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's settings based on the real-time running speed. This eliminates the inconvenience of manually adjusting the air conditioner during exercise, creating a more comfortable workout environment and enhancing the user experience and the level of intelligence.
Patent Information
- Application Number
- CN202211073345.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-09-02
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2042-09-02
AI Technical Summary
Existing air conditioners cannot automatically adjust the temperature, airflow angle, and airflow volume according to the running time of a smart treadmill, requiring users to manually adjust these settings during exercise, which is inconvenient.
By connecting the smart treadmill to the air conditioner, the system can obtain the start time and real-time running speed, and automatically adjust the air conditioner's settings, such as temperature and airflow angle, to adapt to the user's exercise intensity and duration, thus achieving automatic adjustment.
It improves user comfort, reduces user operations, enhances the intelligence level of smart treadmills, and avoids discomfort caused by unsuitable temperature or wind direction.
Smart Images

Figure CN115614857B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of household appliance control, and in particular to a control method of an air conditioner based on a smart treadmill and the smart treadmill. BACKGROUND
[0002] With the gradual improvement of people's living standards, more and more people start to use treadmills for exercise. Compared with outdoor exercise, exercising on a treadmill in a home environment or a gym can easily avoid the inconvenience brought by rainy weather or high-temperature weather. However, as the exercise time on the treadmill becomes longer, people will feel hotter and hotter. The existing air conditioner cannot automatically adjust the running parameters such as temperature, air outlet angle, and air outlet volume according to the running time of the treadmill, and the user needs to personally adjust the air conditioner during exercise, which brings inconvenience to 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 to overcome the above problems or at least partially solve the above problems.
[0004] An object of the present application is to adjust the running state of the air conditioner according to the real-time running speed of the smart treadmill to provide a comfortable environment for the user.
[0005] A further object of the present application is to restore the running state of the air conditioner to the running state when the smart treadmill is started after the smart treadmill is stopped to provide a comfortable environment for the user.
[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 starting time and the real-time running speed of the smart treadmill;
[0008] obtaining the first set parameter of the air conditioner corresponding to the starting time;
[0009] adjusting the first set parameter according to the real-time running speed, so that the air conditioner runs according to the adjusted parameter.
[0010] Optionally, the first set parameter includes a first set temperature and / or 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;
[0011] the adjusting the first set parameter according to the real-time running speed comprises:
[0012] the real-time effective speed is greater than a preset speed as a real-time effective speed;
[0013] calculating a duration of the real-time effective speed;
[0014] decreasing the first set temperature as the duration increases; and / or
[0015] increasing the first set air outlet angle as the duration increases, so that the first set air outlet angle expands in a direction away from the intelligent treadmill.
[0016] Optionally, the decreasing the first set temperature as the duration increases comprises:
[0017] obtaining a first comparison duration, and comparing the duration with the first comparison duration;
[0018] when the duration is an integer multiple of the first comparison duration, decreasing the first set temperature by a product of a set first adjustment temperature and the integer multiple;
[0019] the increasing the first set air outlet angle as the duration increases comprises:
[0020] obtaining a first comparison duration, and comparing the duration with the first comparison duration;
[0021] when the duration is an integer multiple of the first comparison duration, increasing the first set air outlet angle by a product of a set first adjustment angle and the integer multiple.
[0022] Optionally, after the decreasing the first set temperature by the product of the set first adjustment temperature and the integer multiple, comprising:
[0023] judging whether a temperature value after the first set temperature is decreased by the product of the set first adjustment temperature and the integer multiple is less than a preset minimum temperature value;
[0024] if yes, taking the preset minimum temperature value as the temperature value after the first set temperature is decreased by the product of the set first adjustment temperature and the integer multiple.
[0025] Optionally, the obtaining a first comparison duration comprises:
[0026] obtaining a set time of the first set parameter;
[0027] calculating a time interval between the set time and the start time;
[0028] matching the time interval with a preset comparison duration table, wherein the comparison duration table comprises a plurality of interval durations and corresponding comparison durations, and the comparison duration is proportional to the interval duration;
[0029] matching the comparison duration corresponding to the interval duration closest to the time interval from the comparison duration table as the first comparison duration.
[0030] Optionally, the duration of the real-time effective speed comprises:
[0031] accumulating the duration of the real-time effective speed by a timer.
[0032] Optionally, after adjusting the first set parameter according to the real-time running speed, comprising:
[0033] obtaining the shutdown time of the intelligent treadmill;
[0034] obtaining the second set parameter of the air conditioner corresponding to the shutdown time;
[0035] restoring the second set parameter to the first set parameter corresponding to the start time.
