Control method of air conditioner based on intelligent treadmill and intelligent treadmill
By connecting the smart treadmill to the air conditioner, the system automatically adjusts the air conditioner parameters based on the real-time speed setting, solving the discomfort caused by manual adjustments and improving the comfort of the workout environment and user experience.
Patent Information
- Application Number
- CN202211073712.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-09-02
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2042-09-02
AI Technical Summary
Existing treadmills cannot automatically adjust the air conditioner's set temperature, air volume, and airflow angle according to their own operating level, requiring users to operate them manually, which affects the exercise experience and comfort.
By connecting the smart treadmill to the air conditioner, the system automatically adjusts the air conditioner's settings, such as temperature and airflow angle, based on the real-time operating mode. It categorizes the modes and adjusts the parameters accordingly, avoiding frequent adjustments.
It improves the comfort of the user's workout environment, avoids the need for frequent adjustments to the air conditioner, and ensures that users can concentrate fully on their workout.
Smart Images

Figure CN115614858B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of home appliance control, in particular to a control method of an air conditioner based on a smart treadmill and the smart treadmill. BACKGROUND
[0002] At present, with the improvement of people's fitness consciousness, more and more people insist on exercising, and the treadmill provides a convenient condition for people's exercise. The treadmill has multiple running gears, and different running gears have different exercise intensities. The higher the gear level is, the greater the exercise intensity is, which can bring different exercise experiences and exercise effects to users. When users exercise at different running gears, the heat generated is also different. In order to ensure the comfort of users, different running gears often need different exercise environments. The existing treadmill cannot control the running parameters of the air conditioner such as the set temperature, the set air volume and the air outlet angle according to the running gear of the treadmill, and the user needs to manually adjust the running parameters of the air conditioner to ensure the comfort of the environment of the treadmill. However, the user manually adjusts the running parameters of the air conditioner according to the running gear of the treadmill, which increases the operation of the user and also causes the user to be unable to concentrate on the exercise, which cannot meet the needs of the user. SUMMARY
[0003] In view of the above problems, the present application is proposed to provide a control method of an air conditioner based on a smart treadmill and the smart treadmill which can overcome the above problems or at least partially solve the above problems.
[0004] An object of the present application is to adjust the first set parameter of the air conditioner according to the gear group to which the real-time running gear of the smart treadmill belongs, so as to provide a comfortable exercise environment for the user.
[0005] A further object of the present application is that the number of gears included in the gear group is proportional to the total number, which further avoids the too frequent adjustment of the air conditioner.
[0006] In particular, the present application provides a control method of an air conditioner based on a smart treadmill, wherein the smart treadmill is signal connected with the air conditioner, and the control method comprises:
[0007] obtaining the start time of the smart treadmill and the first set parameter of the air conditioner corresponding to the start time;
[0008] obtaining the real-time running gear of the smart treadmill after starting and each gear;
[0009] dividing each gear into multiple gear groups; wherein each gear group includes at least one gear;
[0010] determining a gear group to which the real-time running gear belongs;
[0011] adjusting the first set parameter according to the gear group to which the real-time running gear belongs, so that the air conditioner runs according to the adjusted parameter.
[0012] Optionally, the dividing each gear into a plurality of gear groups comprises:
[0013] counting a total number of all gears of the intelligent treadmill;
[0014] determining a number of gears included in the gear group according to the total number; wherein the number of gears included in the gear group is proportional to the total number;
[0015] determining a number of gear groups of the gear group according to the total number and the number of gears included in the gear group;
[0016] dividing each gear into the number of gear groups.
[0017] Optionally, the determining the number of gears included in the gear group according to the total number comprises:
[0018] matching the total number with a preset gear number allocation table, so as to determine the number of gears included in the gear group; wherein the gear number allocation table comprises a plurality of different total numbers and the number of gears included in the gear group corresponding to each total number.
[0019] Optionally, the first set parameter comprises a first set temperature, and the adjusting the first set parameter according to the gear group to which the real-time running gear belongs comprises:
[0020] determining a temperature threshold that the first set temperature needs to be reduced according to the gear group to which the real-time running gear belongs; wherein the temperature threshold is proportional to a level of the gear group;
[0021] reducing the first set temperature by the temperature threshold.
