An ambient temperature monitoring method, system, terminal device and storage medium

By acquiring the location area type and temperature value, adaptive temperature regulation parameters are generated, and the operation of the air conditioning is dynamically adjusted. This solves the problems of excessive power consumption and inaccurate temperature regulation in public place air conditioning systems, achieving energy conservation, emission reduction, and improved environmental comfort.

CN116085955BActive Publication Date: 2026-05-19SHENZHEN TOPRIE ELECTRONICS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SHENZHEN TOPRIE ELECTRONICS CO LTD
Filing Date
2023-01-10
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Public place air conditioning systems consume too much electricity when operating at constant power output for extended periods, and they cannot effectively regulate ambient temperature to adapt to changes in pedestrian traffic and equipment temperature.

Method used

By acquiring the location area type and temperature value, adaptive temperature regulation parameters are generated, and the air conditioning operation is dynamically adjusted to reduce power consumption. Precise adjustments are made based on the flow of people and differences in equipment temperature.

Benefits of technology

It reduces the power consumption of air conditioning systems in public places, improves the accuracy and comfort of ambient temperature regulation, and reduces abnormal temperature rise of equipment.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application relates to the technical field of temperature monitoring, in particular to an environment temperature monitoring method and system, a terminal device and a storage medium. The method comprises the following steps: if the area type is a public area, a first temperature value corresponding to the public area is obtained; if the first temperature value is in a temperature reference value interval corresponding to the public area, a public area temperature adjustment parameter is generated by combining a current unit passenger flow and the first temperature value; if the area type is a device area, a second temperature value corresponding to the device area is obtained; if the second temperature value exceeds a temperature control threshold interval corresponding to the device area, a device area temperature adjustment parameter is generated according to a temperature difference between the second temperature value and the temperature control threshold interval; and the air conditioner in a target place is driven according to the public area temperature adjustment parameter or the device area temperature adjustment parameter. The environment temperature monitoring method and system, the terminal device and the storage medium provided by the application can reduce the consumption of corresponding electric energy in public places.
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Description

Technical Field

[0001] This application relates to the field of temperature monitoring technology, and in particular to an environmental temperature monitoring method, system, terminal device and storage medium. Background Technology

[0002] For large public buildings such as subways, shopping malls, and supermarkets, where passenger flow is relatively concentrated and the density of various lighting appliances is high, resulting in a large heat load, most places are equipped with central air conditioning to regulate temperature and humidity in order to ensure human comfort and sufficient fresh air volume.

[0003] Under normal circumstances, public places such as subways, shopping malls, and supermarkets do not have holidays, and the air conditioners operate for a long time every day. The air conditioners cool or heat at a constant power output, resulting in excessive electricity consumption. Summary of the Invention

[0004] In order to reduce the corresponding power consumption in public places, this application provides an environmental temperature monitoring method, system, terminal equipment and storage medium.

[0005] In a first aspect, this application provides an environmental temperature monitoring method, comprising the following steps:

[0006] Obtain the target location;

[0007] Based on the target location, obtain the corresponding area type;

[0008] If the area type is a public area, then obtain the first temperature value corresponding to the public area;

[0009] Determine whether the first temperature value is within the temperature reference range corresponding to the public area;

[0010] If the first temperature value is within the temperature reference value range corresponding to the public area, then the unit flow of people in the public area is obtained;

[0011] Based on the first temperature value and the unit flow of people, corresponding public area temperature adjustment parameters are generated;

[0012] If the region type is a device region, then obtain the second temperature value corresponding to the device region;

[0013] Determine whether the second temperature value exceeds the temperature control threshold range corresponding to the equipment area;

[0014] If the second temperature value exceeds the temperature control threshold range corresponding to the equipment area, then the temperature difference between the second temperature value and the temperature control threshold range is obtained, and the corresponding equipment area temperature adjustment parameters are generated based on the temperature difference.

[0015] The air conditioning in the target location is driven to operate according to the temperature control parameters of the public area or the temperature control parameters of the equipment area.

[0016] By adopting the above technical solution, if the area type is a public area, it is first determined whether the first temperature value corresponding to the public area is within the normal temperature reference range for public areas. If it is, it indicates that the ambient temperature in the public area is normal. In order to reduce the power consumption of air conditioning in the area, the unit flow of people in the public area is further obtained and combined to generate the public area temperature adjustment parameters for dynamic adjustment of air conditioning temperature in the area. If the area type is an equipment area, in order to reduce the abnormal temperature rise of equipment in the equipment area, it is first determined whether the second temperature value corresponding to the equipment area exceeds the pre-calibrated temperature control threshold range of the equipment area. If the second temperature value exceeds the temperature control threshold range corresponding to the equipment area, it indicates that the temperature of the equipment in the equipment area is abnormal. The temperature adjustment parameters of the corresponding equipment area are further obtained and generated based on the temperature difference between the second temperature value and the temperature control threshold range. Since the adaptive temperature adjustment parameters that drive the operation of air conditioning are generated by combining the actual ambient temperature of the public area and the equipment area, the power consumption of the corresponding public place is reduced.

[0017] Optionally, before determining whether the first temperature value is within the temperature reference range corresponding to the common area, the following steps are further included:

[0018] Obtain the outdoor temperature value;

[0019] By combining the outdoor temperature value and the temperature setting standard corresponding to the public area, the temperature reference value range corresponding to the public area is generated.

[0020] By adopting the above technical solution, and combining the outdoor temperature value with the corresponding temperature setting standard for public areas to generate a corresponding temperature reference range, a more suitable environmental temperature standard for public areas can be obtained, thereby improving the environmental suitability of public areas.