[0036] Optionally, the second set parameter comprises a second set temperature and / or a second set air outlet angle between the air outlet direction of the air conditioner and the direction of the intelligent treadmill;
[0037] The second set parameter is restored to the first set parameter corresponding to the start time, comprising:
[0038] obtaining the shutdown duration of the intelligent treadmill according to the shutdown time;
[0039] increasing the second set temperature with the increase of the shutdown duration; and / or
[0040] decreasing the second set air outlet angle with the increase of the shutdown duration, so that the second set air outlet angle decreases towards the direction close to the intelligent treadmill.
[0041] Optionally, the second set temperature increases with the increase of the shutdown duration, comprising:
[0042] obtaining the second comparison duration set, comparing the shutdown duration with the second comparison duration;
[0043] when the shutdown duration is an integer multiple of the second comparison duration, increasing the second set temperature by the product of the second adjustment temperature set and the integer multiple;
[0044] The second set air outlet angle is reduced with the increase of the closing time length, and the second set air outlet angle is reduced with the increase of the closing time length comprises:
[0045] The second comparison time length is obtained, and the closing time length and the second comparison time length are compared.
[0046] When the closing time length is an integer multiple of the second comparison time length, the second set air outlet angle is reduced by a product of the second adjustment angle and the integer multiple.
[0047] Based on the same concept, the application also provides an intelligent treadmill, comprising:
[0048] 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 intelligent treadmill according to any one of the above.
[0049] In the control method of the air conditioner based on the intelligent treadmill, the starting time and the real-time running speed of the intelligent treadmill are obtained, the first set parameter of the air conditioner corresponding to the starting time is obtained, and the first set parameter is adjusted according to the real-time running speed, so that the air conditioner runs according to the adjusted parameter, which realizes automatic adjustment of the air conditioner according to the real-time running speed of the intelligent treadmill, provides a comfortable environment for the user in the environment of the intelligent treadmill, improves the comfort of the user, avoids manual adjustment of the air conditioner during the exercise of the user, reduces the operation of the user, improves the use experience of the user, and improves the intelligent level of the intelligent treadmill.
[0050] Further, when the real-time running speed is less than or equal to the preset speed, the user's exercise amount is not large, and it is not easy to feel hot, so the first set parameter of the air conditioner can not be adjusted, that is, the air conditioner remains in the current running state, avoiding the user from feeling too cold. When the real-time running speed is greater than the preset speed, the user may be in a fast walking, fat loss or shaping state, and the user is easy to be in a hot state, and the longer the duration, the hotter the user may feel. Therefore, the real-time effective speed is taken as the real-time effective speed greater than the preset speed, the duration of the real-time effective speed is calculated, the first set temperature is reduced with the increase of the duration, so that the temperature of the environment of the intelligent treadmill is gradually reduced, avoiding the possibility of too fast reduction of the environment temperature, preventing the user from getting cold, and improving the comfort of the user. And the first set air outlet angle is increased with the increase of the duration, so that the first set air outlet angle is expanded away from the intelligent treadmill, so that the wind blown by the air conditioner gradually moves away from the intelligent treadmill, which can not only reduce the situation of cold wind directly blowing on the user, but also avoid the situation that the wind suddenly moves away from the user and causes the user to feel uncomfortable.
[0051] The above and other objects, advantages and features of the present application will become more apparent from the following detailed description considered in conjunction with the accompanying drawings, in which: BRIEF DESCRIPTION OF DRAWINGS
[0052] Some specific embodiments of the present application will now be described in detail with reference to the accompanying drawings, which are provided by way of example and are not limiting of the present application. Like reference numerals refer to similar or identical elements throughout the description. It should be understood that the drawings are not necessarily to scale. In the figures:
[0053] 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;
[0054] 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;
[0055] Figure 3 is a structural schematic diagram of a smart treadmill according to an embodiment of the present application. DETAILED DESCRIPTION
[0056] 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 S106.
[0057] Step S102: acquiring the starting time and the real-time running speed of the smart treadmill.
[0058] In this step, the starting time can be the time when the running belt of the smart treadmill starts to start, and the real-time running speed is the real-time running speed of the running belt.
[0059] Step S104: acquiring the first set parameter of the air conditioner corresponding to the starting time.
[0060] Step S106: adjusting the first set parameter according to the real-time running speed, so that the air conditioner operates according to the adjusted parameter.
