Control method of air conditioner based on intelligent treadmill and intelligent treadmill

Through the signal connection between the smart treadmill and the air conditioner, the real-time running speed is obtained and the historical parameter table is matched, and the air conditioner operation is automatically controlled, which solves the problem of users needing to manually adjust the air conditioner and improves user experience and environmental comfort.

CN115451538BActive Publication Date: 2025-08-19QINGDAO HAIER AIR CONDITIONER GENERAL CORP LTD +2
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Patent Information

Application Number
CN202211085483.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-06
Publication Date
2025-08-19
Estimated Expiration
2042-09-06

AI Technical Summary

Technical Problem

Existing treadmills and air conditioners cannot learn and record the correspondence between the treadmill running speed and the operating parameters of the air conditioner, resulting in users needing to manually adjust the air conditioner every time they exercise, affecting the user experience.

Method used

The intelligent treadmill is connected to the air conditioner signal. By obtaining the real-time running speed matching with the preset historical speed parameter comparison table, the operating parameters of the air conditioner are automatically controlled to match the historical running speed and environmental parameters of the treadmill to provide a comfortable exercise environment.

Benefits of technology

The automatic control of the air conditioner is realized, reducing the steps of manual adjustment by users, improving the user experience, and optimizing the comfort of the exercise environment based on real-time environmental parameters.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present invention provides a control method for an air conditioner based on an intelligent treadmill and the intelligent treadmill. The intelligent treadmill is connected to the air conditioner by signal. The control method includes: obtaining a startup instruction of the intelligent treadmill; in response to the startup instruction, obtaining the real-time operating speed of the intelligent treadmill; matching the real-time operating speed with a preset historical speed parameter comparison table to obtain a historical operating speed that is the same as the real-time operating speed as a target historical speed; wherein the historical speed parameter comparison table includes at least the historical operating speeds of the intelligent treadmill after each startup and the corresponding historical air conditioner operating parameters; selecting the historical air conditioner operating parameters corresponding to the target historical speed as target setting parameters; and operating the air conditioner according to the target setting parameters, thereby achieving automatic control of the air conditioner based on the historical operating speeds of the intelligent treadmill and the historical air conditioner operating parameters corresponding to the historical operating speeds, thereby providing a comfortable environment for the user during exercise.
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Description

Technical Field

[0001] The present invention relates to the technical field of air conditioner control, and in particular to a control method for an air conditioner based on an intelligent treadmill and the intelligent treadmill. Background Art

[0002] With the improvement of people's living standards, exercising on a treadmill has become the norm. During treadmill exercise, as the treadmill's gear levels change, users need to adjust the air conditioner to change the temperature, wind speed, or air outlet angle of the exercise environment to ensure comfort. Existing treadmills and air conditioners do not have a learning function. While the treadmill is running, the air conditioner operating parameters corresponding to the treadmill's operating speed cannot be recorded. This means that users must readjust the air conditioner according to the treadmill's operating speed every time they exercise, causing inconvenience. Summary of the Invention

[0003] In view of the above problems, a control method for an air conditioner based on an intelligent treadmill and an intelligent treadmill are proposed to overcome the above problems or at least partially solve the above problems.

[0004] One object of the present invention is to control the air conditioner according to the historical operating speed of the intelligent treadmill and its corresponding historical air conditioning operating parameters after the intelligent treadmill is started, so as to ensure the comfort of the environment in which the intelligent treadmill is located.

[0005] A further object of the present invention is to control the air conditioner according to the historical environmental parameters corresponding to the start-up time of each target historical speed when there are multiple target historical speeds, so as to ensure the comfort of the environment in which the intelligent treadmill is located.

[0006] According to one aspect of the present invention, the present invention provides a control method for an air conditioner based on an intelligent treadmill, wherein the intelligent treadmill is signal-connected to the air conditioner, and the control method comprises:

[0007] Obtaining a start instruction for the intelligent treadmill;

[0008] In response to the start instruction, obtaining the real-time running speed of the intelligent treadmill;

[0009] Matching the real-time running speed with a preset historical speed parameter comparison table to obtain a historical running speed that is the same as the real-time running speed as the target historical speed; wherein the historical speed parameter comparison table at least includes the historical running speed of the smart treadmill after each startup and its corresponding historical air-conditioning operating parameters;

[0010] selecting a historical air-conditioning operating parameter corresponding to the target historical speed as a target setting parameter;

[0011] The air conditioner is operated according to the target setting parameters.

[0012] Optionally, the historical speed parameter comparison table further includes historical environmental parameters at each startup of the intelligent treadmill, and the historical environmental parameters include historical indoor environmental parameters and / or historical outdoor environmental parameters;

[0013] When there are multiple target historical speeds, selecting the historical air-conditioning operating parameters corresponding to the target historical speeds as target setting parameters includes:

[0014] Acquiring real-time environmental parameters at the time of the start instruction, the real-time environmental parameters including real-time indoor environmental parameters and / or real-time outdoor environmental parameters;

[0015] Selecting the best one from each of the target historical speeds as the final historical speed according to the real-time environmental parameter and the historical environmental parameter corresponding to the start time of each of the target historical speeds;

[0016] The historical air-conditioning operating parameters corresponding to the final historical speed are used as target setting parameters.

[0017] Optionally, when the historical environmental parameters include historical outdoor environmental parameters and the real-time environmental parameters include real-time outdoor environmental parameters, selecting the best one from each of the target historical speeds as the final historical speed based on the real-time environmental parameters and the historical environmental parameters corresponding to the start time of each of the target historical speeds includes:

[0018] A target historical speed that is closest to the real-time outdoor environment parameter is selected from the historical outdoor environment parameters corresponding to the start time of each target historical speed as the final historical speed.

