A venue temperature control method, system, intelligent terminal and storage medium
By calculating the difference between the perceived body temperature and the outdoor temperature, determining the temperature adjustment method, and controlling the air conditioner to adjust the temperature of the sports venue, the problem of rising perceived body temperature during exercise is solved and exercise comfort is improved.
Patent Information
- Application Number
- CN202310632664.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-30
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2043-05-30
AI Technical Summary
The temperature inside the sports venue is constant, but people feel their body temperature rises during exercise, causing discomfort.
By obtaining the exerciser's perceived temperature and indoor and outdoor temperatures, calculating the deviation and conduction temperature, determining the temperature adjustment method, controlling the air conditioner to adjust the temperature, and adjusting the air conditioner mode according to the exercise status to improve comfort.
During exercise and when you stop exercising, the air conditioner adjusts the temperature according to the body temperature to improve the comfort in the sports venue.
Smart Images

Figure CN116697550B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of temperature control technology, and in particular to a venue temperature control method, system, intelligent terminal and storage medium. Background Art
[0002] Air conditioning, also known as air conditioner, refers to equipment that uses artificial means to adjust and control the temperature, humidity, flow rate and other parameters of the ambient air in a building or structure.
[0003] In related technologies, sports venues usually use central air conditioning to adjust the temperature inside the venue. Personnel control the air conditioning on and off through the air conditioning controller, and select the temperature on the air conditioning controller to make the air conditioning work at the selected temperature, so that the temperature of the venue tends to the selected temperature.
[0004] With respect to the above-mentioned related technologies, the inventors believe that: the temperature inside the sports venue is constant, but during exercise, people's body temperature rises due to exercise, causing people to feel uncomfortable when exercising in the venue, and there is room for improvement. Summary of the Invention
[0005] In order to improve the comfort of people exercising in a venue, the present application provides a venue temperature control method, system, intelligent terminal and storage medium.
[0006] In the first aspect, the present application provides a venue temperature control method, which adopts the following technical solutions:
[0007] A venue temperature control method, comprising:
[0008] Obtain the current body temperature of the athlete, the current indoor temperature and outdoor temperature of the sports venue;
[0009] Comparing the perceived temperature with a preset comfortable temperature range to continue obtaining the perceived temperature or calculating the difference between the perceived temperature and corresponding endpoint values of the comfortable temperature range, and defining the calculated difference as a deviation temperature;
[0010] Based on the deviation temperature, the deviation temperature is compared with the preset adjustment temperature to continue to obtain the body temperature or to determine the current actual deviation temperature based on the deviation temperature;
[0011] Based on the actual deviation temperature, the difference between the indoor temperature and the outdoor temperature is calculated, and the calculated difference is defined as the conduction temperature;
[0012] Determine the current temperature adjustment mode based on the conduction temperature and the actual deviation temperature;
[0013] Instruct the preset air conditioner to adjust the temperature of the sports venue according to the temperature adjustment method, and obtain the current exercise status of the athletes;
[0014] The motion state is compared with a preset reference motion state to instruct the air conditioner to continue to adjust the temperature of the sports venue or to instruct the air conditioner to adjust at the indoor temperature.
[0015] By adopting the above technical solution, when the perceived temperature exceeds the comfortable temperature range, the difference between the perceived temperature and the comfortable temperature range is calculated to obtain the deviation temperature, thereby obtaining the actual deviation temperature based on the deviation temperature, and calculating the difference between the indoor temperature and the outdoor temperature to obtain the conduction temperature, thereby determining the temperature adjustment method based on the actual deviation temperature and the conduction temperature, controlling the air conditioner to adjust the temperature in the temperature adjustment method, and detecting the motion state, thereby controlling the air conditioner to adjust the temperature in the indoor temperature when the motion state stops, and causing the air conditioner to adjust the temperature based on the perceived temperature of the person when the person is exercising or stops exercising, thereby improving the comfort of the person when exercising in the sports venue.
[0016] Optionally, the method for determining the temperature adjustment mode includes:
[0017] Determine whether the current temperature is increased or decreased according to the actual deviation temperature;
[0018] Based on the temperature increase, determining the current indoor temperature increase or indoor temperature decrease according to the conduction temperature;
[0019] Based on the increase in indoor temperature, instruct the air conditioner to adjust the temperature in a preset ventilation mode;
[0020] Based on the decrease in indoor temperature, the air conditioner is instructed to adjust the temperature in a preset temperature control mode;
[0021] Based on the temperature drop, determining whether the current indoor temperature is increased or the indoor temperature is decreased according to the conduction temperature;
[0022] Based on the increase in indoor temperature, the air conditioner is instructed to adjust the temperature in a preset temperature control mode;
[0023] Based on the decrease in indoor temperature, the air conditioner is instructed to adjust the temperature in a preset ventilation mode.
[0024] By adopting the above technical solution, when the temperature increases, that is, when the indoor temperature needs to be increased, the increase in indoor temperature indicates that the outdoor temperature is high, so only the ventilation mode needs to be used for adjustment; when the indoor temperature decreases, it indicates that the outdoor temperature is low, so it needs to be adjusted through the temperature control mode. When the temperature decreases, that is, when the indoor temperature needs to be lowered, the increase in indoor temperature indicates that the outdoor temperature is high, so it needs to be adjusted through the temperature control mode; when the indoor temperature decreases, it indicates that the outdoor temperature is low, so it needs to be adjusted through the ventilation mode. In this way, the adjustment method is determined according to the temperature difference between indoor and outdoor and the temperature requirements of the users, thereby improving the convenience of temperature adjustment.
[0025] Optionally, the method of instructing the air conditioner to adjust the temperature of the sports venue includes:
[0026] Determine the current indoor temperature adjustment based on the actual deviation temperature and the indoor temperature;
[0027] Determine the current ventilation mode or temperature control mode according to the temperature adjustment method;
[0028] Based on the ventilation pattern, the difference between the regulated indoor temperature and the outdoor temperature is calculated and defined as the equilibrium temperature;
[0029] Determine the current ventilation time according to the balanced temperature, the preset ventilation power and the preset motion range, and determine the balanced ventilation power according to adjusting the indoor temperature, the outdoor temperature and the motion range;
[0030] The air conditioner is instructed to ventilate according to the ventilation power and ventilation time, and after the ventilation time, the air conditioner is instructed to ventilate according to the balanced ventilation power to maintain the regulated indoor temperature.
[0031] By adopting the above technical solution, the regulated indoor temperature is determined according to the actual deviation temperature and the indoor temperature. After determining to use the ventilation mode, the difference between the regulated indoor temperature and the outdoor temperature is calculated to obtain the equilibrium temperature, thereby obtaining the ventilation time according to the equilibrium temperature, ventilation power and motion range, and determining the balanced ventilation power according to the regulated indoor temperature, indoor temperature and motion range, controlling the air conditioner to ventilate with the ventilation power and ventilation time, thereby adjusting the indoor temperature to the regulated indoor temperature, and controlling the air conditioner to continue ventilating with the balanced ventilation power to maintain the regulated indoor temperature, thereby improving the comfort of people when exercising in sports venues.
[0032] Optionally, the method of instructing the air conditioner to adjust the temperature of the sports venue further includes:
[0033] Based on the temperature control mode, the current basic air-conditioning temperature is determined by adjusting the indoor and outdoor temperatures;
[0034] Determine the current air conditioning correction temperature according to the outdoor temperature, indoor temperature and the preset heat transfer coefficient;
[0035] Determine the current actual air-conditioning temperature according to the air-conditioning correction temperature and the basic air-conditioning temperature;
[0036] Determine the current temperature control time based on the actual air-conditioning temperature, indoor temperature, preset motion range and preset air supply power;
[0037] The air conditioner controls the temperature according to the temperature control time, the air supply power and the actual air conditioner temperature instruction, and after the temperature control time, controls the temperature according to the adjusted indoor temperature instruction to maintain the adjusted indoor temperature.