[0061] In the embodiment, the starting time and the real-time running speed of the intelligent treadmill are acquired, the first setting parameter corresponding to the starting time of the air conditioner is acquired, and the first setting parameter is adjusted according to the real-time running speed, so that the air conditioner is operated according to the adjusted parameter, the air conditioner is automatically adjusted according to the real-time running speed of the intelligent treadmill, the comfortable environment is provided for the user in the environment of the intelligent treadmill, the comfort of the user is improved, the manual adjustment of the air conditioner during the exercise of the user is avoided, the operation of the user is reduced, the use experience of the user is improved, and the intelligent level of the intelligent treadmill is improved. In addition, when the intelligent treadmill is started, if the air conditioner is in the closed state, a starting instruction can also be sent to the air conditioner to start the air conditioner.
[0062] In an embodiment of the application, the first setting parameter can include a first setting temperature and / or a first setting air outlet angle between the air outlet direction of the air conditioner and the direction in which the intelligent treadmill is located. The first setting air outlet angle between the air outlet direction of the air conditioner and the direction in which the intelligent treadmill is located can be understood as that the outlet of the air conditioner is taken as a base point, a first connecting line between the base point and the air outlet direction of the air conditioner is taken as the air outlet direction, a second connecting line between the base point and the position of the intelligent treadmill is taken as the direction in which the intelligent treadmill is located, and an included angle between the first connecting line and the second connecting line is taken as the first setting air outlet angle. Of course, the first setting parameter can also include an air outlet amount and other parameters.
[0063] Adjusting the first setting parameter according to the real-time running speed can include:
[0064] Taking the speed greater than the preset speed in the real-time running speed as a real-time effective speed;
[0065] Calculating the duration of the real-time effective speed;
[0066] Making the first setting temperature decrease with the increase of the duration; and / or
[0067] Making the first setting air outlet angle increase with the increase of the duration, so that the first setting air outlet angle expands in a direction away from the intelligent treadmill.
[0068] In the embodiment, the preset speed can be any value within 6 kilometers per hour or less, for example, 4 kilometers per hour or 5 kilometers per hour, that is, the speed of the smart treadmill in the slow walking mode. When the real-time running speed is less than or equal to the preset speed, the user's exercise amount is not large, and it is not easy to feel hot, so the first set parameter of the air conditioner can not be adjusted, that is, the air conditioner remains in the current running state, avoiding the user from feeling too cold. When the real-time running speed is greater than the preset speed, the user can be in a fast walking, fat loss or shaping state, and the user is easy to be in a hot state, and the longer the duration, the more the user can feel hot. Therefore, the real-time running speed greater than the preset speed is taken as the real-time effective speed, the duration of the real-time effective speed is calculated, the first set temperature is reduced with the increase of the duration, so that the temperature of the environment where the smart treadmill is gradually reduced, avoiding the possibility of too fast reduction of the environment temperature, preventing the user from getting cold, and improving the comfort of the user. And the first set air outlet angle is increased with the increase of the duration, so that the first set air outlet angle is expanded away from the smart treadmill, so that the air blown by the air conditioner gradually moves away from the smart treadmill, which can not only reduce the situation of cold wind directly blowing on the user, but also avoid the situation that the user feels uncomfortable when the wind suddenly moves away from the user.
[0069] In an embodiment of the application, the first set temperature is reduced with the increase of the duration can include:
[0070] The first comparison duration is obtained, and the duration and the first comparison duration are compared;
[0071] When the duration is an integer multiple of the first comparison duration, the first set temperature is reduced by the product of the set first adjustment temperature and the integer multiple;
[0072] The first set air outlet angle is increased with the increase of the duration can include:
[0073] The first comparison duration is obtained, and the duration and the first comparison duration are compared;
[0074] When the duration is an integer multiple of the first comparison duration, the first set air outlet angle is increased by the product of the set first adjustment angle and the integer multiple.