[0019] Optionally, when the historical environmental parameters include historical indoor environmental parameters and the real-time environmental parameters include real-time indoor environmental parameters, selecting the best one from the target historical speeds as the final historical speed based on the real-time environmental parameters and the historical environmental parameters corresponding to the start time of each target historical speed includes:

[0020] A target historical speed that is closest to the real-time indoor environment parameter is selected from the historical indoor environment parameters corresponding to the start time of each target historical speed as the final historical speed.

[0021] Optionally, when the historical environmental parameters include historical indoor environmental parameters and historical outdoor environmental parameters, and the real-time environmental parameters include real-time indoor environmental parameters and real-time outdoor environmental parameters, selecting the best one from each of the target historical speeds as the final historical speed based on the real-time environmental parameters and the historical environmental parameters corresponding to the start time of each of the target historical speeds includes:

[0022] Calculating a real-time average environmental parameter of the real-time indoor environmental parameter and the real-time outdoor environmental parameter;

[0023] Calculate the historical average parameters of the historical indoor environmental parameters and the historical outdoor environmental parameters corresponding to the start time of each target historical speed;

[0024] A target historical speed corresponding to the target historical speed closest to the real-time average environmental parameter is selected from each of the historical average parameters as the final historical speed.

[0025] Optionally, the historical indoor environmental parameters and / or the historical outdoor environmental parameters include historical temperature and / or historical humidity;

[0026] The real-time indoor environmental parameter and / or the real-time outdoor environmental parameter include real-time temperature and / or real-time humidity.

[0027] Optionally, after obtaining the startup instruction of the intelligent treadmill, the method further includes:

[0028] Obtaining the identity of a user using the treadmill;

[0029] The matching of the real-time running speed with a preset historical speed parameter comparison table includes:

[0030] The real-time running speed is matched with a preset historical speed parameter comparison table corresponding to the user identity.

[0031] Optionally, after matching the real-time running speed with a preset historical speed parameter comparison table, if a historical running speed that is the same as the real-time running speed is not obtained, a reminder message is output to remind the user of the smart treadmill to control the air conditioner.

[0032] Optionally, after outputting the reminder information, the following steps are included:

[0033] Obtaining a control instruction sent by a control device bound to the air conditioner;

[0034] causing the air conditioner to operate according to the received control instructions;

[0035] The real-time operating speed and the corresponding control instructions are added to the historical speed parameter comparison table.

[0036] According to one aspect of the present invention, the present invention also provides an intelligent treadmill, including a memory and a processor, wherein the memory stores a control program, and when the control program is executed by the processor, it is used to implement the control method of the air conditioner based on the intelligent treadmill according to any one of the above-mentioned methods.

[0037] In the control method of the air conditioner based on the intelligent treadmill of the present invention, a start-up instruction of the intelligent treadmill is obtained, and in response to the start-up instruction, the real-time operating speed of the intelligent treadmill is obtained, the real-time operating speed is matched with a preset historical speed parameter comparison table, and the historical operating speed that is the same as the real-time operating speed is obtained as the target historical speed. The historical air-conditioning operating parameters corresponding to the target historical speed are selected as the target setting parameters, so that the air conditioner operates according to the target setting parameters, and automatic control of the air conditioner is achieved according to the historical operating speed of the intelligent treadmill and the historical air-conditioning operating parameters of the air conditioner corresponding to the historical operating speed, so that the target setting parameters of the air conditioner are matched with the real-time operating speed of the intelligent treadmill, thereby providing the user with a comfortable environment during the user's exercise, and also reducing the process of the user controlling the air conditioner by himself, thereby improving the user experience.

[0038] Furthermore, when people adjust the indoor environment through the air conditioner, they will also consider the impact of the real-time environmental parameters at the time of turning on the air conditioner on the air conditioner parameters. Generally, in order to ensure the user's comfort, the real-time environmental parameters at the time of turning on the air conditioner and the setting parameters of the air conditioner are generally not too different. Taking this into account, when there are multiple target historical speeds, the best one is selected from each target historical speed as the final historical speed based on the real-time environmental parameters and the historical environmental parameters at the startup time corresponding to each target historical speed, and the historical air conditioning operating parameters corresponding to the final historical speed are used as the target setting parameters, which can further improve the comfort of the exercise environment where the smart treadmill is located.

[0039] Based on the following detailed description of specific embodiments of the present invention in conjunction with the accompanying drawings, those skilled in the art will become more aware of the above and other objects, advantages and features of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0040] Various other advantages and benefits will become apparent to those skilled in the art upon reading the detailed description of the preferred embodiment below. The accompanying drawings are for illustration purposes only and are not to be considered as limiting the present invention. The same reference symbols are used throughout the drawings to represent the same components. In the drawings:

[0041] Figure 1 is a flow chart of a method for controlling an air conditioner based on a smart treadmill according to an embodiment of the present invention;

[0042] Figure 2 is a flow chart of a method for controlling an air conditioner based on an intelligent treadmill according to another embodiment of the present invention;

[0043] Figure 3 2 is a schematic structural diagram of an intelligent treadmill according to an embodiment of the present invention. DETAILED DESCRIPTION

[0044] Exemplary embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. Although exemplary embodiments of the present disclosure are shown in the accompanying drawings, it should be understood that the present disclosure can be implemented in various forms and should not be limited by the embodiments set forth herein. Rather, these embodiments are provided to enable a more thorough understanding of the present disclosure and to fully convey the scope of the present disclosure to those skilled in the art.