[0022] Optionally, the first set parameter comprises a first set air outlet angle between an air outlet direction of the air conditioner and a direction in which the intelligent treadmill is located, and the adjusting the first set parameter according to the gear group to which the real-time running gear belongs comprises:
[0023] determining an angle threshold that the first set air outlet angle needs to be increased according to the gear group to which the real-time running gear belongs; wherein the angle threshold is proportional to a level of the gear group;
[0024] increase the first set air outlet angle by the angle threshold, so as to expand the first set air outlet angle away from the smart treadmill.
[0025] Optionally, after adjusting the first set parameter according to the gear group to which the real-time running gear belongs, the method comprises:
[0026] When the gear group to which the real-time running gear belongs changes, determining the interval number of gear groups between the changed gear group and the previous gear group;
[0027] determining an adjustment delay according to the interval number, wherein the adjustment delay is proportional to the interval number;
[0028] After the adjustment delay, adjusting the first set parameter according to the changed gear group.
[0029] Optionally, the method of determining an adjustment delay according to the interval number comprises:
[0030] matching the interval number with a preset delay time length table to obtain the adjustment delay; wherein the delay time length table comprises a plurality of different interval numbers and their corresponding adjustment delays.
[0031] Optionally, after adjusting the first set parameter according to the gear group to which the real-time running gear belongs, the method comprises:
[0032] obtaining the shutdown time of the smart treadmill and a second set parameter of the air conditioner corresponding to the shutdown time;
[0033] obtaining a shutdown time length according to the shutdown time;
[0034] restoring the second set parameter to the first set parameter corresponding to the start time according to the shutdown time length.
[0035] Optionally, the first set parameter comprises a first set temperature, and the second set parameter comprises a second set temperature; and / or the first set parameter comprises a first set air outlet angle between the air outlet direction of the air conditioner and the direction in which the smart treadmill is located, and the second set parameter comprises a second set air outlet angle between the air outlet direction of the air conditioner and the direction in which the smart treadmill is located;
[0036] the method of restoring the second set parameter to the first set parameter corresponding to the start time according to the shutdown time length comprises:
[0037] calculating the difference between the second set temperature and / or the second set air outlet angle and the first set temperature and / or the first set air outlet angle;
[0038] a comparison value is obtained according to the difference value; wherein the comparison value is proportional to the difference value;
[0039] a ratio of the difference value and the comparison value is calculated;
[0040] when the off duration is an integer multiple of the preset duration, the second set temperature and / or the second set air outlet angle are adjusted according to a product of the ratio and the integer multiple until the first set parameter corresponding to the start time is restored.
[0041] Based on the same concept, the application further provides an intelligent treadmill, comprising:
[0042] a memory and a processor, the memory storing a control program, the control program being executed by the processor to implement the control method of the air conditioner based on the intelligent treadmill according to any one of the above.
[0043] In the control method of the air conditioner based on the intelligent treadmill, the start time of the intelligent treadmill and the first set parameter of the air conditioner corresponding to the start time are obtained, the real-time running gear of the intelligent treadmill after starting and each gear are obtained, each gear is divided into multiple gear groups, the gear group to which the real-time running gear belongs is determined, the first set parameter is adjusted according to the gear group to which the real-time running gear belongs, so that the air conditioner runs according to the adjusted parameter, so that the environment in which the intelligent treadmill is located is more in line with the environment required by the user when exercising in the gear group to which the real-time running gear belongs, and the comfort of the user is improved. Moreover, adjusting the first set parameter according to the gear group to which the real-time running gear belongs can also avoid adjusting the air conditioner too frequently.
[0044] Further, when the off duration is an integer multiple of the preset duration, the second set temperature and / or the second set air outlet angle are adjusted according to a product of the ratio and the integer multiple until the first set parameter corresponding to the start time is restored, which gradually restores the first set parameter, avoids the environment parameter changing too fast, and ensures the comfort of the user.