[0075] In the embodiment, the integer multiple can generally be an integer greater than or equal to 1. The first adjustment temperature can be set as required, for example, set to 0.5 or 1 or 2, etc. Generally, the first adjustment temperature is directly proportional to the first set temperature. When the duration is an integer multiple of the first comparison duration, the first set temperature is reduced by the product of the set first adjustment temperature and the integer multiple, so that the set temperature of the air conditioner gradually decreases with the increase of the duration, avoiding too abrupt reduction of the temperature of the environment where the intelligent treadmill is located, thereby ensuring the comfort of the user. Specifically, for example, assuming that the first set temperature is 26 degrees and the first adjustment temperature is 0.5 degrees, when the duration is 1 times the first comparison duration, the first set temperature is reduced by the first adjustment temperature, i.e., 26-0.5; when the duration is 2 times the first comparison duration, the first set temperature is reduced by 2 times the first adjustment temperature, i.e., 26-0.5*2; when the duration is 3 times the first comparison duration, the first set temperature is reduced by 3 times the first adjustment temperature, i.e., 26-0.5*3; when the duration is 6 times the first comparison duration, the first set temperature is reduced by 6 times the first adjustment temperature, i.e., 26-0.5*6.
[0076] The first adjustment angle can be set as required, for example, set to any value between 3-10, for example, set to 4, 5, 6 or 7. Generally, the first adjustment angle is inversely proportional to the first set temperature. When the duration is an integer multiple of the first comparison duration, the first set air outlet angle is increased by the product of the set first adjustment angle and the integer multiple, so that the first set air outlet angle is expanded in a direction away from the intelligent treadmill, so that the air outlet of the air conditioner gradually moves away from the intelligent treadmill with the increase of the duration, avoiding too abrupt change of the angle of the air outlet of the air conditioner, thereby providing a comfortable environment for the user. Specifically, for example, assuming that the first set air outlet angle is 30 degrees and the first adjustment angle is 5 degrees, when the duration is 1 times the first comparison duration, the first set air outlet angle is increased by the first adjustment angle, i.e., 30+5; when the duration is 2 times the first comparison duration, the first set air outlet angle is increased by 2 times the first adjustment angle, i.e., 30+5*2; when the duration is 3 times the first comparison duration, the first set air outlet angle is increased by 3 times the first adjustment angle, i.e., 30+5*3; when the duration is 6 times the first comparison duration, the first set air outlet angle is increased by 6 times the first adjustment angle, i.e., 30+5*6.
[0077] In some other embodiments of the present application, the first adjustment temperature can also be set by matching the first set temperature with a preset adjustment temperature table, wherein the preset adjustment temperature table comprises a plurality of different set temperatures and adjustment temperatures corresponding to each set temperature, matching one closest to the first set temperature from each set temperature, and taking the adjustment temperature corresponding to the closest set temperature as the first adjustment temperature. Moreover, the adjustment temperature in the preset adjustment temperature table is proportional to the set temperature, that is, the greater the set temperature, the greater the adjustment temperature, so that when the first adjustment temperature is high, the temperature can be quickly reduced, thereby improving the user's comfort, and when the first adjustment temperature is low, the temperature can be slowly reduced, thereby allowing the user to slowly enter a colder environment and improving the user's comfort. Specifically, for example, when the set temperature in the preset adjustment temperature table is 29 degrees, the adjustment temperature is 1.5 degrees; when the set temperature in the preset adjustment temperature table is 28 degrees, the adjustment temperature is 1 degree; when the set temperature in the preset adjustment temperature table is 26 degrees, the adjustment temperature is 0.5 degree, and so on.
[0078] In some other embodiments of the present application, the first adjustment angle can also be set by matching the first set temperature with a preset adjustment angle table, wherein the preset adjustment angle table comprises a plurality of different set temperatures and adjustment angles corresponding to each set temperature, matching one closest to the first set temperature from each set temperature, and taking the adjustment angle corresponding to the closest set temperature as the first adjustment angle. Moreover, the adjustment angle in the preset adjustment angle table is inversely proportional to the set temperature, that is, the greater the set temperature, the smaller the adjustment angle, so that when the first adjustment temperature is high, the air blown by the air conditioner can be relatively slowly away from the intelligent treadmill, thereby avoiding overheating of the user, and when the first adjustment temperature is low, the air blown by the air conditioner can be relatively quickly away from the intelligent treadmill, thereby avoiding overcooling of the user and ensuring the user's comfort. Specifically, when the set temperature in the preset adjustment angle table is 28 degrees, the adjustment angle is 3 degrees; when the set temperature in the preset adjustment angle table is 27 degrees, the adjustment angle is 4 degrees; when the set temperature in the preset adjustment angle table is 26 degrees, the adjustment angle is 5 degrees; and when the set temperature in the preset adjustment angle table is 25 degrees, the adjustment angle is 7 degrees.