[0038] By adopting the above technical solution, after determining the temperature control mode, the basic air-conditioning temperature is determined according to the adjusted indoor temperature, and the air-conditioning correction temperature is determined according to the outdoor temperature, indoor temperature and heat conductivity coefficient. The basic air-conditioning temperature is corrected by the air-conditioning correction temperature to obtain the actual air-conditioning temperature, and the temperature control time is obtained according to the actual air-conditioning temperature, indoor temperature, movement range and air supply power, so that the air-conditioning adjusts the temperature according to the actual air-conditioning temperature, air supply power and temperature control time, and after the temperature control time, the air-conditioning maintains the adjusted indoor temperature, thereby improving the comfort of people exercising in sports venues.
[0039] Optionally, the method of instructing the air conditioner to adjust the temperature of the sports venue further includes:
[0040] Get the current wind direction and speed of the air conditioner, the current movement trajectory of the preset ball, and the current usage status of the preset adjacent air conditioners;
[0041] Compare the wind direction and movement trajectory to continue to obtain the wind direction and movement trajectory or determine the current impact location;
[0042] Based on the impact location, the wind speed is compared with a preset reference speed to continue obtaining the wind speed or the use state is compared with a preset idle state;
[0043] Based on the comparison between the usage state and the idle state, the air conditioner is instructed to supply air at a reference speed or the current impact distance is obtained;
[0044] Determine the current interference force value based on the impact distance and wind speed, and determine the stable wind direction based on the wind direction;
[0045] Determine the current reflection position and reflection wind direction according to the stable wind direction and the impact position;
[0046] Determine the current direct wind direction based on the reflection position and reflected wind direction, and obtain the current direct distance and reflected distance;
[0047] Determine the current auxiliary wind speed based on the direct distance, reflected distance and interference force value;
[0048] Indicates the adjacent air conditioner blowing according to the reflection position, direct wind direction and auxiliary wind speed.
[0049] By adopting the above technical solution, the wind direction and the moving trajectory of the ball are detected, so that when the wind direction and the moving trajectory coincide, the impact position, stable wind direction, reflection position and reflected wind direction are determined, and the direct wind direction is determined according to the reflection position and the reflected wind direction, and the interference force value is determined according to the wind speed, so as to determine the auxiliary wind speed according to the direct distance, the reflection distance and the interference force value, so as to control the adjacent air conditioner to blow air to the reflection position with the direct wind direction and auxiliary wind speed, so that the reflected wind is offset by the interference force value with the reflection wind direction, thereby maintaining the stability of the ball's moving trajectory, avoiding the air conditioner from affecting the movement of people as much as possible, and improving the comfort of people's movement.
[0050] Optionally, the method for obtaining the perceived temperature of a person includes:
[0051] Obtain the current indoor environmental conditions of the sports venue, personnel status, and elapsed exercise time;
[0052] Determine the current basic body temperature based on the person's status, indoor temperature and indoor environmental conditions;
[0053] Determine the current self-corrected temperature based on the person's status and exercise time;
[0054] The basic body temperature is corrected according to the self-corrected temperature to determine the body temperature.
[0055] By adopting the above technical solution, the basic perceived temperature of a person is determined according to the person's status, indoor temperature and indoor environmental conditions, and the self-corrected temperature is determined according to the person's status and exercise time, so that the basic perceived temperature is corrected by the self-corrected temperature to obtain the perceived temperature. The heat generated by the person's exercise and the impact of the environment on the person's body sensation are comprehensively considered to obtain the perceived temperature, thereby improving the accuracy of the calculated perceived temperature.
[0056] Optional methods for correcting perceived temperature include:
[0057] Get the current personnel position and venue area of the personnel;
[0058] Determine the current reference correction area according to the site area and obtain the conduction coefficient of the reference correction area;
[0059] Compare the personnel position with the reference correction area to continue to obtain the personnel position or obtain the current personnel distance;
[0060] Based on the personnel distance, the current environment correction temperature is determined according to the personnel distance, outdoor temperature and conductivity coefficient;
[0061] The sensible temperature is corrected according to the ambient correction temperature to determine the current corrected sensible temperature.
[0062] By adopting the above technical solution, the position of the personnel and the site area are detected, and the benchmark correction area is determined based on the site area. The position of the personnel and the benchmark correction area are detected. When the position of the personnel is within the benchmark correction area, the environmental correction temperature is determined based on the personnel distance, outdoor temperature and conduction coefficient, and the perceived temperature is corrected with the environmental correction temperature. The influence of the outdoor environment near the door and window area on the perceived temperature is taken into account in the calculation of the perceived temperature, thereby improving the accuracy of the perceived temperature.
[0063] In a second aspect, the present application provides a venue temperature control system, which adopts the following technical solutions:
[0064] A venue temperature control system, comprising:
[0065] The acquisition module is used to obtain the body temperature, sports venue, indoor temperature, outdoor temperature, sports status, wind direction, wind speed, movement trajectory, usage status, impact distance, direct distance, reflection distance, indoor environmental conditions, personnel status, elapsed time of exercise, personnel location, venue area, conduction coefficient, and personnel distance;
[0066] A memory for storing a program of any one of the above venue temperature control methods;
[0067] The processor and the program in the memory can be loaded and executed by the processor to implement a venue temperature control method as described in any one of the above items.
[0068] By adopting the above technical solution, the processor loads and executes a program of a venue temperature control method stored in the memory, thereby controlling the acquisition module to obtain a series of data related to the venue temperature control, and analyzing and processing the data, thereby completing the venue temperature control, thereby improving the convenience of venue temperature control.
[0069] In a third aspect, the present application provides a smart terminal that adopts the following technical solution:
[0070] An intelligent terminal includes a memory and a processor, wherein the memory stores a computer program that can be loaded by the processor and execute any of the above-mentioned venue temperature control methods.
[0071] By adopting the above technical solution, a person operates the intelligent terminal to issue an operation instruction, so that the processor loads and executes a computer program of a venue temperature control method stored in the memory, thereby controlling the temperature of the venue and improving the convenience of venue temperature control.
[0072] In a fourth aspect, the present application provides a computer storage medium capable of storing corresponding programs, which has the characteristics of facilitating the improvement of the comfort of people exercising in a venue, and adopts the following technical solutions:
[0073] A computer-readable storage medium stores a computer program that can be loaded by a processor and execute any of the above-mentioned venue temperature control methods.
[0074] By adopting the above technical solution, a computer program for a venue temperature control method is stored in a storage medium. When a person operates the intelligent terminal to issue an operation instruction, the processor directly loads and executes the computer program in the memory, thereby analyzing and processing the acquired data, thereby completing the temperature control of the venue and improving the efficiency of the venue temperature control.
[0075] In summary, this application includes at least one of the following beneficial technical effects:
[0076] 1. When the perceived temperature exceeds the comfortable temperature range, the difference between the perceived temperature and the comfortable temperature range is calculated to obtain a deviation temperature, thereby obtaining the actual deviation temperature based on the deviation temperature. The difference between the indoor and outdoor temperatures is then calculated to obtain the conduction temperature, thereby determining a temperature adjustment mode based on the actual deviation temperature and the conduction temperature. The air conditioner is controlled to adjust the temperature using the temperature adjustment mode, and the motion state is detected. When the motion state stops, the air conditioner is controlled to adjust the temperature to the indoor temperature. When the athlete is exercising or stopping, the air conditioner adjusts the temperature based on the athlete's perceived temperature, thereby improving the comfort of the athlete when exercising in the sports venue.
