preferably, in the heating control method for heating clothing provided by the present invention, in step S4, each of the heating groups has an exclusive time slice.

[0016] Preferably, in the heating control method for heating clothing provided by the present invention, step S4 includes:

[0017] S401, let i=1, j=1;

[0018] S402, heating the jth heating group in the i-th time slice;

[0019] S403. Determine whether j is equal to M. If so, execute step S5; if not, set i=i+1, j=j+1, and return to execute step S402.

[0020] Preferably, in the heating control method for heating clothing provided by the present invention, step S4 includes: if a heating area in each heating group reaches the time-sharing target temperature value, the heating area is not heated in the current time slice and waits for the next time slice.

[0021] Preferably, in the heating control method for heating clothing provided by the present invention, in step S6, if not, increasing the time-sharing target temperature value according to the second preset rule, and returning to step S4 includes:

[0022] The second preset value is added to the time-sharing target temperature value, and the process returns to step S4.

[0023] Preferably, in the heating control method for heating clothing provided by the present invention, step S7 includes:

[0024] S701, performing cyclic time-sharing heating on the M heating groups in sequence;

[0025] S702, determining whether the third real-time temperatures of the N heating zones are greater than or equal to the final target temperature value, if so, executing step S703; if not, executing step S701;

[0026] S703: After a preset time, return to step S702.

[0027] The present invention also constructs a heating control system for a heating garment, wherein the heating garment has N heating zones, where N ≥ 2, and comprises:

[0028] A final target temperature value setting module, used to set the final target temperature values ​​of the N heating zones;

[0029] a grouping module, configured to divide the N heating zones into M heating groups, where 2≤M≤N;

[0030] A time-sharing target temperature value setting module, configured to obtain a time-sharing target temperature value according to a first preset rule;

[0031] The heating module performs cyclic time-sharing heating on the M heating groups in sequence;

[0032] A first judgment module is used to judge whether the first real-time temperature of the N heating zones reaches the time-sharing target temperature value, and if so, execute the second judgment module; if not, execute the heating module;

[0033] a second determination module, configured to determine whether the first real-time temperature reaches the final target temperature value, and if so, execute the constant temperature module; if not, execute the increasing module, and return to execute the heating module;

[0034] an increasing module, configured to increase the time-sharing target temperature value according to a second preset rule;

[0035] The constant temperature module is used to keep the N heating zones at a constant temperature at the final target temperature value.

[0036] The present invention also constructs a heating garment, comprising a heating garment body and heating zones arranged on various parts of the heating garment body, and also comprises the above-mentioned heating control system for the heating garment.

[0037] By implementing the present invention, the following beneficial effects are achieved:

[0038] The present invention provides a heating control method, system, and heating garment for heating clothing. The heating control method for heating clothing is applicable to a heating system with N heating zones; a final target temperature value is set; the N heating zones are divided into M heating groups; a time-sharing target temperature value is obtained according to a first preset rule; the M heating groups are subjected to cyclic time-sharing heating in sequence; if the temperature of the N heating zones does not reach the time-sharing target temperature value, the cyclic time-sharing heating is continued; if the temperature of the N heating zones reaches the time-sharing target temperature value but does not reach the final target temperature value, the time-sharing target temperature value is increased according to a second preset rule, and the cyclic time-sharing heating is continued; after reaching the final target temperature value, the N heating zones are maintained at a constant temperature. The present invention adopts zoned heating and groups the heating zones, which saves power supply pressure, improves the user's comfort, and can maintain a constant temperature after reaching the preset target temperature.