[0079] In an embodiment of the present application, after the first set temperature is reduced by the product of the set first adjustment temperature and the integer multiple, the following can be included:
[0080] determining whether the temperature value after the first set temperature is reduced by the product of the set first adjustment temperature and the integer multiple is less than a preset minimum temperature value;
[0081] if yes, taking the preset minimum temperature value as the temperature value after the first set temperature is reduced by the product of the set first adjustment temperature and the integer multiple.
[0082] In the embodiment, in order to avoid the discomfort caused by the adjusted temperature of the air conditioner being too low, after the first set temperature is reduced by the product of the set first adjustment temperature and the integer multiple, it is further compared whether the reduced temperature is lower than the preset minimum temperature, if lower than the preset minimum temperature, the preset minimum temperature is taken as the adjusted temperature, and even if the continuous duration continues to increase, the air conditioner still operates according to the preset minimum temperature and no longer reduces the temperature. The preset minimum temperature value can be any value between 19-23, for example, 20 degrees, 21 degrees, 22 degrees, etc.
[0083] In an embodiment of the present application, the first comparison duration can be obtained by:
[0084] obtaining the set time of the first set parameter;
[0085] calculating the time interval between the set time and the start time;
[0086] matching the time interval with the preset comparison duration table; wherein the comparison duration table includes a plurality of interval durations and comparison durations corresponding thereto, and the comparison duration is proportional to the interval duration;
[0087] matching the comparison duration corresponding to the interval duration closest to the time interval from the comparison duration table as the first comparison duration.
[0088] In the embodiment, the comparison duration table includes a plurality of interval durations and comparison durations corresponding thereto, for example, the interval duration is 5 minutes and the comparison duration is 3 minutes; the interval duration is 7 minutes and the comparison duration is 4 minutes; the interval duration is 10 minutes and the comparison duration is 5 minutes; the interval duration is 15 minutes and the comparison duration is 7 minutes; the interval duration is 20 minutes and above and the comparison duration is 10 minutes. The greater the time interval between the set time and the start time, the longer the air conditioner is turned on, and the environment parameter of the smart treadmill is closer to the first set parameter of the air conditioner, for example, the environment temperature is equal to or close to the first set temperature of the air conditioner. The smaller the time interval, the later the air conditioner is turned on, and the environment of the smart treadmill may not reach the first set parameter of the air conditioner, for example, the environment temperature is significantly higher than the first set temperature of the air conditioner, at this time, the first set parameter of the air conditioner needs to be adjusted faster. Therefore, the comparison duration of the comparison duration table is proportional to the interval duration, and the comparison duration corresponding to the interval duration closest to the time interval is selected from the comparison duration table as the first comparison duration, which can adjust the first set parameter of the air conditioner according to the difference between the parameter of the environment where the smart treadmill is located and the first set parameter of the air conditioner, and provide a comfortable environment for the user.
[0089] In some other embodiments of the present application, the first comparison duration can be obtained by:
[0090] The first set temperature is matched with a preset second comparison duration table, wherein the second comparison duration table comprises a plurality of different temperatures and comparison durations corresponding to the temperatures, a temperature closest to the first set temperature is matched from the temperatures, and a comparison duration corresponding to the closest temperature is taken as the first comparison duration. Moreover, the comparison duration of the second comparison duration table is inversely proportional to the temperature, that is, the greater the temperature, the smaller the comparison duration. When the first adjustment temperature is high, a smaller first comparison duration can be obtained, so that the temperature of the environment where the intelligent treadmill is located can be reduced faster to avoid overheating of the user; when the first adjustment temperature is low, a larger first comparison duration can be obtained, so that the temperature of the environment where the intelligent treadmill is located can be reduced slower to avoid overcooling of the user. Specifically, for example, the temperature of the second comparison duration table is 28 degrees, and the comparison duration is 5 minutes; the temperature is 27 degrees, and the comparison duration is 7 minutes; the temperature is 26 degrees, and the comparison duration is 8 minutes; and the temperature is 25 degrees, and the comparison duration is 10 minutes. Of course, the first comparison duration can also be set according to actual needs, for example, set to any value between 5-10 minutes.
[0091] In an embodiment of the present application, the duration of the real-time effective speed can include:
[0092] The duration of the real-time effective speed is accumulated by a timer.
[0093] In the embodiment, the duration of the real-time effective speed is accumulated by a timer, that is, when the real-time running speed is less than or equal to the preset speed, the timer is paused, and when the real-time running speed is greater than the preset speed, the timer is started to continue timing. The way of accumulating the duration of the real-time effective speed by the timer is very simple and easy to implement, and the cost is relatively low.