[0045] The above and other objects, advantages and features of the application will become more apparent from the following detailed description of some embodiments thereof, taken in conjunction with the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS
[0046] Some specific embodiments of the application will be described in detail below with reference to the accompanying drawings. The same reference numbers in the drawings indicate the same or similar components or parts. Those skilled in the art should understand that these drawings are not necessarily drawn to scale. In the drawings:
[0047] Figure 1 is a flow chart of a control method of an air conditioner based on a smart treadmill according to an embodiment of the present application;
[0048] Figure 2 is a flow chart of a control method of an air conditioner based on a smart treadmill according to another embodiment of the present application;
[0049] Figure 3 is a structural schematic diagram of a smart treadmill according to an embodiment of the present application. DETAILED DESCRIPTION
[0050] Figure 1 is a flow chart of a control method of an air conditioner based on a smart treadmill according to an embodiment of the present application. The smart treadmill can be signal connected with the air conditioner, specifically, the smart treadmill can be signal connected with the air conditioner through Bluetooth or Wireless Fidelity (WIFI) and the like, so as to acquire the running parameters of the air conditioner and control the air conditioner. The control method can be applicable to the cooling mode or the heating mode of the air conditioner and the like. Referring to Figure 1 , the control method can include the following steps S102 to S110.
[0051] Step S102: acquiring the starting time of the smart treadmill and the first set parameter of the air conditioner corresponding to the starting time. When the smart treadmill starts, if the air conditioner is in the off state, a starting instruction can be sent to the air conditioner to start the air conditioner.
[0052] Step S104: acquiring the real-time running gear position of the smart treadmill after starting and each gear position.
[0053] Step S106: dividing each gear position into a plurality of gear position groups. Each gear position group includes at least one gear position. Generally, each gear position can be divided into a plurality of gear position groups according to the intensity arrangement order of the gear position. Specifically, for example, if the smart treadmill includes 10 gear positions, the 10 gear positions can be divided into gear position 1, gear position 2, and gear position 10 according to the intensity from low to high. Gear position 1 and 2 can be divided into gear position group 1, gear position 3 and 4 can be divided into gear position group 2, gear position 5 and 6 can be divided into gear position group 3, gear position 7 and 8 can be divided into gear position group 4, and gear position 9 and 10 can be divided into gear position group 5, that is, the intensity of each gear position in each gear position group is relatively close. The intensity of gear position group 1 is the lowest, and the intensity of gear position group 5 is the highest.
[0054] Step S108: determining the gear position group to which the real-time running gear position belongs. For example, when the real-time running gear position is gear position 2, it belongs to gear position group 1.
[0055] Step S110: adjusting the first set parameter according to the gear group to which the real-time running gear belongs, so that the air conditioner runs according to the adjusted parameter.
[0056] In the embodiment, the starting time of the intelligent treadmill and the first set parameter of the air conditioner corresponding to the starting time are obtained, the real-time running gear after the intelligent treadmill is started and each gear are obtained, each gear is divided into a plurality of gear groups, the gear group to which the real-time running gear belongs is determined, the first set parameter is adjusted according to the gear group to which the real-time running gear belongs, so that the air conditioner runs according to the adjusted parameter, so that the environment in which the intelligent treadmill is located is more in line with the environment required by the user when exercising in the gear group to which the real-time running gear belongs, and the comfort of the user is improved. Moreover, the first set parameter is adjusted according to the gear group to which the real-time running gear belongs, which can also avoid adjusting the air conditioner too frequently.
[0057] In an embodiment of the present application, dividing each gear into a plurality of gear groups can include:
[0058] Counting the total number of all gears of the intelligent treadmill;
[0059] Determining the number of gears included in the gear group according to the total number; wherein the number of gears included in the gear group is proportional to the total number;
[0060] Determining the number of gear groups according to the total number and the number of gears included in the gear group;
[0061] Dividing each gear into a number of gear groups.
[0062] In the embodiment, the number of gears included in the gear group is proportional to the total number, that is, the larger the total number of gears, the more gears included in a gear group. Specifically, for example, if the total number of gears is 10, the number of gears included in the gear group can be determined to be 2, and the number of gear groups is 5; if the total number of gears is 15, the number of gears included in the gear group can be determined to be 3, and the number of gear groups is 5. The number of gears included in the gear group is proportional to the total number, which can avoid too few gears included in the gear group, that is, the number of gear groups divided can be too large, thereby further avoiding adjusting the running parameter of the air conditioner too frequently. Of course, if it is convenient, no matter how many the total number of gears is, each gear can be divided into a preset number of gear groups, for example, divided into 3 gear groups or 5 gear groups. Such a division method is very simple and can also to some extent avoid adjusting the running parameter of the air conditioner too frequently.