[0077] 2. By determining the regulated indoor temperature based on the actual deviation temperature and the indoor temperature, after determining to use a ventilation mode, the difference between the regulated indoor temperature and the outdoor temperature is calculated to obtain the equilibrium temperature, thereby obtaining the ventilation time based on the equilibrium temperature, ventilation power, and range of motion, and determining the equilibrium ventilation power based on the regulated indoor temperature, indoor temperature, and range of motion, controlling the air conditioner to ventilate at the ventilation power and ventilation time, thereby adjusting the indoor temperature to the regulated indoor temperature, and controlling the air conditioner to continue ventilating at the equilibrium ventilation power to maintain the regulated indoor temperature, thereby improving the comfort of people exercising in the sports venue;
[0078] 3. After determining the temperature control mode, the basic air-conditioning temperature is determined according to the adjusted indoor temperature, and the air-conditioning correction temperature is determined according to the outdoor temperature, indoor temperature and heat conductivity coefficient. The basic air-conditioning temperature is corrected with the air-conditioning correction temperature to obtain the actual air-conditioning temperature, and the temperature control time is obtained according to the actual air-conditioning temperature, indoor temperature, movement range and air supply power. The air-conditioning adjusts the temperature according to the actual air-conditioning temperature, air supply power and temperature control time, and after the temperature control time, the air-conditioning maintains the adjusted indoor temperature, thereby improving the comfort of people exercising in the sports venue. BRIEF DESCRIPTION OF THE DRAWINGS
[0079] Figure 1 This is a flow chart of a venue temperature control method in an embodiment of the present application.
[0080] Figure 2 This is a flow chart of a method for determining a temperature adjustment method in an embodiment of the present application.
[0081] Figure 3 This is the process of the method of instructing the air conditioner to adjust the temperature of the sports venue in the embodiment of the present application Figure 1 .
[0082] Figure 4 This is the process of the method of instructing the air conditioner to adjust the temperature of the sports venue in the embodiment of the present application Figure 2 .
[0083] Figure 5 This is the process of the method of instructing the air conditioner to adjust the temperature of the sports venue in the embodiment of the present application Figure 3 .
[0084] Figure 6 This is a flow chart of a method for obtaining a person's perceived temperature in an embodiment of the present application.
[0085] Figure 7 This is a flow chart of a method for correcting perceived temperature in an embodiment of the present application. DETAILED DESCRIPTION
[0086] In order to make the purpose, technical solutions and advantages of this application more clear, the following Figure 1-7 It should be understood that the specific embodiments described herein are only used to explain the present application and are not intended to limit the present application.
[0087] In the embodiment of the present application, a badminton hall is taken as an example. The body temperature of athletes is detected. When the body temperature exceeds the comfortable temperature range, the difference between the body temperature and the corresponding endpoint value of the comfortable temperature range is calculated to obtain the deviation temperature. When the deviation temperature is greater than the adjustment temperature, the actual deviation temperature is determined according to the deviation temperature, and the difference between the indoor temperature and the outdoor temperature is calculated to obtain the conduction temperature. The temperature adjustment method is then determined according to the conduction temperature and the actual deviation temperature. The air conditioner is controlled to adjust the temperature of the sports venue in a temperature adjustment method, and the movement state of the person is detected during the adjustment process. When the person stops exercising, the air conditioner is controlled to control the temperature at the indoor temperature. The person can feel the comfortable temperature during and after exercise, thereby improving the comfort of the person exercising in the venue.
[0088] Reference Figure 1 , the embodiment of the present application discloses a venue temperature control method, comprising the following steps:
[0089] Step S100: Acquire the current body temperature of the athlete, the current indoor temperature and the outdoor temperature of the sports venue.
[0090] The perceived temperature is the temperature felt by athletes in the sports venue. Figure 6 The computer program calculates, uploads, and stores data related to perceived temperature for later use. The indoor temperature represents the objective physical temperature of the sports venue, detected by a thermometer, uploaded, and stored for later use by the computer program. The outdoor temperature represents the objective physical temperature outside the sports venue, detected by a thermometer, uploaded, and stored for later use by the computer program. By monitoring perceived temperature, indoor temperature, and outdoor temperature, data support is provided for subsequent temperature control of the venue.
[0091] Step S101: Compare the perceived temperature with a preset comfortable temperature range to continue obtaining the perceived temperature or calculate the difference between the perceived temperature and corresponding endpoint values of the comfortable temperature range, and define the calculated difference as the deviation temperature.
[0092] The comfortable temperature range is a preset range of temperatures within which a person feels comfortable. The specific range is determined by those skilled in the art based on actual circumstances and is not detailed here. The deviation temperature is the difference between the perceived temperature and the endpoint of the comfortable temperature range. This deviation is determined by a computer program by taking the difference between the perceived temperature and the endpoint of the comfortable temperature range that is close to the perceived temperature, and is then uploaded and stored for future use.
[0093] By sorting and comparing the numerical values corresponding to the perceived temperature and the numerical values corresponding to the comfortable temperature range, it is determined whether the perceived temperature falls within the comfortable temperature range, thereby determining whether the person's current perceived temperature makes the person feel uncomfortable, pending further analysis and processing.
[0094] If the perceived temperature falls within the comfortable temperature range, it indicates that the current perceived temperature of the person makes the person feel comfortable, so the perceived temperature is continuously detected to continuously monitor changes in the perceived temperature.
[0095] If the perceived temperature exceeds the comfortable temperature range, it indicates that the current perceived temperature of the person makes the person feel uncomfortable. Therefore, the deviation temperature is obtained by subtracting the perceived temperature from the corresponding endpoint value of the comfortable temperature range, thereby providing data support for subsequent temperature control of the venue.
[0096] Step S102: Based on the deviation temperature, the deviation temperature is compared with a preset adjustment temperature to continue to obtain the perceived temperature or to determine the current actual deviation temperature based on the deviation temperature.
[0097] The adjustment temperature is the minimum deviation temperature required for temperature regulation. The specific value is determined by those skilled in the art based on actual conditions and is not detailed here. The actual deviation temperature is the objective physical temperature value corresponding to the deviation temperature. Those skilled in the art have conducted extensive experiments based on different deviation temperatures and summarized the patterns to generate a database. The database stores deviation temperatures related to the actual deviation temperature and has multiple deviation temperatures corresponding to the actual deviation temperature. Based on the input deviation temperature, the actual deviation temperature is matched and output.
[0098] By comparing and analyzing the numerical values corresponding to the deviation temperature and the numerical values corresponding to the adjustment temperature, it is determined whether the deviation temperature is greater than the adjustment temperature, thereby determining whether the deviation temperature meets the minimum requirements for air conditioning temperature regulation for further analysis and processing.
[0099] If the deviation temperature is not greater than the adjustment temperature, it indicates that the deviation temperature does not meet the minimum requirement for air conditioning temperature regulation, so the body temperature is continued to be detected to continuously monitor the changes in the body temperature.
[0100] If the deviation temperature is greater than the adjusted temperature, it indicates that the deviation temperature meets the minimum requirement for air conditioning temperature regulation. Therefore, the actual deviation temperature is determined based on the deviation temperature, thereby providing data support for subsequent temperature control of the venue.
[0101] Step S103: Calculate the difference between the indoor temperature and the outdoor temperature based on the actual deviation temperature, and define the calculated difference as the conduction temperature.
[0102] The conduction temperature is the difference between the indoor and outdoor temperatures. This difference is calculated by a computer program, uploaded, and stored for future use. After determining the actual deviation temperature, the conduction temperature is calculated by subtracting the indoor and outdoor temperatures, providing data support for subsequent temperature control within the venue.