[0039] The present invention obtains a time-sharing target temperature value based on a first preset rule, first minimizing the temperature difference between each heating zone to ensure that the user of the heating garment does not experience a large temperature difference between each heating zone, which could lead to a cold. The present invention then raises the target temperature value based on a second preset rule, and then performs cyclic time-sharing heating on the heating zones in groups. This ensures that the heating garment steadily heats up during the heating process, providing a gentle sensation to the user, while minimizing the power load and achieving a good effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0040] The present invention will be further described below with reference to the accompanying drawings and embodiments, in which:

[0041] Figure 1 is a flow chart of an embodiment of a heating control method for heating clothing according to the present invention;

[0042] Figure 2 This is a schematic structural diagram of an embodiment of a heating garment of the present invention;

[0043] Figure 3 1 is a circuit diagram of an embodiment of a heating garment of the present invention. DETAILED DESCRIPTION

[0044] In order to have a clearer understanding of the technical features, purposes and effects of the present invention, specific embodiments of the present invention are now described in detail with reference to the accompanying drawings.

[0045] It should be noted that the flowcharts shown in the accompanying drawings are for illustrative purposes only and do not necessarily include all content and operations / steps, nor must they be executed in the order described. For example, some operations / steps may be decomposed, while others may be combined or partially combined. Therefore, the actual execution order may vary depending on the actual situation.

[0046] The block diagrams shown in the accompanying drawings are merely functional entities and do not necessarily correspond to physically separate entities. That is, these functional entities may be implemented in software, in one or more hardware modules or integrated circuits, or in different networks and / or processor devices and / or microcontroller devices.

[0047] See also Figure 1 The first embodiment disclosed in the present invention discloses a heating control method for heating clothing, which is applicable to a heating system having N heating zones, where N≥2, and comprises the following steps:

[0048] S1. Set the final target temperature values ​​of N heating zones.

[0049] S2. Divide the N heating zones into M heating groups, where 2 ≤ M ≤ N. For example, if there are 8 heating zones, these heating zones can be divided into 2, 3, 4, 5, 6, 7, or 8 groups. The number of heating zones included in each group can be the same or different. Preferably, the number of heating zones included in each heating group should be kept as similar as possible to avoid significant differences in power supply load in each time slice, which can easily damage the power supply life.

[0050] S3. Obtaining a time-sharing target temperature value according to a first preset rule. The time-sharing target temperature value is a stage target temperature value of all heating zones during the cyclic time-sharing heating process.

[0051] S4. Cyclic time-sharing heating is performed on the M heating groups in sequence. Cyclic time-sharing heating means that each heating group is heated in a dedicated time slot. After all heating groups are heated for the first time, after other steps return to step S4, heating is performed again starting with the first heating group in a dedicated time slot for all M heating groups. Because the M heating groups are heated repeatedly in a cycle, and each heating group is heated in a dedicated time slot, this process is called cyclic time-sharing heating.

[0052] S5. Determine whether the first real-time temperature of the N heating zones is greater than or equal to the time-sharing target temperature value. If so, it means that the N heating zones have completed the heating task of this stage, and execute step S6; if not, it means that some heating zones still need to be heated to reach the time-sharing target temperature value of this stage, and execute step S4.

[0053] S6. Determine whether the first real-time temperature is greater than or equal to the final target temperature value. If so, all N heating zones have reached the final target temperature value through multiple rounds of cyclic time-sharing heating processes, and can proceed to step S7. If not, increase the time-sharing target temperature value according to the second preset rule and return to step S4.

[0054] S7, maintaining the N heating zones at a constant temperature at the final target temperature. In some embodiments, all heating zones may be heated at regular intervals to ensure that the heating zones are maintained at a constant temperature at the final target temperature.

[0055] In order to better set the time-sharing target temperature value, step S3 includes:

[0056] Obtain the second real-time temperature values ​​of the N heating zones, calculate the average temperature of the N heating zones based on the second real-time temperature values, and add the first preset value to the average temperature value to obtain the time-sharing target temperature value. That is, in step S3, the initial time-sharing target temperature value calculation formula is as follows:

[0057] Where T f is the time-sharing target temperature value, T2 is the second real-time temperature value, T x is the first preset value.