[0063] In an embodiment of the present application, determining the number of gears included in the gear group according to the total number can include:
[0064] The total number and the preset gear number distribution table are matched to determine the gear number included in the gear group; wherein the gear number distribution table includes a plurality of different total numbers and the gear number included in the corresponding gear group.
[0065] In the embodiment, the gear number distribution table includes a plurality of different total numbers and the gear number included in the corresponding gear group, specifically, for example, the total number is 5, the gear group includes 1 gear; the total number is 10, the gear group includes 2 gears; the total number is 15, the gear group includes 3 gears; the total number is 20, the gear group includes 4 gears, etc. The total number and the preset gear number distribution table are matched to determine the gear number included in the gear group, which is a very simple way to determine the gear number included in a gear group. Generally, the number of gears included in each gear group is the same, of course, it can also be different. For example, when the total number of gears can be evenly distributed, the number of gears included in each gear group is the same. When the total number of gears cannot be evenly distributed, the number of gears included in each gear group can be different. Generally, when the total number of gears cannot be evenly distributed, the number of gears in the highest level gear group is the least, which is more conducive to ensuring the comfort of the environment.
[0066] In an embodiment of the application, the first set parameter includes a first set temperature, and adjusting the first set parameter according to the gear group to which the real-time running gear belongs can include:
[0067] Determining the temperature threshold to be subtracted from the first set temperature according to the gear group to which the real-time running gear belongs; wherein the temperature threshold is directly proportional to the level of the gear group;
[0068] Subtracting the temperature threshold from the first set temperature.
[0069] In the embodiment, the higher the gear group is, the greater the temperature threshold is, that is, the temperature threshold is proportional to the level of the gear group. Those skilled in the art can understand the level of the gear group, that is, the higher the level of the gear group is, the greater the exercise intensity is, and the lower the level of the gear group is, the smaller the exercise intensity is. The gear group 1 to the gear group 5 are arranged from low to high in level. Specifically, for example, the temperature threshold determined by the gear group 1 is 1; the temperature threshold determined by the gear group 2 is 2; the temperature threshold determined by the gear group 3 is 3; the temperature threshold determined by the gear group 4 is 4; and the temperature threshold determined by the gear group 5 is 5. If the gear group to which the real-time running gear belongs is the gear group 1, the first set temperature is reduced by the temperature threshold 1, and if the first set temperature is 26, that is, 26-1. If the gear group to which the real-time running gear belongs is the gear group 3, the first set temperature is reduced by the temperature threshold 3, and if the first set temperature is 26, that is, 26-3. If the gear group to which the real-time running gear belongs is the gear group 5, the first set temperature is reduced by the temperature threshold 5, and if the first set temperature is 26, that is, 26-5. The higher the gear group is, the greater the exercise intensity of the user is likely to be, and in order to avoid the user from overheating, a lower ambient temperature is required, and the temperature threshold is greater. The temperature threshold to be reduced from the first set temperature is determined according to the gear group to which the real-time running gear belongs, the first set temperature is reduced by the temperature threshold, so as to provide a lower comfortable temperature for the user and avoid the user from overheating. In addition, in order to avoid the ambient temperature being too low, the first set temperature reduced by the temperature threshold is further compared with the lowest preset threshold, and if the first set temperature reduced by the temperature threshold is lower than the lowest preset threshold, the lowest preset threshold is taken as the result of the first set temperature reduced by the temperature threshold. The lowest preset threshold can be 18 degrees, 19 degrees, or 20 degrees, etc. When the temperature threshold to be reduced from the first set temperature is determined according to the gear group to which the real-time running gear belongs, the gear group to which the real-time running gear belongs can be matched with the gear group temperature reference table, and the gear group temperature reference table includes each gear group and the corresponding temperature threshold to be reduced from the first set temperature.