[0103] Step S104: determining a current temperature adjustment mode according to the conduction temperature and the actual deviation temperature.
[0104] Temperature adjustment modes include ventilation mode and temperature control mode, refer to Figure 2 A large number of experiments are conducted by technicians in this field based on different conduction temperatures and actual deviation temperatures to summarize the rules and generate a database. The database stores conduction temperatures and actual deviation temperatures related to temperature control methods, and has multiple conduction temperatures and actual deviation temperatures corresponding to temperature control methods. The output temperature control method is matched according to the input conduction temperature and actual deviation temperature.
[0105] Step S105: instructing the preset air conditioner to adjust the temperature of the sports venue according to the temperature adjustment mode, and obtaining the current exercise status of the athlete.
[0106] The air conditioner is a central air-conditioning outlet preset above the sports field. The specific location is set by technicians in this field according to actual conditions and will not be described in detail here. The motion state includes two states: moving and stopping. The camera captures the movement of the person and identifies, determines, uploads, and stores it for future use. The air conditioner is controlled to adjust the temperature of the sports field according to the temperature adjustment method, so that the temperature of the sports field is suitable for the body temperature of the person when exercising, thereby improving the comfort of the person exercising in the venue. When the air conditioner adjusts the temperature of the sports field, the motion state of the athlete is detected to provide data support for the subsequent temperature control of the venue.
[0107] Step S106: Compare the exercise state with a preset reference exercise state to instruct the air conditioner to continue to adjust the temperature of the sports field or to instruct the air conditioner to adjust at the indoor temperature.
[0108] The reference motion state indicates that the user is exercising. By comparing and analyzing the state corresponding to the motion state with the state corresponding to the reference motion state, it is determined whether the motion state is consistent with the reference motion state, thereby determining whether the user is exercising.
[0109] If the exercise state is consistent with the reference exercise state, it indicates that the athlete is exercising, so the air conditioner is controlled to continue to adjust the temperature of the sports venue to make the athletes feel comfortable.
[0110] If the exercise state is inconsistent with the reference exercise state, it indicates that the person exercising is not exercising, so the air conditioner is controlled to adjust to the indoor temperature to ensure that the person who has stopped exercising feels comfortable at the indoor temperature.
[0111] Reference Figure 2 , a method for determining a temperature regulation mode comprises the following steps:
[0112] Step S200: determining whether the current temperature should be increased or decreased according to the actual deviation temperature.
[0113] Temperature increase is the direction of indoor temperature change determined by the actual deviation temperature. A negative actual deviation temperature indicates a temperature increase is needed. Temperature decrease is the direction of indoor temperature change determined by the actual deviation temperature. A positive actual deviation temperature indicates a temperature decrease is needed. Both temperature increases and temperature decreases are determined by a computer program that calls the actual deviation temperature. The positive and negative values of the actual deviation temperature are detected, determined, uploaded, and stored for future use. The actual deviation temperature is used to determine whether to increase or decrease the temperature, providing data support for subsequent temperature adjustment methods.
[0114] Step S201: Based on the temperature increase, determine whether the current indoor temperature is increased or decreased according to the conduction temperature.
[0115] If the indoor temperature increases, the indoor temperature is lower than the outdoor temperature and the conduction temperature is negative, indicating an increase in the indoor temperature. If the indoor temperature decreases, the indoor temperature is higher than the outdoor temperature and the conduction temperature is positive, indicating a decrease in the indoor temperature. Both increases and decreases are determined by a computer program that uses the conduction temperature, detects the positive or negative value of the conduction temperature, obtains it, uploads it, and stores it for future use. After determining a temperature increase, the conduction temperature is used to determine whether the indoor temperature has increased or decreased, providing data support for subsequent temperature adjustment methods.
[0116] Step S2011: Based on the increase in indoor temperature, instruct the air conditioner to adjust the temperature in a preset ventilation mode.
[0117] Ventilation mode regulates temperature solely through indoor and outdoor air circulation. If the indoor temperature rises, indicating it's lower than the outdoor temperature, and this temperature increase suggests the indoor temperature needs to be raised, the air conditioner is controlled in ventilation mode to circulate air between the indoor and outdoor areas, raising the indoor temperature and maintaining a comfortable temperature for occupants.
[0118] Step S2012: Based on the decrease in indoor temperature, instruct the air conditioner to adjust the temperature in a preset temperature control mode.
[0119] Temperature control mode uses the air conditioner's compressor to compress air, thereby adjusting the air temperature. If the indoor temperature drops, it indicates it's higher than the outdoor temperature, while an increase indicates the indoor temperature needs to be raised. Therefore, temperature adjustment via ventilation mode is not possible. Temperature control directly increases the air temperature, improving the convenience of temperature control.
[0120] Step S202: Based on the temperature drop, determine whether the current indoor temperature is increased or decreased according to the conduction temperature.
[0121] If the indoor temperature increases, the indoor temperature is lower than the outdoor temperature and the conduction temperature is negative, indicating an increase in the indoor temperature. If the indoor temperature decreases, the indoor temperature is higher than the outdoor temperature and the conduction temperature is positive, indicating a decrease in the indoor temperature. Both increases and decreases are determined by a computer program that uses the conduction temperature, detects the positive or negative value of the conduction temperature, obtains it, uploads it, and stores it for future use. After determining a temperature decrease, the conduction temperature is used to determine whether the indoor temperature has increased or decreased, providing data support for subsequent temperature adjustment methods.
[0122] Step S2021: Based on the increase in indoor temperature, instruct the air conditioner to adjust the temperature in a preset temperature control mode.
[0123] Temperature control mode uses the air conditioner's compressor to compress air, thereby adjusting the air temperature. If the indoor temperature rises, it indicates it's lower than the outdoor temperature, while a decrease in temperature indicates the indoor temperature needs to be lowered. Therefore, temperature adjustment via ventilation mode is not possible. Temperature control directly lowers the air temperature, improving the convenience of temperature control.
[0124] Step S2022: Based on the decrease in indoor temperature, instruct the air conditioner to adjust the temperature in a preset ventilation mode.
[0125] Ventilation mode regulates temperature solely through indoor and outdoor air circulation. If the indoor temperature drops, indicating it's higher than the outdoor temperature, and the temperature drop indicates a need to lower the indoor temperature, the air conditioner is controlled in ventilation mode to circulate air between the indoor and outdoor areas, thereby lowering the indoor temperature and maintaining a comfortable environment for occupants.
[0126] Reference Figure 3 , a method for instructing an air conditioner to adjust the temperature of a sports venue, comprising the following steps:
[0127] Step S300: determining the current adjusted indoor temperature according to the actual deviation temperature and the indoor temperature.
[0128] The adjusted indoor temperature is the temperature at which the indoor temperature needs to be raised or lowered. This is calculated by a computer program using the actual deviation temperature and the indoor temperature. The actual deviation temperature and the indoor temperature are used to determine the adjusted indoor temperature, providing data support for subsequent temperature adjustments of the sports venue.
[0129] Step S301: determining a current ventilation mode or a temperature control mode according to a temperature adjustment method.
[0130] The ventilation mode or temperature control mode is determined by temperature adjustment, thereby providing data support for subsequent temperature adjustment of the sports venue.
[0131] Step S302: Based on the ventilation mode, the difference between the indoor temperature and the outdoor temperature is calculated and adjusted, and the calculated difference is defined as the equilibrium temperature.
[0132] The equilibrium temperature is the temperature increase or decrease that occurs when the indoor and outdoor temperatures reach equilibrium. This temperature difference is calculated by a computer program, uploaded, and stored for future use. After determining the ventilation mode to use, the equilibrium temperature is calculated by adjusting the difference between the indoor and outdoor temperatures, providing data support for subsequent temperature adjustments at the sports venue.