[0021] Optionally, after determining whether the first temperature value is within the temperature reference range corresponding to the common area, the method further includes the following steps:

[0022] If the first temperature value exceeds the temperature reference value range corresponding to the public area, then the temperature change rate of the public area per unit time is obtained.

[0023] Identify the temperature change rate and generate a corresponding temperature compensation value;

[0024] Based on the temperature compensation value, the corresponding temperature adjustment parameters for the public area are generated.

[0025] By adopting the above technical solution and combining the temperature change rate of the public area per unit time, a corresponding temperature compensation value is generated, thereby changing the phenomenon of constant power output for cooling or heating and reducing the consumption of electricity.

[0026] Optionally, after obtaining the rate of temperature change per unit time for the public area if the first temperature value exceeds the temperature reference value range corresponding to the public area, the method further includes the following steps:

[0027] Determine whether the temperature change rate exceeds a preset temperature change rate threshold;

[0028] If the temperature change rate exceeds the preset temperature change rate threshold, then obtain the thermal imaging information of the current public area;

[0029] By combining the temperature change rate and the thermal imaging information, a warning signal corresponding to the public area is generated.

[0030] By adopting the above technical solution, if the temperature change rate exceeds the preset temperature change rate threshold corresponding to the public area, it indicates that the temperature of the public area is abnormal. Further acquisition and combination of thermal imaging information and temperature change rate in the current public area will generate a corresponding early warning signal, thereby improving the analysis effect of abnormal temperature in the public area.

[0031] Optionally, after obtaining the corresponding area type based on the target location, the following steps are further included:

[0032] Obtain the temperature and humidity values ​​corresponding to the area type;

[0033] Determine whether the temperature and humidity values ​​of the area meet the outdoor environmental parameter standards;

[0034] If the temperature and humidity values ​​of the area do not meet the outdoor environmental parameter standards, then the temperature and humidity adjustment parameters corresponding to the area type are generated according to the outdoor environmental parameter standards.

[0035] The temperature and humidity values ​​of the area are adjusted according to the temperature and humidity adjustment parameters.

[0036] By adopting the above technical solution, temperature and humidity adjustment parameters corresponding to the area type are generated according to outdoor environmental parameter standards, thereby ensuring that the internal and external environments of the target location are in a more harmonious state and improving the environmental comfort of the target location.

[0037] Optionally, after generating temperature and humidity adjustment parameters corresponding to the area type based on the outdoor environmental parameter standards if the temperature and humidity values ​​of the area do not meet the outdoor environmental parameter standards, the following steps are included:

[0038] If the area type has specified temperature and humidity standards, then determine whether the temperature and humidity adjustment parameters meet the specified temperature and humidity standards;

[0039] If the temperature and humidity adjustment parameters do not conform to the specified temperature and humidity standards, then a corresponding temperature and humidity correction instruction is generated to correct the temperature and humidity adjustment parameters according to the specified temperature and humidity standards.

[0040] By adopting the above technical solution, according to the specified temperature and humidity standards corresponding to the area type, corresponding temperature and humidity correction instructions are generated to correct the temperature and humidity adjustment parameters, thereby improving the environmental adaptability of each area type in the target site.

[0041] Optionally, after driving the air conditioning in the target location to operate according to the public area temperature control parameters or the equipment area temperature control parameters, the following steps are further included:

[0042] Obtain the temperature regulation cycle corresponding to the temperature regulation parameters of the public area and the temperature regulation parameters of the equipment area;

[0043] Based on the temperature regulation cycle, train the temperature cycle regulation model corresponding to the target location;

[0044] The temperature cycle regulation model is analyzed to generate corresponding temperature cycle regulation commands to drive the air conditioning operation in the target location.

[0045] By adopting the above technical solution, the temperature cycle regulation model corresponding to the target location is trained according to the temperature regulation cycle, thereby improving the learning ability of the target location's environmental temperature regulation. This not only ensures the comfort of the environment within the target location, but also achieves the goal of energy conservation and emission reduction through the control of actual environmental temperature regulation data.

[0046] Secondly, this application provides an environmental temperature monitoring system, comprising:

[0047] The first acquisition module is used to acquire the target location;

[0048] The second acquisition module is used to acquire the corresponding area type based on the target location;

[0049] The third acquisition module, if the area type is a public area, is used to acquire the first temperature value corresponding to the public area;

[0050] The first judgment module is used to determine whether the first temperature value is within the temperature reference value range corresponding to the public area;

[0051] The fourth acquisition module, if the first temperature value is within the temperature reference value range corresponding to the public area, is used to acquire the unit flow of people within the public area;

[0052] The module is used to combine the first temperature value and the unit flow of people to generate corresponding public area temperature adjustment parameters.

[0053] The fifth acquisition module, if the area type is a device area, is used to acquire the second temperature value corresponding to the device area;

[0054] The second judgment module is used to determine whether the second temperature value exceeds the temperature control threshold range corresponding to the equipment area;

[0055] If the second temperature value exceeds the temperature control threshold range corresponding to the equipment area, the generation module is used to obtain the temperature difference between the second temperature value and the temperature control threshold range, and generate the corresponding equipment area temperature adjustment parameters based on the temperature difference.

[0056] The drive module is used to drive the air conditioner in the target location to operate according to the temperature adjustment parameters of the public area or the temperature adjustment parameters of the equipment area.