[0070] In an embodiment of the application, the first set parameter includes a first set air outlet angle between the air outlet direction of the air conditioner and the direction in which the intelligent treadmill is located, and adjusting the first set parameter according to the gear group to which the real-time running gear belongs can include:
[0071] determining an angle threshold to be increased from the first set air outlet angle according to the gear group to which the real-time running gear belongs; wherein the angle threshold is proportional to the level of the gear group;
[0072] increasing the first set air outlet angle by the angle threshold, so as to expand the first set air outlet angle in a direction away from the intelligent treadmill.
[0073] In the embodiment, the first set air outlet angle between the air outlet direction of the air conditioner and the direction where the intelligent treadmill is located can be understood as follows: taking the air outlet of the air conditioner as a base point, the first connecting line between the air outlet direction at the air outlet of the air conditioner and the base point as the air outlet direction, the second connecting line between the base point and the position where the intelligent treadmill is located as the direction where the intelligent treadmill is located, and the included angle between the first connecting line and the second connecting line as the first set air outlet angle. The higher the gear group is, the greater the angle threshold is, that is, the angle threshold is proportional to the level of the gear group. Specifically, for example, the angle threshold determined by the gear group 1 is 5; the angle threshold determined by the gear group 2 is 10; the angle threshold determined by the gear group 3 is 15; the angle threshold determined by the gear group 4 is 20; and the angle threshold determined by the gear group 5 is 25. If the gear group to which the real-time running gear belongs is the gear group 1, the first set air outlet angle is increased by the angle threshold 5, and if the first set air outlet angle is 35, it is 35+5. If the gear group to which the real-time running gear belongs is the gear group 3, the first set air outlet angle is increased by the angle threshold 15, and if the first set air outlet angle is 35, it is 35+15. If the gear group to which the real-time running gear belongs is the gear group 5, the first set air outlet angle is increased by the angle threshold 25, and if the first set air outlet angle is 35, it is 35+25. The angle threshold that needs to be added to the first set air outlet angle is determined according to the gear group to which the real-time running gear belongs, wherein the higher the gear group is, the greater the angle threshold is, and the first set air outlet angle is increased by the angle threshold, so that the first set air outlet angle is enlarged away from the intelligent treadmill, which can make the air blown by the air conditioner gradually away from the intelligent treadmill, avoid the air from the user too fast, and avoid the user from feeling too hot during exercise. When the angle threshold that needs to be added to the first set air outlet angle is determined according to the gear group to which the real-time running gear belongs, the gear group to which the real-time running gear belongs and the gear group angle reference table can be matched, and the gear group angle reference table includes each gear group and the angle threshold that needs to be added to the corresponding first set air outlet angle.
[0074] In an embodiment of the application, after the first set parameter is adjusted according to the gear group to which the real-time running gear belongs, the following can be included:
[0075] When the gear group to which the real-time running gear belongs changes, the interval number of gear groups between the changed gear group and the previous gear group is determined.
[0076] The adjustment delay is determined according to the interval number, wherein the adjustment delay is proportional to the interval number.
[0077] After the adjustment delay, the first set parameter is adjusted according to the changed gear group.
[0078] In the embodiment, when the gear group to which the real-time running gear belongs changes, the adjustment of the first setting parameter can be appropriately delayed to better adapt the user. Generally, the greater the interval number, the greater the change in the user's exercise intensity, and thus the longer the adaptation time. Therefore, the adjustment delay is determined according to the interval number, and the adjustment delay is proportional to the interval number, which is beneficial to better adapt the user to the environment, and this effect is more obvious when the level of the gear group changes from high to low.
[0079] In an embodiment of the application, determining the adjustment delay according to the interval number can include:
[0080] The interval number is matched with a preset delay time length table to obtain the adjustment delay; wherein the delay time length table includes a plurality of different interval numbers and corresponding adjustment delays.
[0081] In the embodiment, the interval number is matched with a preset delay time length table to obtain the adjustment delay, which is a very simple way to determine the adjustment delay. Specifically, for example, the interval number between gear group 2 and gear group 1 is 1, and the adjustment delay can be 1 minute; the interval number between gear group 3 and gear group 1 is 2, and the adjustment delay can be 3 minutes; the interval number between gear group 4 and gear group 1 is 3, and the adjustment delay can be 5 minutes; the interval number between gear group 5 and gear group 1 is 4, and the adjustment delay can be 6 minutes.