[0045] Figure 1 This is a flow chart of a method for controlling an air conditioner based on a smart treadmill according to one embodiment of the present invention. The smart treadmill is signal-connected to the air conditioner. Specifically, for example, the smart treadmill can establish a signal connection with the air conditioner via Bluetooth or Wireless Fidelity (WIFI), thereby obtaining operating parameters of the air conditioner and controlling the air conditioner. The control method may include steps S102 to S110.

[0046] Step S102: Obtaining the start instruction of the intelligent treadmill. In this step, when obtaining the start instruction of the intelligent treadmill, the start time corresponding to the start instruction, ie, the start time, can also be obtained.

[0047] Step S104: In response to the start command, the real-time running speed of the smart treadmill is obtained. The real-time running speed is also the real-time running speed of the running belt of the smart treadmill. Different gears of the smart treadmill can correspond to different speeds.

[0048] Step S106: Match the real-time running speed with the preset historical speed parameter comparison table, and obtain the historical running speed that is the same as the real-time running speed as the target historical speed. The historical speed parameter comparison table may at least include the historical running speed of the smart treadmill after each startup and its corresponding historical air-conditioning operating parameters. In this step, the preset historical speed parameter comparison table can be set by self-learning. Generally, the historical speed parameter comparison table may at least include the historical running speed of the smart treadmill after each startup within a preset time period and its corresponding historical air-conditioning operating parameters. The preset time period may be any value between 10-90 days, for example, 15 days, 20 days, 30 days, or 50 days.

[0049] Step S108: selecting historical air-conditioning operating parameters corresponding to the target historical speed as target setting parameters.

[0050] Step S110: operating the air conditioner according to target setting parameters.

[0051] In this embodiment, a start-up instruction of the smart treadmill is obtained, and in response to the start-up instruction, the real-time operating speed of the smart treadmill is obtained, the real-time operating speed is matched with a preset historical speed parameter comparison table, and a historical operating speed that is the same as the real-time operating speed is obtained as the target historical speed. The historical air-conditioning operating parameters corresponding to the target historical speed are selected as the target setting parameters, so that the air conditioner operates according to the target setting parameters, thereby realizing automatic control of the air conditioner according to the historical operating speed of the smart treadmill and the historical air-conditioning operating parameters of the air conditioner corresponding to the historical operating speed, so that the target setting parameters of the air conditioner are matched with the real-time operating speed of the smart treadmill, thereby providing the user with a comfortable environment during the user's exercise, and also reducing the process of the user controlling the air conditioner by himself, thereby improving the user experience.

[0052] In one embodiment of the present invention, the historical speed parameter comparison table may also include historical environmental parameters at each startup of the smart treadmill. The historical environmental parameters may include historical indoor environmental parameters and / or historical outdoor environmental parameters. When there are multiple target historical speeds, selecting the historical air conditioning operating parameters corresponding to the target historical speed as the target setting parameters may include:

[0053] Acquire real-time environmental parameters at the time of the start instruction, where the real-time environmental parameters may include real-time indoor environmental parameters and / or real-time outdoor environmental parameters;

[0054] Select the best one from each target historical speed as the final historical speed according to the real-time environmental parameters and the historical environmental parameters of each target historical speed at the start time;

[0055] The historical air conditioning operating parameters corresponding to the final historical speed are used as target setting parameters.

[0056] In this embodiment, the historical speed parameter comparison table may include the historical operating speeds of the smart treadmill after each startup. That is, each historical operating speed has a corresponding startup time, and each target historical speed has a corresponding startup time. From the start to the stop of the smart treadmill, a user may use multiple gears, which means that multiple historical operating speeds may correspond to the same startup time. When people use air conditioners to adjust the indoor environment, they also consider the impact of the real-time environmental parameters at the time of the air conditioner startup on the air conditioner parameters. Generally, to ensure user comfort, the real-time environmental parameters at the time of the air conditioner startup and the air conditioner setting parameters are generally not too different. Considering these circumstances, when there are multiple target historical speeds, the best one among each target historical speed is selected as the final historical speed based on the real-time environmental parameters and the historical environmental parameters corresponding to each target historical speed at the startup time. The historical air conditioning operating parameters corresponding to the final historical speed are used as the target setting parameters. This can further improve the comfort of the exercise environment in which the smart treadmill is located. It can be understood that selecting the best one among each target historical speed based on the real-time environmental parameters and the historical environmental parameters corresponding to each target historical speed at the startup time is selecting the one with the historical environmental parameters closest to the real-time environmental parameters at the time of the startup instruction. Specifically, for example, if there are two target historical speeds, one being a first target historical speed and the other a second target historical speed, the first target historical speed corresponds to the first historical environmental parameter at the time of startup, and the second target historical speed corresponds to the second historical environmental parameter at the time of startup. If the second historical environmental parameter is closest to the real-time environmental parameter, then the second target historical speed corresponding to the second historical environmental parameter is used as the final historical speed. The historical air conditioning operating parameters corresponding to the final historical speed are used as the target setting parameters, that is, the second historical environmental parameter corresponding to the second target historical speed is used as the target setting parameter.

[0057] In some other embodiments of the present invention, when there are multiple target historical speeds, selecting the historical air-conditioning operating parameters corresponding to the target historical speeds as the target setting parameters may include:

[0058] Get the historical start time corresponding to each target historical speed;

[0059] The historical air-conditioning operation parameter of the target historical speed corresponding to the one closest to the start time of the start instruction of the smart treadmill among the historical start times is used as the target setting parameter.