[0058] In order to make the temperatures of each heating zone reach a similar temperature as quickly as possible and provide a good heating experience, step S4 includes: giving priority to heating the heating group including the heating zone with the lowest second real-time temperature value. For example, heating zone S1 is in the first group, and the second real-time temperature value of heating zone S1 is the lowest among all N heating zones. Then, in the cyclic time-sharing heating performed in this round, even if the second real-time temperatures of other heating zones in the first heating group are higher, the first heating group including heating zone S1 is given priority for heating, and then the heating group including the heating zone with the second lowest second real-time temperature value, the heating group including the heating zone with the third lowest second real-time temperature value... until the heating group including the heating zone with the highest second real-time temperature value is heated.

[0059] In order to optimize heating control, reduce the load on the power supply, and improve the efficiency of group heating, in step S4, each heating group has its own time slice. For example, in a time slice (a time slice refers to dividing the working time into multiple time periods of fixed length), heating is only performed on the heating zones in the selected heating group. That is, even if a heating zone in the heating group does not heat due to a fault or other preset rules in the time slice, other heating groups or certain heating zones in other heating groups will not heat either. A certain time slice is only used for the operation of the heating group corresponding to the time slice.

[0060] In order to heat each heating group in an orderly manner, step S4 includes:

[0061] S401, let i=1, j=1;

[0062] S402, heating the jth heating group in the i-th time slice;

[0063] S403. Determine whether j is equal to M. If so, execute step S5; if not, set i=i+1, j=j+1, and return to execute step S402.

[0064] For example, N=6, M=3; at this time, in the first time slice, the first heating group is heated, and it is judged that j=1≠3=M, then i=2, j=2; in the second time slice, the second heating group is heated, and it is judged that j=2≠3=M, then i=3, j=3; in the third time slice, the third heating group is heated, and it is judged that j=3=3=M, and the N heating zones of all M heating groups have completed a round of time-sharing heating, then the process goes to step S5.

[0065] In order to avoid continuing heating after a partition has reached the time-sharing target temperature value, step S4 includes: if a heating zone in each heating group reaches the time-sharing target temperature value, the heating zone will not be heated in the current time slice and will wait for the next time slice.

[0066] In order to gradually increase the time-sharing target temperature value, which is a stage target temperature, to the final target temperature value, in step S6, if not, then increase the time-sharing target temperature value according to the second preset rule, and return to execute step S4, including:

[0067] The second preset value is added to the time-sharing target temperature value, and the process returns to step S4.

[0068] For example, based on the initial time-sharing target temperature value set in step S3, a second preset value is added, for example, 1° C. is added to increase the time-sharing target temperature value.

[0069] In order to cope with different temperature loss conditions in different areas and ensure that all heating areas can maintain similar temperatures for a long time after reaching the target temperature, step S7 includes:

[0070] S701, performing cyclic time-sharing heating on M heating groups in sequence;

[0071] S702, determining whether the third real-time temperatures of the N heating zones are greater than or equal to the final target temperature value, if so, executing step S703; if not, executing step S701;

[0072] S703: After a preset time, return to step S702.

[0073] For example, if all heating zones are determined to have reached the final target temperature in step S6, the process will not return to steps S1 through S5. At this point, if heat from a heating zone is lost to the outside world, the temperature of that heating zone will drop. Assuming N = 4 and M = 2, the first heating group is heated in the first time slice, and the second heating group is heated in the second time slice. It is then determined whether all four heating zones are at or above the final target temperature. If so, the process remains idle for a predetermined period of time before returning to the second round of time-sharing heating. If not, the process returns directly to the next round of time-sharing heating.

[0074] In some other embodiments, step S7 includes:

[0075] The M heating groups are heated in a cyclic time-sharing manner in sequence and the execution is continued; if a heating zone in each heating group reaches the final target temperature value, the heating zone will not be heated in the current time slice and will wait for the next time slice.

[0076] A second embodiment of the present invention discloses a heating control system for a heating garment, wherein the heating garment has N heating zones, where N ≥ 2, and comprises:

[0077] The final target temperature value setting module is used to set the final target temperature values ​​of N heating zones.