[0082] In an embodiment of the application, after adjusting the first setting parameter according to the gear group to which the real-time running gear belongs, the method can include:
[0083] Obtaining the shutdown time of the smart treadmill and the second setting parameter of the air conditioner corresponding to the shutdown time;
[0084] Obtaining the shutdown time of the smart treadmill and the second setting parameter of the air conditioner corresponding to the shutdown time;
[0085] According to the shutdown time, the second setting parameter is restored to the first setting parameter corresponding to the start time.
[0086] In the embodiment, after adjusting the first setting parameter according to the gear group to which the real-time running gear belongs, the shutdown time of the smart treadmill and the second setting parameter of the air conditioner corresponding to the shutdown time are obtained, and the second setting parameter is restored to the first setting parameter corresponding to the start time according to the shutdown time, thereby gradually restoring the first setting parameter to provide a comfortable environment for the user who stops exercising.
[0087] In one embodiment of the present application, the first setting parameter can include a first setting temperature, and the second setting parameter can include a second setting temperature; and / or the first setting parameter can include a first setting air outlet angle between an air outlet direction of the air conditioner and a direction in which the intelligent treadmill is located, and the second setting parameter can include a second setting air outlet angle between the air outlet direction of the air conditioner and the direction in which the intelligent treadmill is located.
[0088] The second setting parameter is restored to the first setting parameter corresponding to the start time according to the closing duration can include:
[0089] A difference between the second setting temperature and / or the second setting air outlet angle and the first setting temperature and / or the first setting air outlet angle is calculated.
[0090] A comparison value is obtained according to the difference; wherein the comparison value is directly proportional to the difference.
[0091] A ratio of the difference and the comparison value is calculated.
[0092] When the closing duration is an integer multiple of the preset duration, the second setting temperature and / or the second setting air outlet angle is adjusted according to a product of the ratio and the integer multiple until the second setting temperature and / or the second setting air outlet angle is restored to the first setting parameter corresponding to the start time.
[0093] In the embodiment, the integer multiple can be an integer greater than or equal to 1. The comparison value is obtained according to the difference value. Specifically, the difference value can be matched with a preset difference value comparison table. The difference value comparison table can include a plurality of different difference values and corresponding comparison values. For example, when the difference value between the second set temperature and the first set temperature is 1, the comparison value is 1; when the difference value between the second set temperature and the first set temperature is 2, the comparison value is 2; when the difference value between the second set temperature and the first set temperature is 3, the comparison value is 3; when the difference value between the second set temperature and the first set temperature is 4, the comparison value is 4; when the difference value between the second set air outlet angle and the first set air outlet angle is 0-5, the comparison value is 1; when the difference value between the second set air outlet angle and the first set air outlet angle is 6-10, the comparison value is 2; when the difference value between the second set air outlet angle and the first set air outlet angle is 11-15, the comparison value is 3; when the difference value between the second set air outlet angle and the first set air outlet angle is 16-20, the comparison value is 4; when the difference value between the second set air outlet angle and the first set air outlet angle is 21-25, the comparison value is 5; and when the difference value between the second set air outlet angle and the first set air outlet angle is 26-30, the comparison value is 6. The preset time length can be any value between 1-10 minutes, such as 2 minutes, 3 minutes, 5 minutes, 8 minutes, etc. Assuming that the first set temperature is 26 degrees and the second set temperature is 24 degrees, the difference value is 2 and the comparison value is 2, and the ratio is 1. When the closing time is 1 times the preset time length, 24+1*1 is 25; and when the closing time is 2 times the preset time length, 24+1*2 is 26. Assuming that the first set air outlet angle is 30 degrees and the second set air outlet angle is 60 degrees, the difference value is 30 and the comparison value is 6, and the ratio is 5. When the closing time is 1 times the preset time length, 60-5*1 is 55; when the closing time is 2 times the preset time length, 60-5*2 is 50; when the closing time is 3 times the preset time length, 60-5*3 is 45; when the closing time is 4 times the preset time length, 60-5*4 is 40; when the closing time is 5 times the preset time length, 60-5*5 is 35; and when the closing time is 6 times the preset time length, 60-5*6 is 30. When the closing time is an integer multiple of the preset time length, the second set temperature and / or the second set air outlet angle are adjusted according to the product of the ratio and the integer multiple, until the first set parameter corresponding to the start time is restored, gradually restoring the first set parameter and avoiding too fast changes in the environmental parameter, thereby ensuring user comfort. The preset time length can be any value between 2-10 minutes, such as 3 minutes, 5 minutes, etc.