[0060] In this embodiment, the closer the target historical speed is to the historical start-up moment and the start-up moment of the smart treadmill's start-up instruction, the more the historical air-conditioning operating parameters corresponding to the target historical speed may be in line with the user's comfort feeling. Therefore, the historical air-conditioning operating parameters of the target historical speed corresponding to the one closest to the start-up moment of the smart treadmill's start-up instruction among the historical start-up moments are used as target setting parameters, which can improve the user's comfort.

[0061] In one embodiment of the present invention, when the historical environmental parameters include historical outdoor environmental parameters and the real-time environmental parameters include real-time outdoor environmental parameters, selecting the best one from each target historical speed as the final historical speed based on the real-time environmental parameters and the historical environmental parameters corresponding to the start time of each target historical speed may include:

[0062] From the historical outdoor environment parameters corresponding to the start time of each target historical speed, a corresponding target historical speed that is closest to the real-time outdoor environment parameter is selected as the final historical speed.

[0063] In this embodiment, a target historical speed corresponding to the historical outdoor environmental parameters at the startup time corresponding to each target historical speed is selected as the final historical speed. This method fully considers the influence of the outdoor environmental parameters at the startup time on the air conditioner setting parameters, which is conducive to improving user comfort.

[0064] In this embodiment, generally, the historical indoor environmental parameters and / or the historical outdoor environmental parameters may include historical temperature and / or historical humidity. The real-time indoor environmental parameters and / or the real-time outdoor environmental parameters may include real-time temperature and / or real-time humidity. Specifically, when the historical outdoor environmental parameters include historical temperature and the real-time outdoor environmental parameters include real-time temperature, selecting a corresponding target historical speed from the historical outdoor environmental parameters corresponding to the start-up time of each target historical speed that is closest to the real-time outdoor environmental parameter as the final historical speed may include: selecting a corresponding target historical speed from the historical temperatures corresponding to the start-up time of each target historical speed that is closest to the real-time temperature as the final historical speed. When the historical outdoor environmental parameters include historical humidity and the real-time outdoor environmental parameters include real-time humidity, selecting a corresponding target historical speed from the historical outdoor environmental parameters corresponding to the start-up time of each target historical speed that is closest to the real-time outdoor environmental parameter as the final historical speed may include: selecting a corresponding target historical speed from the historical humidity corresponding to the start-up time of each target historical speed that is closest to the real-time humidity as the final historical speed. When the historical outdoor environmental parameters include historical humidity and historical temperature, and the real-time outdoor environmental parameters include real-time humidity and real-time temperature, selecting a target historical speed corresponding to the historical outdoor environmental parameters at the start-up time corresponding to each target historical speed as the final historical speed may include: selecting a target historical speed closest to the real-time temperature from the historical temperatures at the start-up time corresponding to each target historical speed, and determining the difference between the target historical speed closest to the real-time temperature and the real-time temperature; if the difference is less than or equal to a first preset threshold, selecting the target historical speed closest to the real-time temperature as the final historical speed; and if the difference is greater than the first preset threshold, selecting a target historical speed closest to the real-time humidity from the historical humidity at the start-up time corresponding to each target historical speed as the final historical speed. The first preset threshold may be any value between 5 and 15 degrees Celsius, such as 8, 10, or 12 degrees Celsius.

[0065] In one embodiment of the present invention, when the historical environmental parameters include historical indoor environmental parameters and the real-time environmental parameters include real-time indoor environmental parameters, selecting the best one from each target historical speed as the final historical speed based on the real-time environmental parameters and the historical environmental parameters corresponding to the start time of each target historical speed may include:

[0066] From the historical indoor environmental parameters corresponding to the start time of each target historical speed, a target historical speed that is closest to the real-time indoor environmental parameter is selected as the final historical speed.

[0067] In this embodiment, a target historical speed corresponding to the historical indoor environmental parameters at the startup time corresponding to each target historical speed is selected as the final historical speed. This method fully considers the influence of the indoor environmental parameters at the startup time on the air conditioner setting parameters, which is conducive to improving user comfort.

[0068] In this embodiment, when the historical indoor environmental parameters include historical temperatures and the real-time indoor environmental parameters include real-time temperatures, selecting as the final historical speed a target historical speed that is closest to the real-time indoor environmental parameters from the historical indoor environmental parameters corresponding to the start-up times of the target historical speeds may include selecting as the final historical speed a target historical speed that is closest to the real-time temperature from the historical temperatures corresponding to the start-up times of the target historical speeds. When the historical indoor environmental parameters include historical humidity and the real-time indoor environmental parameters include real-time humidity, selecting as the final historical speed a target historical speed that is closest to the real-time indoor environmental parameters from the historical indoor environmental parameters corresponding to the start-up times of the target historical speeds may include selecting as the final historical speed a target historical speed that is closest to the real-time humidity from the historical humidity corresponding to the start-up times of the target historical speeds. When the historical indoor environmental parameters include historical humidity and historical temperature, and the real-time indoor environmental parameters include real-time humidity and real-time temperature, selecting a target historical speed corresponding to the historical indoor environmental parameters at the start-up time of each target historical speed that is closest to the real-time indoor environmental parameters as the final historical speed may include: selecting a target historical speed corresponding to the historical temperature at the start-up time of each target historical speed that is closest to the real-time temperature, and determining the difference between the target historical speed closest to the real-time temperature and the real-time temperature; if the difference is less than or equal to a second preset threshold, selecting the target historical speed corresponding to the target historical speed closest to the real-time temperature as the final historical speed; if the difference is greater than the second preset threshold, selecting a target historical speed corresponding to the historical humidity at the start-up time of each target historical speed that is closest to the real-time humidity as the final historical speed. The second preset threshold may be any value between 5 and 15 degrees Celsius, such as 8, 10, or 12 degrees Celsius. The second preset threshold may be equal to the first preset threshold or may not be equal to the first preset threshold.