[0133] Step S303: determining the current ventilation time according to the equilibrium temperature, the preset ventilation power and the preset movement range, and determining the equilibrium ventilation power according to adjusting the indoor temperature, the outdoor temperature and the movement range.
[0134] Ventilation power is the speed of air exchange circulation when the air conditioner is in ventilation mode. The specific numerical value is set by those skilled in the art according to actual conditions and will not be elaborated herein. Range of motion is the area size of a sports venue. In this application, a standard badminton court is used as an example. Ventilation time is the time during which the air conditioner adjusts the indoor temperature to the adjusted indoor temperature in ventilation mode. A large number of experiments and summaries are conducted by those skilled in the art according to different equilibrium temperatures, ventilation power and range of motion to generate a database. The database stores the equilibrium temperature, ventilation power and range of motion related to the ventilation time, and has multiple equilibrium temperatures, ventilation power and range of motion corresponding to the ventilation time. According to the equilibrium temperature, ventilation power and range of motion input, the output ventilation time is matched. Balanced ventilation power is the air exchange circulation speed required to maintain the adjusted indoor temperature. A large number of experiments and summaries are conducted by those skilled in the art according to different adjusted indoor temperatures, outdoor temperatures and range of motion to generate a database. The database stores the adjusted indoor temperature, outdoor temperature and range of motion related to the balanced ventilation power, and has multiple adjusted indoor temperature, outdoor temperature and range of motion corresponding to the balanced ventilation power. According to the adjusted indoor temperature, outdoor temperature and range of motion input, the output balanced ventilation power is matched. The ventilation time is determined by balancing the temperature, ventilation power and range of motion, and the balanced ventilation power is determined by adjusting the indoor temperature, outdoor temperature and range of motion, thereby providing data support for subsequent temperature regulation of the sports venue.
[0135] Step S304: instructing the air conditioner to ventilate according to the ventilation power and ventilation time, and after the ventilation time, instructing the air conditioner to ventilate according to the balanced ventilation power to maintain the regulated indoor temperature.
[0136] The air conditioner instructs ventilation based on ventilation power and ventilation time, thereby adjusting the temperature of the sports field only, minimizing the impact on adjacent fields and improving the comfort of people during exercise. After the ventilation time, the air conditioner controls the balanced ventilation power to continue air exchange, maintaining the indoor temperature and keeping people at a comfortable temperature.
[0137] Reference Figure 4 The method for instructing the air conditioner to adjust the temperature of the sports venue further includes the following steps:
[0138] Step S400: Based on the temperature control mode, the current basic air-conditioning temperature is determined according to the adjusted indoor temperature and the indoor temperature.
[0139] The basic air-conditioning temperature is the temperature corresponding to the air-conditioning when the indoor temperature is adjusted to the adjusted indoor temperature. When the indoor temperature is greater than the adjusted indoor temperature, the basic air-conditioning temperature is less than the adjusted indoor temperature; when the indoor temperature is less than the adjusted indoor temperature, the basic air-conditioning temperature is greater than the adjusted indoor temperature. Technical personnel in this field conduct a large number of experiments based on different adjusted indoor temperatures and indoor temperatures to summarize the rules and generate a database. The database stores the adjusted indoor temperatures and indoor temperatures related to the basic air-conditioning temperature, and has multiple adjusted indoor temperatures and indoor temperatures corresponding to the basic air-conditioning temperature. According to the input adjusted indoor temperature and indoor temperature, the output basic air-conditioning temperature is matched, thereby providing data support for subsequent air conditioning to adjust the temperature of the sports venue.
[0140] Step S401: determining the current air conditioning correction temperature according to the outdoor temperature, the indoor temperature and a preset heat transfer coefficient.
[0141] The thermal conductivity coefficient is the amount of heat exchanged between the indoor and outdoor areas per square meter per unit time. The specific numerical value is set by those skilled in the art according to actual conditions and will not be elaborated on here. The air conditioning correction temperature is the temperature at which the indoor and outdoor heat exchange affects the temperature regulation of the venue by the air conditioner. Those skilled in the art conduct a large number of experiments based on different outdoor temperatures, indoor temperatures, and thermal conductivity coefficients to summarize the rules and generate a database. The database stores outdoor temperatures, indoor temperatures, and thermal conductivity coefficients related to the air conditioning correction temperature, and has multiple outdoor temperatures, indoor temperatures, and thermal conductivity coefficients corresponding to the air conditioning correction temperature. According to the input outdoor temperature, indoor temperature, and thermal conductivity coefficient, the output air conditioning correction temperature is matched, thereby providing data support for subsequent air conditioning to regulate the temperature of the sports venue.
[0142] Step S402: determining the current actual air-conditioning temperature according to the air-conditioning correction temperature and the basic air-conditioning temperature.
[0143] The actual air-conditioning temperature is the actual temperature corresponding to the air conditioner when the indoor temperature is adjusted to adjust the indoor temperature. Technical personnel in this field conduct a large number of experiments based on different air-conditioning correction temperatures and basic air-conditioning temperatures to summarize the rules and generate a database. The database stores air-conditioning correction temperatures and basic air-conditioning temperatures related to the actual air-conditioning temperature, and has multiple air-conditioning correction temperatures and basic air-conditioning temperatures corresponding to the actual air-conditioning temperature. According to the input air-conditioning correction temperature and basic air-conditioning temperature, the actual air-conditioning temperature is matched and output, thereby providing data support for subsequent air-conditioning to adjust the temperature of the sports venue.
[0144] Step S403: Determine the current temperature control time according to the actual air-conditioning temperature, the indoor temperature, the preset motion range and the preset air supply power.
[0145] The range of motion is the size of the area of the sports venue, and a standard badminton court is used as an example in this application. The air supply power is the wind speed when the air conditioner is cooling or heating. The specific size is set by those skilled in the art according to actual conditions and will not be described in detail here. The temperature control time is the shortest time for the air conditioner to adjust the indoor temperature to the adjusted indoor temperature. A large number of experiments are conducted by those skilled in the art based on different actual air-conditioning temperatures, indoor temperatures, range of motion, and air supply power to summarize the rules and generate a database. The database stores the actual air-conditioning temperature, indoor temperature, range of motion, and air supply power related to the temperature control time, and has multiple actual air-conditioning temperatures, indoor temperatures, range of motion, and air supply power corresponding to the temperature control time. According to the input actual air-conditioning temperature, indoor temperature, range of motion, and air supply power, the temperature control time is matched and output, thereby providing data support for subsequent air conditioning to regulate the temperature of the sports venue.
[0146] Step S404: instructing the air conditioner to control the temperature according to the temperature control time, the air supply power and the actual air conditioner temperature, and after the temperature control time, instructing the air conditioner to control the temperature according to the adjusted indoor temperature to maintain the adjusted indoor temperature.
[0147] The air conditioner is controlled directly to control the temperature of the sports venue according to the temperature control time, air supply power and actual air conditioning temperature, so as to adjust the temperature within the exercise range to the regulated indoor temperature in the shortest time, so that people are in a comfortable environment when exercising, and after the temperature control time, the air conditioner is controlled to adjust the indoor temperature for temperature control, so as to maintain the regulated indoor temperature.
[0148] Reference Figure 5 The method for instructing the air conditioner to adjust the temperature of the sports venue further includes the following steps:
[0149] Step S500: Acquire the current wind direction and wind speed of the air conditioner, the current movement trajectory of the preset ball, and the current usage status of the preset adjacent air conditioners.