[0057] By adopting the above technical solution, if the area type is a public area, the first judgment module first determines whether the first temperature value corresponding to the public area obtained by the third acquisition module is within the normal temperature reference range for public areas. If it is, it indicates that the ambient temperature in the public area is normal. In order to reduce the power consumption of air conditioning in the area, the fourth acquisition module further obtains and combines the unit flow of people in the public area to generate the public area temperature adjustment parameters for dynamic adjustment of air conditioning temperature in the area. If the area type is an equipment area, in order to reduce the abnormal heating phenomenon of equipment in the equipment area, the second judgment module first determines whether the second temperature value corresponding to the equipment area exceeds the pre-calibrated temperature control threshold range of the equipment area. If the second temperature value exceeds the temperature control threshold range corresponding to the equipment area, it indicates that the equipment temperature in the equipment area is abnormal. The generation module further obtains and generates the corresponding equipment area temperature adjustment parameters based on the temperature difference between the second temperature value and the temperature control threshold range. Since the adaptive temperature adjustment parameters that drive the operation of air conditioning are generated by combining the actual ambient temperature of the public area and the equipment area, the power consumption of the corresponding public place is reduced.

[0058] Thirdly, this application provides a terminal device, which adopts the following technical solution:

[0059] A terminal device includes a memory and a processor. The memory stores computer instructions that can be executed on the processor. When the processor loads and executes the computer instructions, it employs the aforementioned method for monitoring ambient temperature.

[0060] By adopting the above technical solution, the above-mentioned environmental temperature monitoring method generates computer instructions, which are stored in the memory and then loaded and executed by the processor. Thus, a terminal device can be made based on the memory and the processor, making it convenient to use.

[0061] Fourthly, this application provides a computer-readable storage medium, which adopts the following technical solution:

[0062] A computer-readable storage medium storing computer instructions, wherein when the computer instructions are loaded and executed by a processor, the aforementioned environmental temperature monitoring method is employed.

[0063] By adopting the above technical solution, the above-mentioned environmental temperature monitoring method generates computer instructions and stores them in a computer-readable storage medium for loading and execution by the processor. The computer-readable storage medium facilitates the reading and storage of computer instructions.

[0064] In summary, this application includes at least one of the following beneficial technical effects: If the area type is a public area, it is first determined whether the first temperature value corresponding to the public area is within the normal temperature reference range for public areas. If it is, it indicates that the ambient temperature in the public area is normal. In order to reduce the energy consumption of air conditioning in the area, the unit flow of people in the public area is further obtained and combined to generate public area temperature regulation parameters for dynamic adjustment of air conditioning temperature in the area. If the area type is an equipment area, in order to reduce the abnormal heating phenomenon of equipment in the equipment area, it is first determined whether the second temperature value corresponding to the equipment area exceeds the pre-calibrated temperature control threshold range of the equipment area. If the second temperature value exceeds the temperature control threshold range corresponding to the equipment area, it indicates that the temperature of the equipment in the equipment area is abnormal. The temperature regulation parameters of the corresponding equipment area are further obtained and generated according to the temperature difference between the second temperature value and the temperature control threshold range. Since the adaptive temperature regulation parameters that drive the operation of air conditioning are generated by combining the actual ambient temperature of the public area and the equipment area, the energy consumption of the corresponding public place is reduced. Attached Figure Description

[0065] Figure 1 This is a flowchart illustrating steps S101 to S110 of an environmental temperature monitoring method according to this application.

[0066] Figure 2This is a flowchart illustrating steps S201 to S202 in an environmental temperature monitoring method according to this application.

[0067] Figure 3 This is a flowchart illustrating steps S301 to S303 of an environmental temperature monitoring method according to this application.

[0068] Figure 4 This is a flowchart illustrating steps S401 to S403 of an environmental temperature monitoring method according to this application.

[0069] Figure 5 This is a flowchart illustrating steps S501 to S504 of an environmental temperature monitoring method according to this application.

[0070] Figure 6 This is a flowchart illustrating steps S601 to S602 of an environmental temperature monitoring method according to this application.

[0071] Figure 7 This is a flowchart illustrating steps S701 to S703 of an environmental temperature monitoring method according to this application.

[0072] Figure 8 This is a schematic diagram of an environmental temperature monitoring system according to this application.

[0073] Explanation of reference numerals in the attached figures:

[0074] 1. First acquisition module; 2. Second acquisition module; 3. Third acquisition module; 4. First judgment module; 5. Fourth acquisition module; 6. Combination module; 7. Fifth acquisition module; 8. Second judgment module; 9. Generation module; 10. Driver module. Detailed Implementation

[0075] The following is in conjunction with the appendix Figure 1-8 This application will be described in further detail.

[0076] This application discloses an environmental temperature monitoring method, such as... Figure 1 As shown, it includes the following steps:

[0077] S101. Obtain the target location;

[0078] S102. Obtain the corresponding area type based on the target location;

[0079] S103. If the area type is a public area, then obtain the first temperature value corresponding to the public area;

[0080] S104. Determine whether the first temperature value is within the temperature reference range corresponding to the public area;

[0081] S105. If the first temperature value is within the temperature reference range corresponding to the public area, then obtain the corresponding unit flow of people in the public area;

[0082] S106. Combine the first temperature value and the unit flow of people to generate the corresponding public area temperature adjustment parameters;

[0083] S107. If the area type is equipment area, then obtain the second temperature value corresponding to the equipment area;

[0084] S108. Determine whether the second temperature value exceeds the temperature control threshold range corresponding to the equipment area;

[0085] S109. If the second temperature value exceeds the temperature control threshold range corresponding to the equipment area, the temperature difference between the second temperature value and the temperature control threshold range is obtained, and the corresponding equipment area temperature adjustment parameters are generated based on the temperature difference.

[0086] S110. Drive the air conditioning in the target area to operate according to the temperature control parameters of the public area or the temperature control parameters of the equipment area.