[0094] In an embodiment of the present application, after the first set parameter is adjusted according to the real-time running speed, it can include:
[0095] The shutdown time of the intelligent treadmill is obtained;
[0096] The second set parameter of the air conditioner corresponding to the shutdown time is obtained;
[0097] The second set parameter is restored to the first set parameter corresponding to the startup time.
[0098] In the embodiment, the shutdown time of the intelligent treadmill is obtained, the second set parameter of the air conditioner corresponding to the shutdown time is obtained, and the second set parameter is restored to the first set parameter corresponding to the startup time, so as to provide a comfortable environment for the user after the user stops exercising.
[0099] In one embodiment of the present application, the second setting parameter can include a second setting temperature and / or 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. Restoring the second setting parameter to the first setting parameter corresponding to the start time can include:
[0100] obtaining the closing time of the intelligent treadmill according to the closing time;
[0101] increasing the second setting temperature as the closing time increases; and / or
[0102] decreasing the second setting air outlet angle as the closing time increases, so that the second setting air outlet angle decreases towards the direction close to the intelligent treadmill.
[0103] In the present embodiment, increasing the second setting temperature as the closing time increases, so that the second setting temperature gradually returns to the first setting temperature, can avoid the situation that the user feels hot due to the rapid increase of the ambient temperature. Decreasing the second setting air outlet angle as the closing time increases, so that the second setting air outlet angle decreases towards the direction close to the intelligent treadmill, can reduce the situation that the cold air directly blows on the user.
[0104] In one embodiment of the present application, increasing the second setting temperature as the closing time increases can include:
[0105] obtaining a second comparison time set, and comparing the closing time with the second comparison time;
[0106] when the closing time is an integer multiple of the second comparison time, increasing the second setting temperature by a second adjustment temperature set multiplied by the integer multiple;
[0107] decreasing the second setting air outlet angle as the closing time increases can include:
[0108] obtaining a second comparison time set, and comparing the closing time with the second comparison time;
[0109] when the closing time is an integer multiple of the second comparison time, decreasing the second setting air outlet angle by a second adjustment angle set multiplied by the integer multiple.
[0110] In the embodiment, the integer multiple can be an integer greater than or equal to 1. The second comparison duration can generally be less than or equal to the first comparison duration, preferably less than the first comparison duration. Specifically, when the second comparison duration is less than the first comparison duration, it can generally be less than the first comparison duration by a first preset threshold, which can be 1 minute, 2 minutes, or 3 minutes, or a larger value. When the second comparison duration is less than the first comparison duration, the time for the second set parameter to return to the first set parameter corresponding to the start time is less than the time for the first set parameter corresponding to the start time to adjust to the second set parameter, which can further improve the comfort of the user.
[0111] When the shutdown duration is an integer multiple of the second comparison duration, the second set temperature is increased by the product of the second adjustment temperature of the second set temperature increase setting and the integer multiple, so that the second set temperature of the air conditioner gradually increases with the increase of the shutdown duration, avoiding causing the ambient temperature to rise too quickly and avoiding the user feeling hot, thereby providing a comfortable temperature environment for the user who stops exercising. Specifically, for example, assuming that the second set temperature is 23 degrees and the second adjustment temperature is 1 degree, when the shutdown duration is 1 times the second comparison duration, the second set temperature is increased by the second adjustment temperature, i.e., 23+1; when the shutdown duration is 2 times the second comparison duration, the second set temperature is increased by 2 times the second adjustment temperature, i.e., 23+1*2; when the shutdown duration is 3 times the second comparison duration, the second set temperature is increased by 3 times the second adjustment temperature, i.e., 23+1*3. In addition, in order to avoid the user being uncomfortable due to the temperature being too high, after the second set temperature is increased by the product of the second adjustment temperature of the second set temperature increase setting and the integer multiple, it is further compared whether the increased temperature is greater than the first set temperature corresponding to the start time, and if it is greater than the first set temperature corresponding to the start time, the first set temperature is taken as the adjusted temperature. The second adjustment temperature can be greater than or equal to the first adjustment temperature. When the second adjustment temperature is greater than the first adjustment temperature, for example, greater than the first adjustment temperature by a second preset threshold, the second preset threshold can be any value between 0.5 and 1. When the second adjustment temperature is greater than the first adjustment temperature, the time for the second set temperature to return to the first set temperature after the user stops exercising can be less than the time for the first set temperature to adjust to the second set temperature, which is more conducive to ensuring the comfort of the human body.