[0150] Ball is a sports event for people, and badminton is taken as an example in this application. Adjacent air conditioners are air conditioners installed in adjacent sports venues. The installation location is set by those skilled in the art according to actual conditions and will not be described in detail here. Wind direction is the direction in which the air conditioner blows air, and wind speed is the speed at which the air conditioner blows air. Both are detected, uploaded, and stored by a computer program in the air conditioner for later use. Movement trajectory is the movement route of the ball, which is captured and uploaded by a camera and then detected, uploaded, and stored for later use by a computer program. Use status is two states in which the adjacent air conditioner is idle or in use, which are detected, uploaded, and stored for later use by a computer program and hardware. By detecting the wind direction and wind speed of the air conditioner, the movement trajectory of the ball, and the use status of the adjacent air conditioner, data support is provided for subsequent air conditioning to regulate the temperature of the sports venue.
[0151] Step S501: Compare the wind direction and the movement trajectory to continue to obtain the wind direction and the movement trajectory or determine the current impact position.
[0152] The impact location is where the wind direction and the movement trajectory coincide. This is determined by a computer program that uses wind direction and movement trajectory detection, uploads, and stores it for later use. By comparing and analyzing the direction corresponding to the wind direction with the route corresponding to the movement trajectory, it is determined whether the wind direction and the movement trajectory coincide, thereby determining whether the air conditioning wind will interfere with the movement of the ball for further analysis and processing.
[0153] If the wind direction and the moving trajectory do not coincide, it indicates that the wind from the air conditioner will not interfere with the movement of the ball. Therefore, the wind direction and the moving trajectory continue to be detected to continuously monitor changes in the wind direction and the moving trajectory.
[0154] If the wind direction and the movement trajectory overlap, it means that the wind from the air conditioner will interfere with the movement of the ball. Therefore, the impact position is determined based on the wind direction and the movement trajectory, thereby providing data support for the subsequent temperature adjustment of the sports venue by the air conditioner.
[0155] Step S502: Based on the impact position, the wind speed is compared with a preset reference speed to continue to obtain the wind speed or the use state is compared with a preset idle state.
[0156] The reference speed is the minimum wind speed value for the movement of the interference ball. The specific value is set by those skilled in the art according to the actual situation and will not be described in detail here. The idle state is the trigger information that the adjacent air conditioner is idle.
[0157] By sorting and comparing the numerical values corresponding to the wind speed and the numerical values corresponding to the reference speed, it is determined whether the wind speed is greater than the reference speed, thereby determining whether the wind speed will interfere with the movement of the ball for further analysis and processing.
[0158] If the wind speed is not greater than the reference speed, it indicates that the current wind speed is low and will not interfere with the movement of the ball. Therefore, the wind speed is continuously tested to continuously monitor the change in wind speed.
[0159] If the wind speed is greater than the reference speed, it indicates that the current wind speed is high, which will interfere with the movement of the ball. Therefore, the use state and the idle state are compared to determine whether the adjacent air conditioner is working, providing data support for the subsequent stable movement of the ball.
[0160] Step S503: Based on the comparison between the use state and the idle state, the air conditioner is instructed to supply air at a reference speed or the current impact distance is obtained.
[0161] The impact distance is the distance from the air conditioner outlet to the impact location. This distance is measured by a laser rangefinder installed at the air conditioner outlet, uploaded, and stored for later use by a computer program. By comparing and analyzing the trigger information corresponding to the active state with the trigger information corresponding to the idle state, it is determined whether the active state is consistent with the idle state. This in turn determines whether adjacent air conditioners can assist in maintaining stable ball movement for further analysis and processing.
[0162] If the usage state is inconsistent with the idle state, it indicates that the adjacent air conditioner is working and cannot assist in maintaining the stable movement of the ball. Therefore, the air conditioner is controlled to supply air at a reference speed, thereby reducing the interference of the air conditioner on the stable movement of the ball.
[0163] If the usage status is consistent with the idle status, it means that the adjacent air conditioner is in the idle status. The adjacent air conditioner can be used to assist in maintaining the stable movement of the ball, thereby detecting the impact distance and providing data support for the subsequent stable movement of the ball.
[0164] Step S504: determining the current interference force value according to the impact distance and the wind speed, and determining the stable wind direction according to the wind direction.
[0165] The interference force is the pressure exerted on the ball by the air conditioner's wind when it reaches the impact location. A database of these forces, generated by technicians in this field and based on numerous experiments with different impact distances and wind speeds, stores the impact distances and wind speeds associated with the interference force. The database also contains multiple impact distances and wind speeds corresponding to the interference force values. The output interference force value is matched based on the input impact distances and wind speeds. The stable wind direction is the direction opposite to the wind direction. This is determined by a computer program, uploaded, and stored for future use. The interference force value is determined by the impact distance and wind speed, and the stable wind direction is determined based on the wind direction, thereby providing data support for the subsequent stable movement of the ball.
[0166] Step S505: determining the current reflection position and reflection wind direction according to the stable wind direction and the impact position.
[0167] The reflection position is the position where the reflected wind direction is caused by the blowing of the adjacent air conditioner. The reflected wind direction is the wind direction that is the same as the stable wind direction reflected by the blowing of the adjacent air conditioner to the reflection position. Technical personnel in this field conduct a large number of experiments based on different stable wind directions and influencing positions to summarize the rules and generate a database. The database stores stable wind directions and influencing positions related to the reflection position and the reflected wind direction, and has multiple stable wind directions and influencing positions corresponding to the reflection position and the reflected wind direction. According to the input stable wind direction and influencing position, the output reflection position and reflected wind direction are matched, thereby providing data support for the subsequent stable movement of the ball.
[0168] Step S506: Determine the current direct wind direction according to the reflection position and the reflection wind direction, and obtain the current direct distance and reflection distance.
[0169] The direct wind direction is the wind direction caused by the adjacent air conditioner blowing to the reflection position, and the technical personnel in this field have conducted a large number of experiments based on different reflection positions and reflection wind directions to summarize the rules and generate a database. The database stores the reflection positions and reflection wind directions related to the direct wind direction, and has multiple reflection positions and reflection wind directions corresponding to the direct wind direction. According to the input reflection position and reflection wind direction, the output direct wind direction is matched. The direct distance is the distance from the adjacent air conditioner outlet to the reflection position, which is detected, uploaded, and stored by the laser rangefinder installed at the adjacent air conditioner outlet for computer program call. The reflection distance is the distance from the reflection position to the impact position. After the laser rangefinder at the air conditioner outlet measures the distance from the outlet to the reflection position, the computer program calls the impact distance to obtain the difference, upload, and store it for call. The direct wind direction is determined by the reflection position and the reflection wind direction, and the direct distance and the reflection distance are detected, thereby providing data support for the subsequent stable movement of the ball.
[0170] Step S507: determining the current auxiliary wind speed according to the direct distance, the reflected distance and the interference force value.
[0171] The auxiliary wind speed is the speed at which the wind blown by the adjacent air conditioner is reflected and offset by the interference force value. Technical personnel in this field conduct a large number of experiments based on different direct distances, reflection distances and interference force values to summarize the rules and generate a database. The database stores the direct distances, reflection distances and interference force values related to the auxiliary wind speed, and has multiple direct distances, reflection distances and interference force values corresponding to the auxiliary wind speed. According to the input direct distance, reflection distance and interference force value, the output auxiliary wind speed is matched, thereby providing data support for the subsequent stable movement of the ball.
[0172] Step S508: Instructing the adjacent air conditioner to blow air according to the reflection position, direct wind direction and auxiliary wind speed.
[0173] The adjacent air conditioners are controlled to blow air according to the reflection position, direct wind direction and auxiliary wind speed, so that the adjacent air conditioners blow air to the reflection position with direct wind direction and auxiliary wind speed, thereby causing a reflected wind direction, so that the reflected wind moves the reflection distance in the reflected wind direction and exerts force on the ball, thereby offsetting the interference force value and maintaining the stable movement of the ball.