[0087] In practical applications, the target location in step S101 refers to large areas of public buildings such as subways, shopping malls, and supermarkets. The area type corresponding to the target location refers to the type corresponding to each area within the target location. For example, the area types corresponding to a subway include waiting areas, passenger passages, and security checkpoints.

[0088] Furthermore, to facilitate the classification of the target location's corresponding area type, it is divided into two main categories: public areas and equipment areas. Public areas are areas that the public can freely enter and exit, while equipment areas are areas where control circuit equipment is placed.

[0089] If the area type is a public area, then the first temperature value corresponding to the public area is obtained. This first temperature value can be obtained through a temperature sensor or temperature measuring device installed in the public area. This first temperature value is the real-time temperature value of the current public area. Then, it is determined whether the first temperature value is within the temperature reference range corresponding to the public area. The temperature reference range is the temperature setting standard corresponding to the public area. For example, the temperature reference range corresponding to the children's activity area in the mall is generally higher than the temperature setting standard of ordinary areas in the mall. For example, the cooling temperature of the children's activity area in summer is often higher than that of ordinary areas.

[0090] Furthermore, if the first temperature value is within the temperature reference range corresponding to the public area, it indicates that the temperature of the public area is at a normal value. In order to further adapt the temperature of the public area to achieve the effect of energy conservation and emission reduction, the unit flow rate of people in the public area is obtained. The unit flow rate of people refers to the flow rate of people in a specific public area per unit time.

[0091] The greater the flow of people in a given area, the higher the temperature in that area will be. This is because the human body is constantly undergoing metabolism, which generates a lot of heat. In order to maintain body temperature balance, the human body will continuously release heat into the atmosphere. If a large number of people gather in a public area, the total heat released by the crowd cannot be carried away by the atmosphere in time, which will cause the air temperature in that area to gradually rise.

[0092] Specifically, the unit flow of people can be captured by cameras set up in public areas to obtain the corresponding flow of people. Combined with the first temperature value of the public area and the unit flow of people, the corresponding public area temperature adjustment parameters are generated. The public area temperature adjustment parameters refer to the operating parameters of the temperature adjustment equipment in the public area.

[0093] For example, if the first temperature value corresponding to the subway waiting area is 28 degrees Celsius, and the temperature reference range for the subway waiting area is 24-28 degrees Celsius, it can be determined that the first temperature value is within the corresponding temperature reference range. Furthermore, if the number of people in the subway waiting area is 10 per minute and there is a clear increasing trend in the number of people, and the corresponding negative temperature rise is +1 to +2 degrees Celsius, then the corresponding public area temperature adjustment parameter is generated as 22-26 degrees Celsius.

[0094] Furthermore, if the first temperature value exceeds the temperature reference range corresponding to the public area, the environmental temperature of the public area will be comprehensively evaluated by combining the first temperature value of the public area with the unit flow of people. Then, the public area temperature adjustment parameters adapted to the public area will be obtained and adjusted so that the first temperature value of the public area is finally within the corresponding temperature reference range.

[0095] Furthermore, if the area type is a device area, then the second temperature value corresponding to that device area is obtained. Similarly, the second temperature value corresponding to the device area can be obtained through a temperature sensor or temperature measuring device in that area. Among them, there may be some high-precision control devices placed in the device area. These high-precision control devices are easily affected by temperature. For example, temperature affects electronic components. Since semiconductor electronic components are very sensitive to temperature, when the temperature rises, the forward characteristic of the diode shifts to the left and the reverse characteristic shifts downward. Generally, near room temperature, for every 1 degree increase in temperature, the forward voltage drop of the diode will decrease by 2 to 2.5mV, while for every 10 degrees increase in temperature, the reverse current doubles. Transistors and operational amplifiers, etc., will have similar problems.

[0096] To reduce the occurrence of the above situation, it is determined in real time whether the second temperature value in the above-mentioned equipment area exceeds the temperature control threshold range corresponding to the equipment area. The temperature control threshold range refers to the temperature control threshold range corresponding to the equipment characteristics in the equipment area. If the second temperature value exceeds the temperature control threshold range corresponding to the equipment area, the temperature difference between the second temperature value and the temperature control threshold range is obtained, and the corresponding equipment area temperature adjustment parameter is generated according to the temperature difference. The ambient temperature adjustment device of the equipment area adjusts the temperature in the equipment area according to the temperature adjustment parameter of the equipment area, so that the final temperature of the area is within the corresponding temperature control threshold range.

[0097] Furthermore, if the second temperature value is within the temperature control threshold range corresponding to the equipment area, the change of the second temperature value corresponding to that equipment area will be tracked and recorded in real time.

[0098] The environmental temperature monitoring method provided in this embodiment, if the area type is a public area, firstly determines whether the first temperature value corresponding to the public area is within the normal temperature reference range for public areas. If it is, it indicates that the environmental temperature in the public area is normal. In order to reduce the power consumption of air conditioning in the area, the method further acquires and combines the unit flow of people in the public area to generate public area temperature adjustment parameters for dynamic adjustment of air conditioning temperature in the area. If the area type is an equipment area, in order to reduce the abnormal temperature rise of equipment in the equipment area, firstly determines whether the second temperature value corresponding to the equipment area exceeds the pre-calibrated temperature control threshold range of the equipment area. If the second temperature value exceeds the temperature control threshold range corresponding to the equipment area, it indicates that the equipment temperature in the equipment area is abnormal. The method further acquires and generates corresponding equipment area temperature adjustment parameters based on the temperature difference between the second temperature value and the temperature control threshold range. By combining the actual environmental temperatures of the public area and the equipment area to generate adaptive temperature adjustment parameters to drive the operation of air conditioning, the power consumption of the corresponding public place is reduced.