[0069] In one embodiment of the present invention, when the historical environmental parameters include historical indoor environmental parameters and historical outdoor environmental parameters, and the real-time environmental parameters include real-time indoor environmental parameters and real-time outdoor environmental parameters, selecting the best one from each target historical speed as the final historical speed based on the real-time environmental parameters and the historical environmental parameters corresponding to the start time of each target historical speed may include:

[0070] Calculate the real-time average environmental parameters of the real-time indoor environmental parameters and the real-time outdoor environmental parameters;

[0071] Calculate the historical average parameters of the historical indoor environmental parameters and the historical outdoor environmental parameters corresponding to the start time of each target historical speed;

[0072] A target historical speed corresponding to the closest real-time average environmental parameter is selected from each historical average parameter as the final historical speed.

[0073] In this embodiment, the real-time average environmental parameters of the real-time indoor environmental parameters and the real-time outdoor environmental parameters are calculated, the historical average parameters of the historical indoor environmental parameters and the historical outdoor environmental parameters corresponding to the startup time of each target historical speed are calculated, and the target historical speed corresponding to the real-time average environmental parameter is selected from the historical average parameters as the final historical speed. This method fully considers the influence of the indoor environmental parameters and the outdoor environmental parameters at the startup time on the air conditioner setting parameters, which is conducive to improving user comfort.

[0074] Specifically, for example, when the historical indoor environmental parameters include the historical indoor temperature, the historical outdoor environmental parameters include the historical outdoor temperature, the real-time indoor environmental parameters include the real-time indoor temperature, and the real-time outdoor environmental parameters include the real-time outdoor temperature, the real-time average environmental parameters of the real-time indoor environmental parameters and the real-time outdoor environmental parameters are calculated, that is, (real-time indoor temperature + real-time outdoor temperature) / 2 = real-time average temperature; the historical average parameters of the historical indoor environmental parameters and the historical outdoor environmental parameters corresponding to the start time of each target historical speed are calculated, that is, (historical indoor temperature + historical outdoor temperature) / 2 = historical average temperature, and the corresponding target historical speed closest to the real-time average environmental parameter is selected from each historical average parameter as the final historical speed, that is, the corresponding target historical speed closest to the real-time average temperature is selected from the historical average temperature as the final historical speed. For another example, when the historical indoor environmental parameters include historical indoor humidity, the historical outdoor environmental parameters include historical outdoor humidity, the real-time indoor environmental parameters include real-time indoor humidity, and the real-time outdoor environmental parameters include real-time outdoor humidity, the real-time average environmental parameters of the real-time indoor environmental parameters and the real-time outdoor environmental parameters are calculated, that is, (real-time indoor humidity + real-time outdoor humidity) / 2 = real-time average humidity; the historical average parameters of the historical indoor environmental parameters and the historical outdoor environmental parameters corresponding to the start time of each target historical speed are calculated, that is, (historical indoor humidity + historical outdoor humidity) / 2 = historical average humidity, and the corresponding target historical speed closest to the real-time average environmental parameter is selected from each historical average parameter as the final historical speed, that is, the corresponding target historical speed closest to the real-time average humidity is selected from the historical average humidity as the final historical speed. For another example, when the historical indoor environmental parameters include historical indoor humidity and historical indoor temperature, the historical outdoor environmental parameters include historical outdoor humidity and historical outdoor temperature, and the real-time indoor environmental parameters include real-time indoor humidity and real-time indoor temperature, and the real-time outdoor environmental parameters include real-time outdoor humidity and real-time outdoor temperature, the real-time average environmental parameters of the real-time indoor environmental parameters and the real-time outdoor environmental parameters are calculated. That is, the real-time average temperature, real-time average humidity, historical average temperature, and historical average humidity are first obtained using the method described above. From each of the historical average parameters, a target historical speed closest to the real-time average environmental parameter is selected as the final historical speed. That is, from the historical average temperatures corresponding to the start time of each target historical speed, the target historical speed closest to the real-time average temperature is selected. The difference between the target historical speed closest to the real-time average temperature and the real-time average temperature is determined. If the difference is less than or equal to a third preset threshold, the target historical speed closest to the real-time average temperature is selected as the final historical speed. If the difference is greater than the third preset threshold, the target historical speed closest to the real-time average humidity is selected from the historical average humidity corresponding to the start time of each target historical speed as the final historical speed.The third preset threshold value can be any value between 5 and 15 degrees Celsius, such as 8, 10, or 12 degrees Celsius. The third preset threshold value can be equal to the first preset threshold value or different from the first preset threshold value. This example illustrates that when the environmental parameters include both temperature and humidity, temperature is prioritized. If the temperature does not match, humidity is then considered, i.e., temperature is primarily considered.

[0075] In one embodiment of the present invention, after obtaining the startup instruction of the intelligent treadmill, the following steps may be included:

[0076] Get the identity of the user using the treadmill;

[0077] Matching the real-time running speed with the preset historical speed parameter comparison table includes:

[0078] The real-time running speed is matched with the preset historical speed parameter comparison table corresponding to the user identity.

[0079] In this embodiment, different people may have different perceptions of environmental comfort. Taking this into account, a corresponding historical speed parameter comparison table can be set for each user. By obtaining the user identity of the treadmill user and matching the real-time running speed with the preset historical speed parameter comparison table corresponding to the user identity, a comfortable environment can be provided for the user using this smart treadmill, further improving user comfort and enhancing the user experience.