[0174] Reference Figure 6 , a method for obtaining a person's perceived temperature, comprising the following steps:
[0175] Step S600: Acquire the current indoor environmental conditions of the sports venue, the status of the players, and the elapsed exercise time.
[0176] Indoor environmental conditions include air pressure, relative humidity, and wind speed, which are measured by a barometer, standard humidity meter, and anemometer, uploaded, and stored for computer program access. Personnel status, including height and weight, is input by the person, uploaded, and stored for computer program access. Elapsed exercise time, the time from the start of exercise to temperature adjustment, is measured by a clock, uploaded, and stored for computer program access. By monitoring indoor environmental conditions, person status, and elapsed exercise time, data support is provided for subsequent acquisition of the person's perceived temperature.
[0177] Step S601: Determine the current basic body temperature according to the person's status, indoor temperature and indoor environmental conditions.
[0178] The base perceived temperature is the temperature a person feels when they are stationary indoors. A computer program uses the person's status, indoor temperature, and indoor environmental conditions to calculate the base perceived temperature using the perceived temperature calculation formula, upload it, and store it for later use. This information is used to determine the base perceived temperature, providing data support for subsequent acquisition of the person's perceived temperature.
[0179] Step S602: Determine the current self-corrected temperature based on the person's status and exercise time.
[0180] The self-corrected temperature is the heat generated by a person when exercising. Technical personnel in this field have conducted a large number of experiments based on different personal states and exercise times to summarize the rules and generate a database. The database stores personal states and exercise times related to the self-corrected temperature, and has multiple personal states and exercise times corresponding to the self-corrected temperature. According to the input personal state and exercise time, the self-corrected temperature is matched and output, thereby providing data support for the subsequent acquisition of the person's perceived temperature.
[0181] Step S603: Correct the basic body temperature according to the self-corrected temperature to determine the body temperature.
[0182] The perceived temperature is the temperature felt by people in the venue. Technical personnel in this field have conducted a large number of experiments based on different self-corrected temperatures and basic perceived temperatures to summarize the rules and generate a database. The database stores self-corrected temperatures and basic perceived temperatures related to the perceived temperature, and has multiple self-corrected temperatures and basic perceived temperatures corresponding to the perceived temperatures. The output perceived temperature is matched according to the input self-corrected temperature and basic perceived temperature.
[0183] Reference Figure 7 , a method for correcting the perceived temperature includes the following steps:
[0184] Step S700: Acquire the current location of the personnel and the venue area.
[0185] The person's location is the specific location of the person on the sports field. This data is captured and uploaded by a camera, and then identified, uploaded, and stored by a computer program for future use. The venue area is the specific area within the sports field where the person is located. This data is detected, uploaded, and stored by a computer program for future use. By detecting the person's location and venue area, data support is provided for subsequent corrections to perceived temperature.
[0186] Step S701: determining a current reference correction area according to the site area, and obtaining the conduction coefficient of the reference correction area.
[0187] The benchmark correction area is the area corresponding to the venue area where the perceived temperature needs to be corrected. The specific location of the benchmark correction area is set by those skilled in the art according to actual conditions and will not be elaborated here. The computer program calls the venue area to match, upload, and store it for future use. The conduction coefficient is the heat exchanged per unit area between indoors and outdoors per unit time within the benchmark correction area. Different benchmark correction areas have different conduction coefficients, such as the window area, the door area, and the middle area. The computer program calls the benchmark correction area to match, upload, and store it for future use. The benchmark correction area is determined by the venue area, and the conduction coefficient is detected, thereby providing data support for the subsequent correction of the perceived temperature.
[0188] Step S702: Compare the personnel position with the reference correction area to continue to obtain the personnel position or obtain the current personnel distance.
[0189] The person distance is the distance between a person and a door, window, or wall. This distance is detected by a laser rangefinder, uploaded, and stored for later use by the computer program. By comparing the person's location with the range corresponding to the reference correction area, it is determined whether the person's location falls within the reference correction area. This determines whether the outdoor temperature has affected the person's perceived temperature for further analysis and processing.
[0190] If the person's position does not fall within the reference correction area, it indicates that the outdoor temperature will not affect the person's perceived temperature. Therefore, the person's position is continuously detected to continuously monitor changes in the person's position.
[0191] If the person's position falls within the benchmark correction area, it means that the outdoor temperature will affect the person's perceived temperature. Therefore, the person's distance is detected to provide data support for the subsequent correction of the perceived temperature.
[0192] Step S703: Based on the personnel distance, the current environment correction temperature is determined according to the personnel distance, the outdoor temperature and the conductivity coefficient.
[0193] The environmental correction temperature is the temperature of the impact of outdoor temperature on the perceived temperature of people. Technical personnel in this field have conducted a large number of experiments based on different personnel distances, outdoor temperatures and conduction coefficients to summarize the rules and generate a database. The database stores the personnel distances, outdoor temperatures and conduction coefficients related to the environmental correction temperature, and has multiple personnel distances, outdoor temperatures and conduction coefficients corresponding to the environmental correction temperatures. According to the input personnel distance, outdoor temperature and conduction coefficient, the output environmental correction temperature is matched, thereby providing data support for the subsequent correction of the perceived temperature.
[0194] Step S704: Correct the sensible temperature according to the ambient correction temperature to determine the current corrected sensible temperature.
[0195] The corrected perceived temperature is the temperature obtained by integrating the effect of outdoor temperature on a person's perceived temperature. Persons skilled in the art have conducted extensive experiments based on different ambient corrected temperatures and perceived temperatures, summarizing patterns and generating a database. The database stores ambient corrected temperatures and perceived temperatures associated with the corrected perceived temperature. The database also contains multiple ambient corrected temperatures and perceived temperatures corresponding to the corrected perceived temperatures. Based on the input ambient corrected temperatures and perceived temperatures, the corrected perceived temperature is matched and output, resulting in a more accurate perceived temperature. The corrected perceived temperature in this step is the same as the perceived temperature in step S100.
[0196] Based on the same inventive concept, an embodiment of the present invention provides a venue temperature control system, including:
[0197] The acquisition module is used to obtain the body temperature, sports venue, indoor temperature, outdoor temperature, sports status, wind direction, wind speed, movement trajectory, usage status, impact distance, direct distance, reflection distance, indoor environmental conditions, personnel status, elapsed time of exercise, personnel location, venue area, conduction coefficient, and personnel distance;
[0198] Memory, used to store Figure 1-7 A procedure for a venue temperature control method as set out in any one of the following;
[0199] Processor, the program in the memory can be loaded and executed by the processor and realize the following Figure 1-7 A venue temperature control method according to any one of the above.
[0200] Those skilled in the art will clearly understand that for the sake of convenience and brevity, the division of the above-mentioned functional modules is only used as an example for illustration. In actual applications, the above-mentioned functions can be assigned to different functional modules as needed, that is, the internal structure of the device can be divided into different functional modules to complete all or part of the functions described above. The specific working processes of the above-mentioned systems, devices, and units can refer to the corresponding processes in the aforementioned method embodiments and will not be repeated here.
[0201] An embodiment of the present invention provides a computer-readable storage medium storing a computer program capable of being loaded and executed by a processor for a venue temperature control method.
[0202] Computer storage media include, for example, various media that can store program codes, such as USB flash drives, mobile hard disks, read-only memories (ROMs), random access memories (RAMs), magnetic disks, or optical disks.
[0203] Based on the same inventive concept, an embodiment of the present invention provides an intelligent terminal, including a memory and a processor, wherein the memory stores a computer program that can be loaded by the processor and execute a venue temperature control method.