[0094] Figure 2 is a flowchart of a control method of an air conditioner based on an intelligent treadmill according to another embodiment of the present application, referring to Figure 2 , the control method can include:
[0095] Step S202: Obtain the start time of the smart treadmill and the first set parameter of the air conditioner corresponding to the start time. The first set parameter can include the first set temperature and / or the first set air outlet angle.
[0096] Step S204: Obtain the real-time running gear position after the smart treadmill is started and each gear position.
[0097] Step S206: Divide each gear position into a plurality of gear position groups. Each gear position group includes at least one gear position.
[0098] Step S208: Determine the gear position group to which the real-time running gear position belongs.
[0099] Step S210: According to the gear position group to which the real-time running gear position belongs, determine the temperature threshold value that the first set temperature needs to be reduced by, and reduce the first set temperature by the temperature threshold value; and / or according to the gear position group to which the real-time running gear position belongs, determine the angle threshold value that the first set air outlet angle needs to be increased by, and increase the first set air outlet angle by the angle threshold value.
[0100] Step S212: Obtain the closing time of the smart treadmill and the second set parameter of the air conditioner corresponding to the closing time. The second set parameter can include the second set temperature and / or the second set air outlet angle.
[0101] Step S214: Obtain the closing duration according to the closing time.
[0102] Step S216: Calculate the difference between the second set temperature and / or the second set air outlet angle and the first set temperature and / or the first set air outlet angle.
[0103] Step S218: Obtain a comparison value according to the difference. The comparison value is directly proportional to the difference.
[0104] Step S220: Calculate the ratio of the difference and the comparison value.
[0105] Step S222: When the closing duration is an integer multiple of the preset duration, adjust the second set temperature and / or the second set air outlet angle according to the product of the ratio and the integer multiple, until it returns to the first set parameter corresponding to the start time.
[0106] Referring to Figure 3 , based on the same concept, the present application also provides a smart treadmill 300. The smart treadmill 300 can include a memory 301 and a processor 302, the memory 301 stores a control program, and the control program is executed by the processor 302 to implement the control method of the air conditioner based on the smart treadmill according to any one of the above embodiments.
[0107] Based on the same concept, the application further provides a smart air conditioner. The smart air conditioner can include a memory and a processor, the memory storing a control program, the control program being executed by the processor to implement the control method of the smart treadmill-based air conditioner according to any one of the above embodiments.
[0108] Any of the above embodiments can be combined with each other, and according to any one of the above preferred embodiments or a combination of multiple preferred embodiments, the embodiments of the application can achieve the following beneficial effects:
[0109] In the control method of the smart treadmill-based air conditioner, the start time of the smart treadmill and the first set parameter corresponding to the start time of the air conditioner are obtained, the real-time running gear of the smart treadmill after starting and each gear are obtained, each gear is divided into multiple gear groups, the gear group to which the real-time running gear belongs is determined, the first set parameter is adjusted according to the gear group to which the real-time running gear belongs, so that the air conditioner runs according to the adjusted parameter, so that the environment in which the smart treadmill is located is more in line with the environment required by the user when exercising in the gear group to which the real-time running gear belongs, and the comfort of the user is improved. And adjusting the first set parameter according to the gear group to which the real-time running gear belongs can also avoid adjusting the air conditioner too frequently.
[0110] At this point, those skilled in the art should recognize that although the application has been shown and described in detail in this paper, many other variants or modifications conforming to the principles of the application can be directly determined or deduced according to the disclosure of the application without departing from the spirit and scope of the application. Therefore, the scope of the application should be understood and recognized as covering all these other variants or modifications.