[0099] In one embodiment of this example, such as Figure 2As shown, before step S104, which determines whether the first temperature value is within the temperature reference range corresponding to the common area, the following steps are also included:

[0100] S201. Obtain the outdoor temperature value;

[0101] S202. Combine the outdoor temperature value and the temperature setting standard corresponding to the public area to generate the temperature reference value range corresponding to the public area.

[0102] In practical applications, in order to ensure that the internal and external ambient temperatures of the target location are in a more harmonious state and to improve energy conservation and emission reduction, the outdoor temperature value and the corresponding temperature setting standard of the public area are obtained and combined to generate the corresponding temperature reference value range of the public area. The outdoor temperature value can be obtained through weather temperature measurement software or temperature measurement system. The temperature setting standard refers to the appropriate temperature standard for different public areas within the target location.

[0103] For example, if the outdoor temperature is 28 degrees Celsius, and the public area is the mother and baby room in the shopping mall, the temperature in the mother and baby room is generally higher than the room temperature, so the corresponding temperature setting standard is 27 to 29 degrees Celsius. Further combining the outdoor temperature value, the corresponding temperature reference range is generated as 28 to 29 degrees Celsius.

[0104] The environmental temperature monitoring method provided in this embodiment combines outdoor temperature values ​​and the corresponding temperature setting standards for public areas to generate a corresponding temperature reference range, thereby obtaining a more suitable environmental temperature standard for public areas and improving the environmental suitability of public areas.

[0105] In one embodiment of this example, such as Figure 3 As shown, after step S104, which determines whether the first temperature value is within the temperature reference range corresponding to the common area, the following steps are also included:

[0106] S301. If the first temperature value exceeds the temperature reference value range corresponding to the public area, then obtain the temperature change rate of the public area per unit time.

[0107] S302. Identify the rate of temperature change and generate the corresponding temperature compensation value;

[0108] S303. Generate the corresponding public area temperature adjustment parameters based on the temperature compensation value.

[0109] In practical applications, if the first temperature value exceeds the temperature reference range corresponding to the public area, it indicates that the temperature in that area needs to be adjusted. In order to further combine the actual temperature of the area and make corresponding adjustments to improve the energy-saving effect, the temperature change rate of the public area per unit time is obtained. The temperature change rate refers to the rate at which the temperature in the area rises or falls per unit time.

[0110] Furthermore, in order to ensure that the temperature in the public area remains at a healthy and constant level to the greatest extent possible, a corresponding temperature compensation value is generated based on the corresponding temperature change rate. Then, based on the generated temperature compensation value, the corresponding public area temperature regulation parameter is generated.

[0111] For example, if the public area is a subway waiting area, its corresponding temperature reference range is 20 to 23 degrees Celsius. The current first temperature value of the subway waiting area is 24 degrees Celsius, which can be determined to be outside the temperature reference range of the subway waiting area. It is known that the temperature change rate of the subway waiting area is 0.2 degrees Celsius per minute. This temperature change rate is identified, and a corresponding temperature compensation value of -1.2 degrees Celsius is generated. Furthermore, the temperature adjustment parameters of the public area corresponding to the subway waiting area are generated based on this temperature compensation value.

[0112] The environmental temperature monitoring method provided in this embodiment, such as Figure 4 As shown, after obtaining the temperature change rate per unit time for the common area in step S301 (i.e., if the first temperature value exceeds the temperature reference value range corresponding to the common area), the following steps are also included:

[0113] S401. Determine whether the temperature change rate exceeds the preset temperature change rate threshold;

[0114] S402. If the temperature change rate exceeds the preset temperature change rate threshold, then obtain thermal imaging information of the current public area;

[0115] S403. Combine temperature change rate and thermal imaging information to generate early warning signals for public areas.

[0116] In practical applications, in order to further analyze the temperature changes in public areas, it is necessary to determine whether the temperature change rate exceeds the preset temperature change rate threshold. The preset temperature change rate threshold refers to the temperature change rate value corresponding to the public area under normal conditions.

[0117] If the temperature change rate in the public area exceeds the preset temperature change rate threshold, it indicates that the temperature in the public area is abnormal. Further thermal imaging information corresponding to the current public area is obtained. Thermal imaging information refers to a detection information that uses non-contact detection of infrared energy (heat) and converts it into an electrical signal to generate a thermal image and temperature value on the display, and can calculate the temperature value. Thermal imaging information can be obtained through thermal imaging detection equipment set up in the public area.

[0118] Furthermore, the thermal imaging information can reveal the source or concentration of heat in the area. Then, by combining the temperature change rate of the public area with the thermal imaging information, a corresponding early warning signal is generated to prompt relevant personnel to inspect the public area.

[0119] The environmental temperature monitoring method provided in this embodiment indicates that the temperature of the public area is abnormal if the rate of temperature change exceeds the preset temperature change rate threshold corresponding to the public area. It further acquires and combines the thermal imaging information and temperature change rate of the current public area to generate a corresponding early warning signal, thereby improving the analysis effect of abnormal temperature in the public area.

[0120] In one embodiment of this example, such as Figure 5 As shown, after obtaining the corresponding area type based on the target location in step S102, the following steps are also included:

[0121] S501. Obtain the temperature and humidity values ​​corresponding to the area type;

[0122] S502. Determine whether the temperature and humidity values ​​of the area meet the outdoor environmental parameter standards;

[0123] S503. If the temperature and humidity values ​​of the area do not meet the outdoor environmental parameter standards, then generate the temperature and humidity adjustment parameters corresponding to the area type based on the outdoor environmental parameter standards.

[0124] S504. Adjust the temperature and humidity values ​​of the area according to the temperature and humidity control parameters.