[0078] The grouping module is used to divide N heating zones into M heating groups, where 2≤M≤N. Both N and M are integers.

[0079] The time-sharing target temperature value setting module is used to obtain the time-sharing target temperature value according to a first preset rule.

[0080] The heating module heats the M heating groups in a cyclic and time-sharing manner. For example, each heating group occupies a time slice for heating, and all the M heating groups are heated in sequence.

[0081] The first judgment module is used to judge whether the first real-time temperature of the N heating zones reaches the time-sharing target temperature value. If so, the second judgment module is executed; if not, the heating module is executed.

[0082] The second judgment module is used to judge whether the first real-time temperature reaches the final target temperature value. If so, the constant temperature module is executed; if not, the increasing module is executed and the heating module is returned to execute.

[0083] The increasing module is used to increase the time-sharing target temperature value according to the second preset rule. According to the current time-sharing target temperature value, a preset value is added to the current time-sharing target temperature value to obtain the increased time-sharing target temperature value.

[0084] A constant temperature module is configured to maintain the N heating zones at a constant temperature at a final target temperature. In some embodiments, the constant temperature module is configured to heat all heating zones at a fixed interval, maintaining the N heating zones at a constant temperature at the final target temperature. In other embodiments, the constant temperature module is configured to heat the M heating groups in a cyclical, time-sharing manner, using the final target temperature as the time-sharing target temperature value, maintaining the N heating zones at a constant temperature at the final target temperature.

[0085] In order to better set the time-sharing target temperature value, the time-sharing target temperature value setting module is also used to:

[0086] Obtain the second real-time temperature values ​​of the N heating zones, calculate the average temperature of the N heating zones based on the second real-time temperature values, and add the first preset value to the average temperature value to obtain the time-sharing target temperature value. That is, in step S3, the initial time-sharing target temperature value calculation formula is as follows:

[0087] Where T f is the time-sharing target temperature value, T i is the second real-time temperature value, T x is the first preset value.

[0088] In order to enable the temperatures of the various heating zones to reach similar temperatures as quickly as possible and provide a good heating experience, the heating module is further configured to preferentially heat the heating group including the heating zone having the lowest second real-time temperature value.

[0089] In order to optimize heating control, reduce the load on the power supply, and improve the efficiency of group heating, each heating group has an exclusive time slice during the execution of the heating module.

[0090] To improve the heating effect, the heating module also includes the following submodules:

[0091] A secondary assignment module is used to set i=1, j=1;

[0092] The secondary heating module is used to heat the jth heating group in the i-th time slice;

[0093] The secondary time-sharing judgment module is used to judge whether j is equal to M. If so, the first judgment module is executed; if not, i=i+1, j=j+1 is set, and the secondary heating module is returned to execute.

[0094] For example, N=6, M=3; at this time, in the first time slice, the first heating group is heated, and it is judged that j=1≠3=M, then i=2, j=2; in the second time slice, the second heating group is heated, and it is judged that j=2≠3=M, then i=3, j=3; in the third time slice, the third heating group is heated, and it is judged that j=3=3=M, and the N heating zones of all M heating groups have completed a round of time-sharing heating, then the first judgment module is executed.

[0095] In order to avoid continuing to heat a partition after it has reached the time-sharing target temperature value, the heating module is also used to: if a heating zone in each heating group reaches the time-sharing target temperature value, the heating zone will not be heated in the current time slice and will wait for the next time slice.

[0096] To gradually raise the time-sharing target temperature value, which is a staged target temperature, to the final target temperature value, the increasing module is further configured to add a second preset value to the time-sharing target temperature value and return to execute the heating module. For example, the time-sharing target temperature value is increased by adding the second preset value, for example, 1°C, to the initial time-sharing target temperature value set by the time-sharing target temperature value.