[0080] In one embodiment of the present invention, after matching the real-time running speed with a preset historical speed parameter comparison table, if the historical running speed is not the same as the real-time running speed, a reminder message is output to remind the user of the smart treadmill to control the air conditioner.

[0081] In this embodiment, after matching the real-time running speed with the preset historical speed parameter comparison table, if the historical running speed that is the same as the real-time running speed is not obtained, it means that the user has not made the running belt of the smart treadmill run according to this real-time running speed in the recent period, that is, no historical record has been generated. At this time, a reminder message can be output to remind the user of the smart treadmill to control the air conditioner to ensure the comfort of the environment.

[0082] In one embodiment of the present invention, after outputting the reminder information, the following steps may be performed:

[0083] Obtain control instructions sent by the control device bound to the air conditioner;

[0084] Make the air conditioner operate according to the received control instructions;

[0085] Add the real-time running speed and the corresponding control instructions to the historical speed parameter comparison table.

[0086] In this embodiment, the control instructions sent by the control device bound to the air conditioner refer to the control instructions sent by the user after the user receives the reminder information. The control device can generally be a remote control, a mobile phone, etc. The control instructions sent by the control device bound to the air conditioner are obtained, and the air conditioner is operated according to the received control instructions. The real-time operating speed and the corresponding control instructions are added to the historical speed parameter comparison table, thereby realizing self-learning of the control of the air conditioner so that the user can provide a comfortable environment the next time he exercises at this real-time operating speed. Generally, when the shutdown instruction of the smart treadmill is obtained, the real-time operating speed and the corresponding control instructions can be added to the historical speed parameter comparison table.

[0087] In some other embodiments of the present invention, the aforementioned control instructions can be parsed into control parameters for the air conditioner. The control parameters may include a set temperature and / or a set angle between the air outlet direction of the air conditioner and the direction of the smart treadmill. As the user's exercise time increases, the user will feel increasingly hot. Therefore, after causing the air conditioner to operate according to the received control instructions, the process may further include calculating the duration of the real-time operating speed and reducing the set temperature as the duration increases; and / or increasing the set angle as the duration increases, such that the set angle expands away from the smart treadmill. The set angle between the air outlet direction of the air conditioner and the direction of the smart treadmill can be understood as taking the air outlet of the air conditioner as the base point, a first line connecting the air outlet direction of the air conditioner and the base point as the air outlet direction, a second line connecting the base point and the location of the smart treadmill as the direction of the smart treadmill, and the angle between the first and second lines as the set angle.

[0088] Specifically, reducing the set temperature as the duration increases may include:

[0089] Get the comparison duration and compare the duration with the comparison duration;

[0090] When the duration is an integer multiple of the comparison duration, the product of the set adjustment temperature and the integer multiple is subtracted from the set temperature;

[0091] Enabling the set air outlet angle to increase as the duration increases may include:

[0092] Get the comparison duration and compare the duration with the comparison duration;

[0093] When the duration is an integer multiple of the comparison duration, the set air outlet angle is increased by the product of the set adjustment angle and the integer multiple.

[0094] The integer multiple can generally be an integer greater than or equal to 1. The adjustment temperature can be set as needed, for example, to 0.5, 1, or 2. Generally, the adjustment temperature is proportional to the set temperature. When the duration is an integer multiple of the comparison duration, the set temperature is subtracted from the product of the set adjustment temperature and the integer multiple, so that the set temperature of the air conditioner gradually decreases as the duration increases, avoiding an abrupt decrease in the temperature of the environment where the smart treadmill is located, thereby ensuring user comfort. Specifically, for example, assuming the set temperature is 26 degrees and the adjustment temperature is 0.5 degrees, when the duration is 1 times the comparison duration, the adjustment temperature is subtracted from the set temperature, that is, 26-0.5; when the duration is twice the comparison duration, the adjustment temperature is subtracted from the set temperature by 2 times, that is, 26-0.5*2; when the duration is 3 times the comparison duration, the adjustment temperature is subtracted from the set temperature by 3 times, that is, 26-0.5*3; when the duration is 6 times the comparison duration, the adjustment temperature is subtracted from the set temperature by 6 times, that is, 26-0.5*6. The comparison duration can be any value between 5 and 15 minutes, such as 8 minutes or 10 minutes.

[0095] The adjustment angle can be set as needed, for example, to any value between 3 and 10, for example, 4, 5, 6, or 7. Generally, the adjustment angle is inversely proportional to the set temperature. When the duration is an integer multiple of the comparison duration, the set air outlet angle is increased by the product of the set adjustment angle and the integer multiple, so that the set air outlet angle is expanded in the direction away from the smart treadmill, so that the air outlet of the air conditioner gradually moves away from the smart treadmill as the duration increases, avoiding overly abrupt changes in the air outlet angle of the air conditioner, thereby providing a comfortable environment for the user. Specifically, for example, assuming that the air outlet angle is set to 30 degrees and the adjustment angle is 5 degrees, when the duration is 1 times the comparison duration, the air outlet angle plus the adjustment angle will be set, that is, 30+5; when the duration is twice the comparison duration, the air outlet angle plus 2 times the adjustment angle will be set, that is, 30+5*2; when the duration is 3 times the comparison duration, the air outlet angle plus 3 times the adjustment angle will be set, that is, 30+5*3; when the duration is 6 times the comparison duration, the air outlet angle plus 6 times the adjustment angle will be set, that is, 30+5*6.