[0125] In practical applications, the area type refers to the various types of areas corresponding to the target location. Indoor temperature and humidity sensors are installed in these areas to detect the temperature and humidity in real time. At the same time, the equipment uploads these detection data to the management backend. Operators can adjust the temperature and humidity of the air conditioning system and turn it on and off in a timely manner based on these detection data to ensure the comfort of the environment in each area.

[0126] Furthermore, it is determined whether the temperature and humidity values ​​of the above-mentioned area meet the outdoor environmental parameter standards. The outdoor environmental parameter standards refer to the various environmental parameter standards such as outdoor temperature and humidity. These outdoor environmental parameter standards generally refer to the parameter standards of good outdoor environmental quality. If the temperature and humidity values ​​of the area do not meet the outdoor environmental parameter standards, then the temperature and humidity adjustment parameters corresponding to the area type are generated according to the outdoor environmental parameter standards, and the temperature and humidity values ​​of the area are further adjusted according to these temperature and humidity adjustment parameters.

[0127] For example, temperature and humidity sensors are installed on the walls of the fresh air room and return air room in the subway to monitor the temperature and humidity of the outdoor fresh air and the subway station. The environmental control system can judge the environmental quality inside the subway station based on the temperature and humidity data collected by the temperature and humidity sensors, i.e., the outdoor environmental parameter standards, and drive the environmental adjustment equipment to adjust the environment inside the subway station according to the pre-set environmental adjustment parameters, so that the internal environment of the subway station and the outdoor environment are in a relatively harmonious state.

[0128] The environmental temperature monitoring method provided in this embodiment generates temperature and humidity adjustment parameters corresponding to the area type based on outdoor environmental parameter standards, thereby ensuring that the internal and external environments of the target location are in a more harmonious state and improving the environmental comfort of the target location.

[0129] In one embodiment of this example, such as Figure 6 As shown, after step S503, which states that if the temperature and humidity values ​​of the area do not meet the outdoor environmental parameter standards, the temperature and humidity adjustment parameters corresponding to the area type are generated according to the outdoor environmental parameter standards, the following steps are also included:

[0130] S601. If the area type has specified temperature and humidity standards, determine whether the temperature and humidity adjustment parameters meet the specified temperature and humidity standards;

[0131] S602. If the temperature and humidity adjustment parameters do not conform to the specified temperature and humidity standards, then generate a corresponding temperature and humidity correction command to correct the temperature and humidity adjustment parameters according to the specified temperature and humidity standards.

[0132] In practical applications, in order to adjust the environmental parameters of a region according to its actual situation, if the region type has specified temperature and humidity standards, it is determined whether the temperature and humidity adjustment parameters meet the specified temperature and humidity standards. The specified temperature and humidity standards refer to the specified temperature standards corresponding to the attributes of the region type.

[0133] If the temperature and humidity adjustment parameters do not conform to the specified temperature and humidity standards, it indicates that the temperature and humidity adjustment parameters conflict with the temperature and humidity standards corresponding to the area type. Then, according to the specified temperature and humidity standards, a corresponding temperature and humidity correction instruction is generated to correct the temperature and humidity adjustment parameters.

[0134] For example, the temperature and humidity specified standard for the frozen section of a supermarket is -12 degrees to -18 degrees Celsius, and the temperature and humidity adjustment parameters are 24 degrees and 26 degrees Celsius. Obviously, these temperature and humidity adjustment parameters do not meet the specified standard for the frozen section. Therefore, a correction instruction for the current temperature and humidity adjustment parameters is generated according to the specified standard for the frozen section, and the temperature and humidity adjustment parameters are corrected according to the correction instruction so that the temperature adjustment parameters are between -12 degrees Celsius and -18 degrees Celsius.

[0135] The environmental temperature monitoring method provided in this embodiment generates corresponding temperature and humidity correction instructions to correct the temperature and humidity adjustment parameters according to the specified temperature and humidity standards corresponding to the area type, thereby improving the environmental adaptability of various area types in the target location.

[0136] In one real-time mode of this embodiment, such as Figure 7 As shown, after step S110, which involves driving the air conditioning in the target area to operate according to the public area temperature control parameters or the equipment area temperature control parameters, the following steps are also included:

[0137] S701. Obtain the temperature regulation cycle corresponding to the temperature regulation parameters of the public area and the equipment area;

[0138] S702. Train the temperature cycle regulation model corresponding to the target site according to the temperature regulation cycle;

[0139] S703. Analyze the temperature cycle regulation model and generate corresponding temperature cycle regulation commands to drive the air conditioning operation in the target location.

[0140] In practical applications, to ensure that the temperature of different areas within a target location can be adjusted systematically, the corresponding temperature adjustment cycles for the public area temperature adjustment parameters and the equipment area temperature adjustment parameters are obtained. The temperature adjustment cycle refers to the time period during which the corresponding temperature adjustment parameters for the public area and equipment area within the target location are adjusted. For example, the temperature adjustment parameter for a subway waiting area from 7 PM to 10 PM is 25 to 26 degrees Celsius, and its corresponding temperature adjustment cycle is 25 to 26 degrees Celsius every night from 7 PM to 10 PM.

[0141] Furthermore, based on the temperature regulation cycle obtained above, a temperature cycle regulation model corresponding to the target location is trained. The temperature cycle regulation model stores the temperature regulation parameters of the air conditioner corresponding to the target location at various times of the day. The system continuously trains the temperature cycle regulation model by recording the temperature regulation parameters of the air conditioner at various times of the day, so that the temperature regulation of the air conditioner can continuously achieve better energy saving and emission reduction effects and more suitable ambient temperature. The temperature cycle regulation model is further analyzed to generate corresponding temperature cycle regulation commands to drive the air conditioner in the target location to operate, thereby regulating the temperature in each area.