[0097] In order to cope with different temperature loss conditions in different areas and ensure that all heating zones can maintain similar temperatures for a long time after reaching the target temperature, the constant temperature module is also used to:

[0098] Perform cyclic time-sharing heating on the M heating groups in sequence; determine whether the third real-time temperature of the N heating zones is greater than or equal to the final target temperature value. If so, perform cyclic time-sharing heating on the M heating groups in sequence after a preset time interval; if not, perform cyclic time-sharing heating on the M heating groups in sequence.

[0099] For example, when all heating zones are determined to have reached the final target temperature in the second determination module, if heat from a heating zone is lost to the outside world, the temperature of that heating zone will drop. Assuming N = 4 and M = 2, the first heating group is heated in the first time slice, and the second heating group is heated in the second time slice. The system then determines whether all four heating zones are at or above the final target temperature. If so, the system waits for a preset period of time before returning to the second round of time-sharing heating. If not, the system returns directly to the next round of time-sharing heating.

[0100] In some other embodiments, the constant temperature module is also used to: perform cyclic time-sharing heating on M heating groups in sequence, and maintain continuous execution; if a heating area in each heating group reaches the final target temperature value, the heating area will not be heated in the current time slice and wait for the next time slice.

[0101] like Figure 2 and Figure 3As shown, the third embodiment of the present invention discloses a heating garment, comprising a heating garment body 1 and heating areas 2 provided on various parts of the heating garment body 1, and also comprising the heating control system for the heating garment described in the second embodiment of the present invention.

[0102] In order to achieve cost control and ensure stable heating of the heating garment, the heating area 2 provided on the heating garment is a pre-cut heating sheet of fixed size. These heating sheets can be used on heating garments of different sizes and styles, so that the application of the heating control system and the heating control method is not affected by factors such as the design of the heating garment pattern.

[0103] To ensure efficient power supply for the heated garment, in some embodiments, the power supply for the heating control system within the heated garment is a portable power bank, and the connector between the portable power bank and the heated garment is waterproof. To ensure the heated garment body 1 can be washed without removing the heating element, in other embodiments, the portable power bank also features Bluetooth, enabling wireless control of the various modules within the heated control system.

[0104] Figure 3 The circuit connection relationship of each heating zone 2 provided on the heating suit body 1, the plurality of heating zones 2 include a first heating zone R1, a second heating zone R2, a third heating zone R3, a fourth heating zone R4...Nth heating zone R N , and the corresponding first switch Q1, second switch Q2, third switch Q3, fourth switch Q4...Nth switch Q N , and electrically connected to the power supply VCC of each heating zone 2.

[0105] By implementing the present invention, the following beneficial effects are achieved:

[0106] The present invention provides a heating control method, system, and heating garment for heating clothing. The heating control method for heating clothing is applicable to a heating system with N heating zones; a final target temperature value is set; the N heating zones are divided into M heating groups; a time-sharing target temperature value is obtained according to a first preset rule; the M heating groups are subjected to cyclic time-sharing heating in sequence; if the temperature of the N heating zones does not reach the time-sharing target temperature value, the cyclic time-sharing heating is continued; if the temperature of the N heating zones reaches the time-sharing target temperature value but does not reach the final target temperature value, the time-sharing target temperature value is increased according to a second preset rule, and the cyclic time-sharing heating is continued; after reaching the final target temperature value, the N heating zones are maintained at a constant temperature. The present invention adopts zoned heating and groups the heating zones, which saves power supply pressure, improves the user's comfort, and can maintain a constant temperature after reaching the preset target temperature.

[0107] The present invention obtains a time-sharing target temperature value based on a first preset rule, first minimizing the temperature difference between each heating zone to ensure that the user of the heating garment does not experience a large temperature difference between each heating zone, which could lead to a cold. The present invention then raises the target temperature value based on a second preset rule, and then performs cyclic time-sharing heating on the heating zones in groups. This ensures that the heating garment steadily heats up during the heating process, providing a gentle sensation to the user, while minimizing the power load and achieving a good effect.