[0204] Those skilled in the art will clearly understand that for the sake of convenience and brevity, the division of the above-mentioned functional modules is only used as an example for illustration. In actual applications, the above-mentioned functions can be assigned to different functional modules as needed, that is, the internal structure of the device can be divided into different functional modules to complete all or part of the functions described above. The specific working processes of the above-mentioned systems, devices, and units can refer to the corresponding processes in the aforementioned method embodiments and will not be repeated here.
[0205] The above are all preferred embodiments of the present application and are not intended to limit the scope of protection of this application. Unless otherwise specified, any feature disclosed in this specification (including the abstract and drawings) may be replaced by other equivalent or similar features. In other words, unless otherwise specified, each feature is merely an example of a series of equivalent or similar features.
Claims
1. A venue temperature control method, characterized in that: include: Obtain the current body temperature of the athlete, the current indoor temperature of the sports venue, and the current outdoor temperature; Comparing the current perceived temperature with the preset comfortable temperature range to continue obtaining the current perceived temperature or calculating the difference between the current perceived temperature and the corresponding endpoint value of the comfortable temperature range, and defining the calculated difference as the deviation temperature; Based on the deviation temperature, the deviation temperature is compared with the preset adjustment temperature to continue to obtain the current body temperature or determine the current actual deviation temperature based on the deviation temperature; Based on the current actual deviation temperature, the difference between the current indoor temperature and the current outdoor temperature is calculated, and the calculated difference is defined as the conduction temperature; Determine the current temperature adjustment mode based on the conduction temperature and the actual deviation temperature; Instruct the preset air conditioner to adjust the temperature of the sports venue according to the temperature adjustment method, and obtain the current exercise status of the athletes; Comparing the current exercise state with a preset reference exercise state to instruct the air conditioner to continue to adjust the temperature of the sports venue or to instruct the air conditioner to adjust at the current indoor temperature; Methods for determining temperature regulation include: Determine whether the current temperature is increased or decreased according to the actual deviation temperature; Based on the current temperature increase, determining the current indoor temperature increase or the current indoor temperature decrease according to the conduction temperature; Based on the current indoor temperature increase, instruct the air conditioner to adjust the temperature in a preset ventilation mode; Based on the current indoor temperature drop, the air conditioner is instructed to adjust the temperature in a preset temperature control mode; Based on the current temperature decrease, determining the current indoor temperature increase or the current indoor temperature decrease according to the conduction temperature; Based on the current increase in indoor temperature, the air conditioner is instructed to adjust the temperature in a preset temperature control mode; Based on the current decrease in indoor temperature, the air conditioner is instructed to adjust the temperature in a preset ventilation mode.
2. A venue temperature control method according to claim 1, characterized in that: Methods for instructing the air conditioner to regulate the temperature of the sports venue include: Determine the current indoor temperature according to the actual deviation temperature and the current indoor temperature; Determine the current ventilation mode or the current temperature control mode according to the temperature adjustment mode; Based on the current ventilation mode, calculating the difference between the current regulated indoor temperature and the current outdoor temperature, and defining the calculated difference as the equilibrium temperature; Determine the current ventilation time according to the equilibrium temperature, the preset ventilation power and the preset motion range, and determine the equilibrium ventilation power according to the current adjustment of the indoor temperature, the current outdoor temperature and the motion range; The air conditioner is instructed to ventilate according to the balanced ventilation power and the current ventilation time, and after the current ventilation time, the air conditioner is instructed to ventilate according to the balanced ventilation power to maintain the current regulated indoor temperature.
3. A venue temperature control method according to claim 1, characterized in that: The method of instructing the air conditioner to adjust the temperature of the sports venue also includes: Based on the current temperature control mode, the current basic air conditioning temperature is determined according to the current adjusted indoor temperature and the current indoor temperature. The current adjusted indoor temperature is the temperature after the current indoor temperature needs to be raised or lowered. The current adjusted indoor temperature is determined by the actual deviation temperature and the current indoor temperature. Determine the current air conditioning correction temperature according to the current outdoor temperature, the current indoor temperature and the preset heat transfer coefficient; Determine the current actual air-conditioning temperature based on the current air-conditioning correction temperature and the basic air-conditioning temperature; Determine the current temperature control time based on the current actual air-conditioning temperature, the current indoor temperature, the preset motion range, and the preset air supply power; The air conditioner is instructed to control the temperature according to the current temperature control time, air supply power and the current actual air conditioner temperature. After the temperature control time, the air conditioner is instructed to control the temperature according to the current adjusted indoor temperature to maintain the current adjusted indoor temperature.
4. A venue temperature control method according to claim 1, characterized in that: The method of instructing the air conditioner to adjust the temperature of the sports venue also includes: Get the current wind direction and speed of the air conditioner, the current movement trajectory of the preset ball, and the current usage status of the preset adjacent air conditioners; Compare the current wind direction with the current movement trajectory to continue to obtain the current wind direction and the current movement trajectory or determine the current impact location; Based on the current impact position, the current wind speed is compared with a preset reference speed to continue to obtain the current wind speed or the current use state is compared with a preset idle state; Based on the comparison between the current usage state and the idle state, the air conditioner is instructed to supply air at a reference speed or the current impact distance is obtained; Determine the current interference force value based on the current impact distance and the current wind speed, and determine the stable wind direction based on the current wind direction; Determine the current reflection position and the current reflection wind direction according to the stable wind direction and the current impact position; Determine the current direct wind direction based on the current reflection position and the current reflection wind direction, and obtain the current direct distance and the current reflection distance; Determine the current auxiliary wind speed according to the current direct distance, the current reflected distance and the current interference force value; Instructs the adjacent air conditioner to blow air based on the current reflection position, current direct wind direction and current auxiliary wind speed.
5. A venue temperature control method according to claim 1, characterized in that: Methods for obtaining a person's current perceived temperature include: Obtain the current indoor environmental conditions of the sports venue, personnel status, and elapsed exercise time; Determine the current basic body temperature based on the user's status, current indoor temperature and current indoor environmental conditions; Determine the current self-corrected temperature based on the person's status and exercise time; The basic body temperature is corrected according to the current self-corrected temperature to determine the current body temperature.
6. A venue temperature control method according to claim 1, characterized in that: Methods for correcting the current perceived temperature include: Get the current person position and current venue area of the person; Determine the current benchmark correction area according to the current site area, and obtain the conduction coefficient of the current benchmark correction area; Compare the current personnel position with the reference correction area to continue to obtain the current personnel position or obtain the current personnel distance; Based on the current personnel distance, the current ambient corrected temperature is determined according to the current personnel distance, the current outdoor temperature and the conductivity coefficient; The current perceived temperature is corrected according to the current ambient correction temperature to determine the current corrected perceived temperature.
7. A venue temperature control system, characterized in that: include: The acquisition module is used to obtain the body temperature, sports venue, indoor temperature, outdoor temperature, sports status, wind direction, wind speed, movement trajectory, usage status, impact distance, direct distance, reflection distance, indoor environmental conditions, personnel status, elapsed time of exercise, personnel location, venue area, conduction coefficient, and personnel distance; A memory for storing a program of a venue temperature control method according to any one of claims 1 to 6; The program in the processor memory can be loaded and executed by the processor to implement a venue temperature control method as described in any one of claims 1 to 6.
8. An intelligent terminal, characterized in that: The method comprises a memory and a processor, wherein the memory stores a computer program that can be loaded by the processor and execute the venue temperature control method according to any one of claims 1 to 6.
9. A computer-readable storage medium, characterized in that The computer program is stored which can be loaded by a processor and executes the venue temperature control method according to any one of claims 1 to 6.
Citation Information
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