[0142] The environmental temperature monitoring method provided in this embodiment trains the temperature cycle regulation model corresponding to the target location according to the temperature regulation cycle, thereby improving the learning ability of environmental temperature regulation in the target location. This not only ensures the comfort of the environment in the target location, but also achieves the purpose of energy conservation and emission reduction through the control of actual environmental temperature regulation data.

[0143] This application discloses an environmental temperature monitoring system, such as... Figure 8 As shown, it includes:

[0144] First acquisition module 1 is used to acquire the target location;

[0145] The second acquisition module 2 is used to acquire the corresponding area type based on the target location;

[0146] The third acquisition module 3, if the area type is a public area, is used to acquire the first temperature value corresponding to the public area;

[0147] The first judgment module 4 is used to determine whether the first temperature value is within the temperature reference value range corresponding to the public area;

[0148] If the first temperature value is within the temperature reference range corresponding to the public area, the fourth acquisition module 5 is used to acquire the corresponding unit flow of people in the public area.

[0149] Module 6 is used to combine the first temperature value and the unit flow of people to generate the corresponding public area temperature adjustment parameters;

[0150] The fifth acquisition module 7, if the area type is a device area, is used to acquire the second temperature value corresponding to the device area;

[0151] The second judgment module 8 is used to determine whether the second temperature value exceeds the temperature control threshold range corresponding to the equipment area;

[0152] If the second temperature value exceeds the temperature control threshold range corresponding to the equipment area, the generation module 9 is used to obtain the temperature difference between the second temperature value and the temperature control threshold range, and generate the corresponding equipment area temperature adjustment parameters based on the temperature difference.

[0153] The drive module 10 is used to drive the air conditioner in the target location to operate according to the temperature adjustment parameters of the public area or the temperature adjustment parameters of the equipment area.

[0154] The environmental temperature monitoring system provided in this embodiment, if the area type is a public area, firstly, the first judgment module 4 determines whether the first temperature value corresponding to the public area obtained by the third acquisition module 3 is within the normal temperature reference range for public areas. If it is, it indicates that the environmental temperature in the public area is normal. In order to reduce the power consumption of air conditioning in the area, the fourth acquisition module 5 further obtains and combines the unit flow of people in the public area with the combination module 6 to generate the public area temperature adjustment parameters for dynamic adjustment of air conditioning temperature in the area. If the area type is an equipment area, in order to reduce the abnormal temperature rise of equipment in the equipment area, firstly, the second judgment module 8 determines whether the second temperature value corresponding to the equipment area exceeds the pre-calibrated temperature control threshold range of the equipment area. If the second temperature value exceeds the temperature control threshold range corresponding to the equipment area, it indicates that the equipment temperature in the equipment area is abnormal. The generation module 9 further obtains and generates the corresponding equipment area temperature adjustment parameters based on the temperature difference between the second temperature value and the temperature control threshold range. Since the adaptive temperature adjustment parameters that drive the operation of air conditioning are generated by combining the actual environmental temperatures of the public area and the equipment area, the power consumption of the corresponding public place is reduced.

[0155] It should be noted that the environmental temperature monitoring system provided in this application embodiment also includes each module and / or corresponding sub-module corresponding to the logical function or logical step of any of the above-mentioned environmental temperature monitoring methods, to achieve the same effect as each logical function or logical step, which will not be elaborated here.

[0156] This application also discloses a terminal device, including a memory, a processor, and computer instructions stored in the memory and capable of running on the processor, wherein the processor executes the computer instructions using any of the environmental temperature monitoring methods described in the above embodiments.

[0157] The terminal device can be a computer device such as a desktop computer, a laptop computer, or a cloud server. The terminal device includes, but is not limited to, a processor and a memory. For example, the terminal device may also include input / output devices, network access devices, and buses.

[0158] The processor can be a central processing unit (CPU). Of course, depending on the actual use, it can also be other general-purpose processors, digital signal processors (DSPs), application-specific integrated circuits (ASICs), off-the-shelf programmable gate arrays (FPGAs), or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc. The general-purpose processor can be a microprocessor or any conventional processor, etc., and this application does not limit it.

[0159] The memory can be an internal storage unit of the terminal device, such as a hard disk or RAM of the terminal device, or an external storage device of the terminal device, such as a plug-in hard disk, smart memory card (SMC), secure digital card (SD), or flash memory card (FC) equipped on the terminal device. Furthermore, the memory can be a combination of internal storage units and external storage devices of the terminal device. The memory is used to store computer instructions and other instructions and data required by the terminal device. The memory can also be used to temporarily store data that has been output or will be output. This application does not limit this.

[0160] In this terminal device, any of the environmental temperature monitoring methods in the above embodiments can be stored in the terminal device's memory and loaded and executed on the terminal device's processor for convenient use.

[0161] This application also discloses a computer-readable storage medium, which stores computer instructions, wherein when the computer instructions are executed by a processor, any of the environmental temperature monitoring methods described in the above embodiments are employed.

[0162] The computer instructions can be stored in a computer-readable medium. The computer instructions include computer instruction code, which can be in the form of source code, object code, executable file, or certain middleware. The computer-readable medium includes any entity or device capable of carrying computer instruction code, recording media, USB flash drive, portable hard drive, magnetic disk, optical disk, computer memory, read-only memory (ROM), random access memory (RAM), electrical carrier signals, telecommunication signals, and software distribution media, etc. It should be noted that the computer-readable medium includes, but is not limited to, the above-mentioned components.

[0163] In this embodiment, any of the environmental temperature monitoring methods described above can be stored in the computer-readable storage medium and loaded and executed on the processor to facilitate the storage and application of the above methods.