[0108] It can be understood that the above embodiments only express the preferred implementation methods of the present invention, and the description thereof is relatively specific and detailed, but it cannot be understood as limiting the patent scope of the present invention. It should be pointed out that for ordinary technicians in this field, without departing from the concept of the present invention, the above embodiments or technical features can be freely combined, and several deformations and improvements can be made, which all fall within the scope of protection of the present invention, that is, the embodiments described in "some embodiments" can be freely combined with any of the above and below embodiments. Therefore, all equivalent changes and modifications made to the scope of the claims of the present invention should fall within the scope of coverage of the claims of the present invention.

Claims

1. A heating control method for heating clothing, characterized in that: Applicable to a heating system with N heating zones, N ≥ 2, including the following steps: S1. Setting the final target temperature values ​​of the N heating zones; S2. Divide the N heating zones into M heating groups, where 2≤M≤N; S3. Obtaining a time-sharing target temperature value according to a first preset rule; S4, performing cyclic time-sharing heating on the M heating groups in sequence; S5, determining whether the first real-time temperatures of the N heating zones are greater than or equal to the time-sharing target temperature value, if so, executing step S6; if not, executing step S4; S6. Determine whether the first real-time temperature is greater than or equal to the final target temperature value. If so, execute step S7; if not, increase the time-sharing target temperature value according to a second preset rule, and return to step S4. S7, maintaining the N heating zones at a constant temperature at the final target temperature value; Wherein, step S3 includes: Obtaining second real-time temperature values ​​of the N heating zones, calculating a temperature average of the N heating zones based on the second real-time temperature values, and obtaining a time-sharing target temperature value by adding a first preset value to the temperature average; Step S4 includes: S401, let i=1, j=1; S402, heating the jth heating group in the i-th time slice; S403, determine whether j is equal to M, if so, execute step S5; if not, set i=i+1, j=j+1, and return to step S402; In step S6, if not, then increasing the time-sharing target temperature value according to the second preset rule, and returning to execute step S4 includes: The second preset value is added to the time-sharing target temperature value, and the process returns to step S4.

2. The heating control method for heating clothing according to claim 1, characterized in that: Step S4 includes: preferentially heating the heating group including the heating zone with the lowest second real-time temperature value.

3. The heating control method for heating clothing according to claim 1, characterized in that: In step S4, each heating group has an exclusive time slice.

4. The heating control method for heating clothing according to claim 3, characterized in that: Step S4 includes: if a heating zone in each heating group reaches the time-sharing target temperature value, the heating zone is not heated in the current time slice and waits for the next time slice.

5. The heating control method for heating clothing according to claim 1, characterized in that: Step S7 includes: S701, performing cyclic time-sharing heating on the M heating groups in sequence; S702, determining whether the third real-time temperatures of the N heating zones are greater than or equal to the final target temperature value, if so, executing step S703; if not, executing step S701; S703: After a preset time, return to step S702.

6. A heating control system for heating clothing, used to execute the heating control method for heating clothing according to any one of claims 1 to 5, characterized in that: The heating suit has N heating zones, N≥2, including: A final target temperature value setting module, used to set the final target temperature values ​​of the N heating zones; a grouping module, configured to divide the N heating zones into M heating groups, where 2≤M≤N; A time-sharing target temperature value setting module, configured to obtain a time-sharing target temperature value according to a first preset rule; The heating module performs cyclic time-sharing heating on the M heating groups in sequence; A first judgment module is used to judge whether the first real-time temperature of the N heating zones reaches the time-sharing target temperature value, and if so, execute the second judgment module; if not, execute the heating module; a second determination module, configured to determine whether the first real-time temperature reaches the final target temperature value, and if so, execute the constant temperature module; if not, execute the increasing module, and return to execute the heating module; an increasing module, configured to increase the time-sharing target temperature value according to a second preset rule; The constant temperature module is used to keep the N heating zones at a constant temperature at the final target temperature value.

7. A heating garment comprising a heating garment body and heating zones provided on various parts of the heating garment body, characterized in that: Also included is the heating control system for heating clothing as claimed in claim 6.

Citation Information

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