[0112] After the user finishes exercising, the user often leaves the smart treadmill. When the closing time length is an integer multiple of the second comparison time length, the second set air outlet angle is reduced by the product of the set second adjustment angle and the integer multiple, so that the second set air outlet angle is reduced towards the direction close to the smart treadmill. This can make the air outlet of the air conditioner gradually close to the smart treadmill as the closing time length increases, thereby reducing the probability of the wind directly blowing on the user after the exercise is finished, and providing a comfortable environment for the user. Specifically, for example, assuming that the second set air outlet angle is 60 degrees and the second adjustment angle is 10 degrees, when the closing time length is 1 times the second comparison time length, the second set air outlet angle is reduced by the second adjustment angle, i.e. 60-10; when the closing time length is 2 times the second comparison time length, the second set air outlet angle is reduced by 2 times the second adjustment angle, i.e. 60-10*2; when the closing time length is 3 times the second comparison time length, the second set air outlet angle is reduced by 3 times the second adjustment angle, i.e. 60-10*3. The second adjustment angle is often greater than or equal to the first adjustment angle, and preferably greater than the first adjustment angle. For example, when the second adjustment angle is greater than the first adjustment angle, the second adjustment angle is greater than the first adjustment angle by a third preset threshold value, and the third preset threshold value can be any value between 3-7, such as 4, 5 or 6, etc. This can make the time for the second set air outlet angle to return to the first set air outlet angle less than the time for the first set air outlet angle to the second set air outlet angle, and can further ensure the health and comfort of the human body.
[0113] Figure 2 is a flow chart of a control method of the air conditioner based on the smart treadmill according to another embodiment of the application, referring to Figure 2 The control method can include:
[0114] Step S202: Obtain the starting time and the real-time running speed of the smart treadmill.
[0115] Step S204: Obtain the first set parameters of the air conditioner corresponding to the starting time. The first set parameters include the first set temperature and / or the first set air outlet angle between the air outlet direction of the air conditioner and the direction in which the smart treadmill is located.
[0116] Step S206: Take the speed greater than the preset speed in the real-time running speed as the real-time effective speed.
[0117] Step S208: Calculate the duration of the real-time effective speed.
[0118] Step S210: Obtain the first comparison time length, and compare the duration with the first comparison time length.
[0119] Step S212: When the duration is an integer multiple of the first comparison time length, the first set temperature is reduced by the product of the set first adjustment temperature and the integer multiple, and / or the first set air outlet angle is increased by the product of the set first adjustment angle and the integer multiple.
[0120] Step S214: Obtain the shutdown time of the smart treadmill.
[0121] Step S216: Obtain the second set parameter of the air conditioner corresponding to the shutdown time. The second set parameter includes a second set temperature and / or 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.
[0122] Step S218: Obtain the shutdown duration of the smart treadmill according to the shutdown time.
[0123] Step S220: Obtain the second comparison duration set, and compare the shutdown duration with the second comparison duration.
[0124] Step S222: When the shutdown duration is an integer multiple of the second comparison duration, increase the second set temperature by a product of the second adjustment temperature set and the integer multiple and / or subtract a product of the second adjustment angle set and the integer multiple from the second set air outlet angle, so as to restore the second set parameter to the first set parameter corresponding to the startup time.
[0125] 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, and the memory 301 stores a control program. When the control program is executed by the processor 302, it is used to implement the control method of the air conditioner based on the smart treadmill according to any one of the above embodiments.
[0126] Based on the same concept, the present application also provides a smart air conditioner. The smart air conditioner can include a memory and a processor, and the memory stores a control program. When the control program is executed by the processor, it is used to implement the control method of the air conditioner based on the smart treadmill according to any one of the above embodiments.
[0127] Any of the above embodiments can be combined with each other. According to any one of the above preferred embodiments or a combination of multiple preferred embodiments, the embodiments of the present application can achieve the following beneficial effects:
[0128] The startup time and the real-time running speed of the smart treadmill are obtained, the first set parameter of the air conditioner corresponding to the startup time is obtained, and the first set parameter is adjusted according to the real-time running speed, so that the air conditioner operates according to the adjusted parameter. This realizes automatic adjustment of the air conditioner according to the real-time running speed of the smart treadmill, thereby providing a comfortable environment for the user in the environment where the smart treadmill is located, improving the comfort of the user, and also avoiding the situation that the user manually adjusts the air conditioner during exercise, reducing the operation of the user, improving the use experience of the user, and also improving the intelligent level of the smart treadmill.