[0096] In some other embodiments of the present invention, the control instructions can be parsed into control parameters of the air conditioner, which may include temperature parameters and / or air volume parameters. After obtaining the control instructions sent by the control device bound to the air conditioner and causing the air conditioner to operate according to the received control instructions, the following steps may also be performed:

[0097] The heart rate of the user of the smart treadmill is detected, and the temperature parameter in the control parameters is reduced as the heart rate increases. Specifically, for example, the heart rate can refer to the heart rate per minute. If the heart rate increases by a preset number of heart beats per minute, the temperature parameter is reduced by a preset temperature threshold. The preset number of heart beats can be any value between 10-20 times, for example, 15, and the preset temperature threshold can be any value between 0.2-1, for example, 0.5. Specifically, for example, when the air conditioner is operated according to the received control command, the user's heart rate is 70 beats per minute and the temperature parameter is 25 degrees. When the user's heart rate is 80 beats per minute, the temperature parameter is 25-0.5 = 24.5 degrees; when the user's heart rate is 90 beats per minute, the temperature parameter is 24.5-0.5 = 24 degrees; when the user's heart rate is 100 beats per minute, the temperature parameter is 24-0.5 = 23.5 degrees, and so on. To reduce the likelihood of cold air causing the smart treadmill user to catch a cold, the air supply volume parameter in the control parameters can also be reduced as the heart rate increases. For example, if the heart rate increases by a preset number of beats per minute, the air supply volume parameter is reduced by a preset air supply threshold. The preset air supply threshold can be one-tenth of the air supply volume parameter. Specifically, for example, when the air conditioner is operating according to the received control command, if the user's heart rate is 70 beats per minute, the air supply volume parameter is 100%. When the user's heart rate is 80 beats per minute, the air supply volume is 90% of the air supply volume parameter; when the user's heart rate is 90 beats per minute, the air supply volume is 80% of the air supply volume parameter, and so on.

[0098] In some other embodiments of the present invention, the control instructions can be parsed into control parameters of the air conditioner, which may include temperature parameters and / or air supply modes. After obtaining the control instructions sent by the control device bound to the air conditioner and causing the air conditioner to operate according to the received control instructions, the following steps may also be performed:

[0099] The system can also detect the user's sweating rate, reducing the temperature parameter in the control parameters as sweating increases, thereby preventing excessive sweating. The sweating rate can be defined as the amount of sweat per hour. Furthermore, when sweating is detected, the air conditioner is controlled to switch to a swing air mode, preventing the user from catching a cold through intermittent airflow. When the user's sweat rate reaches a first sweat threshold, the air flow from the air conditioner is directed away from the user's location, and thus away from the location of the smart treadmill. The first sweat threshold can be any value between 150ml / h and 300ml / h. When the user's sweat rate reaches a second sweat threshold, the air conditioner's compressor power is increased, improving the evaporator's condensation effect and increasing air volume, accelerating indoor air flow and reducing indoor humidity, thereby facilitating sweat evaporation. The second sweat threshold can be any value between 300ml / h and above.

[0100] Figure 2is a flow chart of a method for controlling an air conditioner based on an intelligent treadmill according to an embodiment of the present invention, see Figure 2 , the control method includes the following steps S202 to S224.

[0101] Step S202: Obtain a start instruction for the intelligent treadmill.

[0102] Step S204: In response to the start instruction, the real-time running speed of the intelligent treadmill is obtained.

[0103] Step S206: Match the real-time running speed with a preset historical speed parameter comparison table. The historical speed parameter comparison table includes at least the historical running speeds and corresponding historical air conditioning operating parameters after each startup of the smart treadmill, and the historical environmental parameters at each startup of the smart treadmill, where the historical environmental parameters include historical indoor environmental parameters and / or historical outdoor environmental parameters.

[0104] Step S208: Determine whether there is a historical running speed that is the same as the real-time running speed as the target historical speed.

[0105] If not, execute step S220; if present, execute step S210.

[0106] Step S210: Determine whether the number of target historical speeds is 1.

[0107] If so, go to step S212; if not, go to step S214.

[0108] Step S212: selecting historical air-conditioning operating parameters corresponding to the target historical speed as target setting parameters, so that the air conditioner operates according to the target setting parameters.

[0109] Step S214: Acquire real-time environmental parameters at the time of the start instruction. The real-time environmental parameters include real-time indoor environmental parameters and / or real-time outdoor environmental parameters.

[0110] Step S216: selecting the best one from each target historical speed as the final historical speed based on the real-time environmental parameters and the historical environmental parameters corresponding to the start time of each target historical speed.

[0111] Step S218: Using the historical air-conditioning operating parameters corresponding to the final historical speed as target setting parameters, so that the air conditioner operates according to the target setting parameters.

[0112] Step S220: Outputting a reminder message to remind the user of the smart treadmill to control the air conditioner.

[0113] Step S222: Acquire a control instruction sent by a control device bound to the air conditioner, and enable the air conditioner to operate according to the received control instruction.

[0114] Step S224: Add the real-time running speed and the corresponding control instruction to the historical speed parameter comparison table.

[0115] See also Figure 3 Based on the same concept, the present invention further provides an intelligent treadmill 300. The intelligent treadmill 300 includes a memory 301 and a processor 302. 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 intelligent treadmill according to any of the above embodiments.

[0116] Based on the same concept, the present invention also provides an air conditioner, including a memory and a processor, wherein a control program is stored in the memory, and when the control program is executed by the processor, it is used to implement the control method of the air conditioner based on the intelligent treadmill according to any of the above embodiments.