[0164] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A method for monitoring ambient temperature, characterized in that, Includes the following steps: Obtain the target location; Based on the target location, obtain the corresponding area type; If the area type is a public area, then obtain the first temperature value corresponding to the public area; Determine whether the first temperature value is within the temperature reference range corresponding to the public area; If the first temperature value is within the temperature reference value range corresponding to the public area, then the unit flow rate in the public area is obtained, and the increasing trend of the unit flow rate is identified. The corresponding temperature rise is calculated based on the increasing trend. Combining the first temperature value, the increasing trend, and the temperature rise, a corresponding common area temperature adjustment parameter is generated, which is lower than the temperature reference value range. If the first temperature value exceeds the temperature reference value range corresponding to the public area, then the temperature change rate of the public area per unit time is obtained. Identify the temperature change rate and generate a corresponding temperature compensation value; Based on the temperature compensation value, the corresponding temperature adjustment parameters for the public area are generated; The method includes the following steps after obtaining the temperature change rate of the public area per unit time: Determine whether the temperature change rate exceeds a preset temperature change rate threshold; If the temperature change rate exceeds the preset temperature change rate threshold, then obtain the thermal imaging information of the current public area; Based on the thermal imaging information, the source or concentration of heat in the public area is displayed, and combined with the temperature change rate and the thermal imaging information, an early warning signal corresponding to the public area is generated; if the area type is an equipment area, then the second temperature value corresponding to the equipment area is obtained; Determine whether the second temperature value exceeds the temperature control threshold range corresponding to the equipment area; If the second temperature value exceeds the temperature control threshold range corresponding to the equipment area, the temperature difference between the second temperature value and the temperature control threshold range is obtained, and the corresponding equipment area temperature adjustment parameters are generated based on the temperature difference. The air conditioning in the target location is driven to operate according to the temperature control parameters of the public area or the temperature control parameters of the equipment area.

2. The environmental temperature monitoring method according to claim 1, characterized in that, Before determining whether the first temperature value is within the temperature reference range corresponding to the common area, the following steps are included: Obtain the outdoor temperature value; By combining the outdoor temperature value and the temperature setting standard corresponding to the public area, the temperature reference value range corresponding to the public area is generated.

3. The environmental temperature monitoring method according to claim 1, characterized in that, After obtaining the corresponding area type based on the target location, the following steps are also included: Obtain the temperature and humidity values ​​corresponding to the area type; Determine whether the temperature and humidity values ​​of the area meet the outdoor environmental parameter standards; If the temperature and humidity values ​​of the area do not meet the outdoor environmental parameter standards, then the temperature and humidity adjustment parameters corresponding to the area type are generated according to the outdoor environmental parameter standards. The temperature and humidity values ​​of the area are adjusted according to the temperature and humidity adjustment parameters.

4. The environmental temperature monitoring method according to claim 3, characterized in that, After generating temperature and humidity adjustment parameters corresponding to the area type based on the outdoor environmental parameter standards if the temperature and humidity values ​​of the area do not meet the outdoor environmental parameter standards, the following steps are included: If the area type has specified temperature and humidity standards, then determine whether the temperature and humidity adjustment parameters meet the specified temperature and humidity standards; If the temperature and humidity adjustment parameters do not conform to the specified temperature and humidity standards, then a corresponding temperature and humidity correction instruction is generated to correct the temperature and humidity adjustment parameters according to the specified temperature and humidity standards.

5. The environmental temperature monitoring method according to claim 1, characterized in that, After driving the air conditioning in the target location to operate according to the public area temperature control parameters or the equipment area temperature control parameters, the following steps are also included: Obtain the temperature regulation cycle corresponding to the temperature regulation parameters of the public area and the temperature regulation parameters of the equipment area; Based on the temperature regulation cycle, train the temperature cycle regulation model corresponding to the target location; The temperature cycle regulation model is analyzed to generate corresponding temperature cycle regulation commands to drive the air conditioning operation in the target location.

6. An ambient temperature monitoring system, characterized in that, An environmental temperature monitoring method as described in any one of claims 1-5, comprising: The first acquisition module (1) is used to acquire the target location; The second acquisition module (2) is used to acquire the corresponding area type based on the target location; If the area type is a public area, the third acquisition module (3) is used to acquire the first temperature value corresponding to the public area; The first judgment module (4) is used to determine whether the first temperature value is within the temperature reference value range corresponding to the public area; The fourth acquisition module (5) is used to acquire the unit flow of people in the public area if the first temperature value is within the temperature reference value range corresponding to the public area. The module (6) is used to combine the first temperature value and the unit flow of people to generate corresponding public area temperature adjustment parameters; The fifth acquisition module (7) is used to acquire the second temperature value corresponding to the equipment area if the area type is a device area. The second judgment module (8) is used to determine whether the second temperature value exceeds the temperature control threshold range corresponding to the equipment area; If the second temperature value exceeds the temperature control threshold range corresponding to the equipment area, the generation module (9) is used to obtain the temperature difference between the second temperature value and the temperature control threshold range, and generate the corresponding equipment area temperature adjustment parameters according to the temperature difference. The drive module (10) is used to drive the air conditioner in the target location to operate according to the temperature adjustment parameters of the public area or the temperature adjustment parameters of the equipment area.

7. A terminal device, comprising a memory and a processor, characterized in that, The memory stores computer instructions that can run on the processor. When the processor loads and executes the computer instructions, it employs an ambient temperature monitoring method as described in any one of claims 1 to 5.

8. A computer-readable storage medium storing computer instructions, characterized in that, When the computer instructions are loaded and executed by the processor, an environmental temperature monitoring method as described in any one of claims 1 to 5 is employed.