Claims
1. A control method of an air conditioner based on a smart treadmill, wherein the smart treadmill is signal connected with the air conditioner, and the control method comprises: obtaining a starting time of the smart treadmill and a first setting parameter of the air conditioner corresponding to the starting time; obtaining a real-time running gear of the smart treadmill after starting and each gear; dividing each of the gears into a plurality of gear groups; wherein each of the gear groups comprises at least one gear; determining a gear group to which the real-time running gear belongs; adjusting the first setting parameter according to the gear group to which the real-time running gear belongs, so that the air conditioner runs according to the adjusted parameter; wherein the dividing each of the gears into a plurality of gear groups comprises: counting a total number of all gears of the smart treadmill; determining a number of gears included in the gear group according to the total number; wherein the number of gears included in the gear group is proportional to the total number; determining a number of gear groups of the gear group according to the total number and the number of gears included in the gear group; dividing each of the gears into the number of gear groups; after the adjusting the first setting parameter according to the gear group to which the real-time running gear belongs, comprising: when the gear group to which the real-time running gear belongs changes, determining an interval number of gear groups between the gear group after the change and the gear group before the change; determining an adjustment delay according to the interval number, wherein the adjustment delay is proportional to the interval number; after the adjustment delay, adjusting the first setting parameter according to the gear group after the change; the determining the adjustment delay according to the interval number comprises: matching the interval number with a preset delay time length table to obtain the adjustment delay; wherein the delay time length table comprises a plurality of different interval numbers and corresponding adjustment delays thereof. 2.The control method according to claim 1, wherein the determining the number of gears included in the gear group according to the total number comprises: matching the total number with a preset gear number allocation table to determine the number of gears included in the gear group; wherein the gear number allocation table comprises a plurality of different total numbers and corresponding numbers of gears included in the gear group. 3.The control method according to claim 1, wherein the first setting parameter comprises a first setting temperature, and the adjusting the first setting parameter according to the gear group to which the real-time running gear belongs comprises: determining a temperature threshold that the first setting temperature needs to be reduced according to the gear group to which the real-time running gear belongs; wherein the temperature threshold is proportional to a level of the gear group; reducing the first setting temperature by the temperature threshold. 4.The control method according to claim 1, wherein the first setting parameter comprises a first setting air outlet angle between an air outlet direction of the air conditioner and a direction in which the smart treadmill is located, and the adjusting the first setting parameter according to the gear group to which the real-time running gear belongs comprises: determining an angle threshold value that the first set air outlet angle needs to increase according to a gear group to which the real-time running gear belongs; wherein the angle threshold value is proportional to a level of the gear group; increasing the first set air outlet angle by the angle threshold value, so as to expand the first set air outlet angle away from the smart treadmill.
5. The control method of claim 1, wherein, after the adjusting the first set parameter according to the gear group to which the real-time running gear belongs, comprising: obtaining a shutdown time of the smart treadmill and a second set parameter of the air conditioner corresponding to the shutdown time; obtaining a shutdown duration according to the shutdown time; restoring the second set parameter to the first set parameter corresponding to the startup time according to the shutdown duration.
6. The control method of claim 5, wherein, the first set parameter comprises a first set temperature, and the second set parameter comprises a second set temperature; and / or the first set parameter comprises a first set air outlet angle between an air outlet direction of the air conditioner and a direction in which the smart treadmill is located, and the second set parameter comprises a second set air outlet angle between the air outlet direction of the air conditioner and the direction in which the smart treadmill is located; the restoring the second set parameter to the first set parameter corresponding to the startup time according to the shutdown duration comprises: calculating a difference between the second set temperature and the first set temperature and / or a difference between the second set air outlet angle and the first set air outlet angle; obtaining a comparison value according to the difference; wherein the comparison value is proportional to the difference; calculating a ratio of the difference and the comparison value; when the shutdown duration is an integer multiple of a preset duration, adjusting the second set temperature and / or the second set air outlet angle according to a product of the ratio and the integer multiple until the first set parameter corresponding to the startup time is restored.
7. A smart treadmill, comprising: a memory and a processor, wherein the memory stores a control program, and the control program is executed by the processor to implement the control method of the air conditioner based on the smart treadmill according to any one of claims 1-6.
Citation Information
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