[0129] At this point, those skilled in the art will appreciate that although specific exemplary embodiments of the application have been described herein, the present application also encompasses many other variations or modifications in accordance with the principles of the application as set forth above. Accordingly, the scope of the present application should be understood to include all such variations and 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 start time and a real-time running speed of the smart treadmill; obtaining a first set parameter of the air conditioner corresponding to the start time; adjusting the first set parameter according to the real-time running speed, so that the air conditioner runs according to the adjusted parameter; the first set parameter comprises a first set temperature and / or 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; the adjusting the first set parameter according to the real-time running speed comprises: taking a speed greater than a preset speed in the real-time running speed as a real-time effective speed; calculating a duration of the real-time effective speed; causing the first set temperature to decrease with an increase of the duration; and / or causing the first set air outlet angle to increase with the increase of the duration, so that the first set air outlet angle expands in a direction away from the smart treadmill; the causing the first set temperature to decrease with the increase of the duration comprises: obtaining a first comparison duration, and comparing the duration with the first comparison duration; when the duration is an integer multiple of the first comparison duration, causing the first set temperature to decrease by a product of a set first adjustment temperature and the integer multiple; the causing the first set air outlet angle to increase with the increase of the duration comprises: obtaining a first comparison duration, and comparing the duration with the first comparison duration; when the duration is an integer multiple of the first comparison duration, causing the first set air outlet angle to increase by a product of a set first adjustment angle and the integer multiple; the obtaining a first comparison duration comprises: obtaining a setting time of the first set parameter; calculating a time interval between the setting time and the start time; matching the time interval with a preset comparison duration table; wherein the comparison duration table comprises a plurality of interval durations and comparison durations corresponding thereto, and the comparison duration is proportional to the interval duration; and matching a comparison duration corresponding to an interval duration closest to the time interval from the comparison duration table as the first comparison duration. 2.The control method of claim 1, wherein, after the causing the first set temperature to decrease by the product of the set first adjustment temperature and the integer multiple, comprising: judging whether a temperature value after the first set temperature decreases by the product of the set first adjustment temperature and the integer multiple is less than a preset minimum temperature value; if yes, taking the preset minimum temperature value as the temperature value after the first set temperature decreases by the product of the set first adjustment temperature and the integer multiple. 3.The control method of claim 1, wherein, the calculating the duration of the real-time effective speed comprises: accumulating the duration of the real-time effective speed by a timer. 4.The control method of claim 1, wherein, After the first set parameter is adjusted according to the real-time running speed, the method comprises: obtaining a shutdown time of the intelligent treadmill; obtaining a second set parameter of the air conditioner corresponding to the shutdown time; restoring the second set parameter to the first set parameter corresponding to the startup time.
5. The control method according to claim 4, wherein the second set parameter comprises a second set temperature and / or a second set air outlet angle between an air outlet direction of the air conditioner and a direction in which the intelligent treadmill is located; the restoring the second set parameter to the first set parameter corresponding to the startup time comprises: obtaining a shutdown duration of the intelligent treadmill according to the shutdown time; increasing the second set temperature as the shutdown duration increases; and / or decreasing the second set air outlet angle as the shutdown duration increases, so that the second set air outlet angle decreases towards the direction close to the intelligent treadmill.
6. The control method according to claim 5, wherein the increasing the second set temperature as the shutdown duration increases comprises: obtaining a second comparison duration set, comparing the shutdown duration with the second comparison duration; when the shutdown duration is an integer multiple of the second comparison duration, increasing the second set temperature by a product of a second adjustment temperature set and the integer multiple; the decreasing the second set air outlet angle as the shutdown duration increases comprises: obtaining a second comparison duration set, comparing the shutdown duration with the second comparison duration; when the shutdown duration is an integer multiple of the second comparison duration, decreasing the second set air outlet angle by a product of a second adjustment angle set and the integer multiple.
7. An intelligent treadmill, comprising: a memory and a processor, a control program is stored in the memory, and the control program is used to implement the control method of the air conditioner based on the intelligent treadmill according to any one of claims 1-6 when executed by the processor.
Citation Information
Patent Citations
Air conditioner control method and device, and air conditioner
CN109084441A
Fitness room temperature adaptive regulation and control method based on artificial intelligence
CN113685965A
Auxiliary control method and device for boxing practicing, boxing practicing device and air conditioner
CN114646144A