[0117] The above embodiments may be combined in any way. According to any one of the above preferred embodiments or a combination of multiple preferred embodiments, the embodiments of the present invention can achieve the following beneficial effects:

[0118] Obtain a start instruction of the smart treadmill, respond to the start instruction, obtain the real-time operating speed of the smart treadmill, match the real-time operating speed with a preset historical speed parameter comparison table, obtain the historical operating speed that is the same as the real-time operating speed as the target historical speed, select the historical air-conditioning operating parameters corresponding to the target historical speed as the target setting parameters, and make the air conditioner operate according to the target setting parameters, thereby realizing automatic control of the air conditioner according to the historical operating speed of the smart treadmill and the historical air-conditioning operating parameters of the air conditioner corresponding to the historical operating speed, so that the target setting parameters of the air conditioner are matched with the real-time operating speed of the smart treadmill, thereby providing the user with a comfortable environment during the user's exercise, and also reducing the process of the user controlling the air conditioner by himself, thereby improving the user experience.

[0119] At this point, those skilled in the art will recognize that, although a number of exemplary embodiments of the present invention have been shown and described in detail herein, many other variations or modifications consistent with the principles of the present invention may be directly determined or derived from the disclosure of the present invention without departing from the spirit and scope of the present invention. Therefore, the scope of the present invention should be understood and deemed to cover all such other variations or modifications.

Claims

1. A method for controlling an air conditioner based on an intelligent treadmill, wherein the intelligent treadmill is signal-connected to the air conditioner, the method comprising: Obtaining a start instruction for the intelligent treadmill; In response to the start instruction, obtaining the real-time running speed of the intelligent treadmill; Matching the real-time running speed with a preset historical speed parameter comparison table to obtain a historical running speed that is the same as the real-time running speed as the target historical speed; wherein the historical speed parameter comparison table at least includes the historical running speed of the smart treadmill after each startup and its corresponding historical air-conditioning operating parameters; selecting a historical air-conditioning operating parameter corresponding to the target historical speed as a target setting parameter; causing the air conditioner to operate according to the target setting parameters; The historical speed parameter comparison table also includes historical environmental parameters of the intelligent treadmill at each startup time, and the historical environmental parameters include historical indoor environmental parameters and / or historical outdoor environmental parameters; When there are multiple target historical speeds, selecting the historical air-conditioning operating parameters corresponding to the target historical speeds as target setting parameters includes: Acquiring real-time environmental parameters at the time of the start instruction, the real-time environmental parameters including real-time indoor environmental parameters and / or real-time outdoor environmental parameters; Selecting the best one from each of the target historical speeds as the final historical speed according to the real-time environmental parameter and the historical environmental parameter corresponding to the start time of each of the target historical speeds; The historical air-conditioning operating parameters corresponding to the final historical speed are used as target setting parameters.

2. The control method according to claim 1, wherein: When the historical environmental parameters include historical outdoor environmental parameters, and the real-time environmental parameters include real-time outdoor environmental parameters, selecting the best one from the target historical speeds as the final historical speed according to the real-time environmental parameters and the historical environmental parameters corresponding to the start time of each target historical speed includes: A target historical speed that is closest to the real-time outdoor environment parameter is selected from the historical outdoor environment parameters corresponding to the start time of each target historical speed as the final historical speed.

3. The control method according to claim 1, wherein: When the historical environmental parameters include historical indoor environmental parameters, and the real-time environmental parameters include real-time indoor environmental parameters, selecting the best one from the target historical speeds as the final historical speed according to the real-time environmental parameters and the historical environmental parameters corresponding to the start time of each target historical speed includes: A target historical speed that is closest to the real-time indoor environment parameter is selected from the historical indoor environment parameters corresponding to the start time of each target historical speed as the final historical speed.

4. The control method according to claim 1, wherein: When the historical environmental parameters include historical indoor environmental parameters and historical outdoor environmental parameters, and the real-time environmental parameters include real-time indoor environmental parameters and real-time outdoor environmental parameters, selecting the best one from each of the target historical speeds as the final historical speed based on the real-time environmental parameters and the historical environmental parameters corresponding to the start time of each of the target historical speeds includes: Calculating a real-time average environmental parameter of the real-time indoor environmental parameter and the real-time outdoor environmental parameter; Calculate the historical average parameters of the historical indoor environmental parameters and the historical outdoor environmental parameters corresponding to the start time of each target historical speed; A target historical speed corresponding to the target historical speed closest to the real-time average environmental parameter is selected from each of the historical average parameters as the final historical speed.

5. The control method according to claim 1, wherein: The historical indoor environmental parameters and / or the historical outdoor environmental parameters include historical temperature and / or historical humidity; The real-time indoor environmental parameter and / or the real-time outdoor environmental parameter include real-time temperature and / or real-time humidity.

6. The control method according to claim 1, wherein: After obtaining the startup instruction of the intelligent treadmill, the method includes: Obtaining the identity of a user using the treadmill; The matching of the real-time running speed with a preset historical speed parameter comparison table includes: The real-time running speed is matched with a preset historical speed parameter comparison table corresponding to the user identity.

7. The control method according to claim 1, wherein: After matching the real-time running speed with a preset historical speed parameter comparison table, if the historical running speed that is the same as the real-time running speed is not obtained, a reminder message is output to remind the user of the smart treadmill to control the air conditioner.

8. The control method according to claim 7, wherein: After outputting the reminder information, the following steps are included: Obtaining a control instruction sent by a control device bound to the air conditioner; causing the air conditioner to operate according to the received control instructions; The real-time operating speed and the corresponding control instructions are added to the historical speed parameter comparison table.

9. An intelligent treadmill, comprising a memory and a processor, wherein the memory stores a control program, and when the control program is executed by the processor, it is used to implement the control method of the air conditioner based on the intelligent treadmill according to any one of claims 1 to 8.

Citation Information

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