A precisely measurable room temperature precise acquisition system and collector

By designing a room temperature accurate acquisition system with multiple detection and analysis modules, the problem of inability to fully monitor the actual indoor temperature and equipment and unstable power supply in the prior art is solved, and accurate and reliable measurement of room temperature is achieved.

CN118999832BActive Publication Date: 2025-05-27TIANJIN JINNENG SHUANGHE HEATING EQUIP
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Patent Information

Application Number
CN202411010960.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-07-26
Publication Date
2025-05-27
Estimated Expiration
2044-07-26

AI Technical Summary

Technical Problem

The existing room temperature temperature acquisition method has the problem that the actual indoor temperature cannot be fully monitored, and the wired method is not beautiful, and the unstable battery power supply of wireless methods affects the accuracy of temperature measurement.

Method used

Design a room temperature accurate collection system, including the equipment main control module, acquisition mode selection module, power supply load detection and analysis module, thermal insulation film detection and analysis module and information database. Through the coordinated work of these modules, accurate measurement and collection of room temperature is achieved.

Benefits of technology

Accurate measurement of room temperature is achieved, avoiding the unsightly wired mode and unstable battery power supply in wireless mode, ensuring the reliability and accuracy of temperature monitoring.

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Abstract

The present invention belongs to the technical field of precise collection of room temperature, and relates to a precise collection system and collector for room temperature that can be precisely measured. Based on the constructed device main control module, collection mode selection module, power load detection and analysis module, heat insulation film detection and analysis module, and information library, the present invention avoids the inaccuracy of room temperature measurement caused by the possible sunlight irradiation of the installation position of the device or the possible connection of other loads at the power supply where the device is located. It also avoids the unappealing situation in the user's room caused by the fixed installation of the wired temperature measurement device and the wiring connection of the cable, and avoids the impact of the unstable battery power of the wireless temperature measurement device on the precise temperature measurement. By flexibly adjusting the collection mode of the target room temperature collection device to adapt to the actual needs of the target detection space, it helps to avoid the monitoring error of room temperature caused by environmental changes.
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Description

Technical Field

[0001] The present invention belongs to the technical field of precise collection of room temperature, and relates to a precise collection system and collector for room temperature that can be precisely measured. Background Technique

[0002] A room temperature collector is a device specifically designed to monitor and record indoor temperature changes. With the rapid development of technologies such as the Internet of Things, big data, and cloud computing, the concepts of smart homes and smart cities have gradually gained popularity. In the heating field, due to the influence of the fluidity of water and the circulation time, the phenomenon of "hot near and cold far" often occurs, that is, the room temperature of users close to the heat source is relatively high, while the room temperature of users far from the heat source is relatively low. Therefore, in order to achieve precise heating, the collection method for room temperature has very important significance and role.

[0003] Currently, the existing collection methods for room temperature generally adopt the method of installing a temperature measurement panel in the user's room as a room temperature collector, and control the opening degree of each balance valve of the heating equipment according to the temperature data fed back by the temperature measurement panel for temperature adjustment.

[0004] Currently, the existing collection methods for room temperature can meet the basic requirements, but there are still certain deficiencies: on the one hand, the existing collection methods for room temperature have the problem that they cannot fully monitor the actual indoor temperature. This is mainly because the installation position of the temperature measurement panel may be irradiated by sunlight, or the temperature measurement panel may be connected to a load, resulting in a change in the temperature measured by the temperature sensor and being unable to correctly reflect the indoor temperature.

[0005] On the other hand, the temperature measurement devices used in the existing collection methods for room temperature control are divided into wired and wireless methods. Among them, the wired temperature measurement device is fixed at a certain place indoors, and the lead wire containing the power supply and signal line is led out to the outside and connected to the heating control valve all the time, and power supply needs to be drawn from the surrounding at the control valve. The wireless temperature measurement device is generally battery-powered and placed at a certain place indoors, and the temperature is sent to the heating control valve for temperature control by wireless communication at a short distance. However, the wired temperature measurement device needs to be fixedly installed and wired to connect the cable, which is very unsightly in the user's room. The battery power supply time of the wireless temperature measurement device is limited, and the instability of the battery power has a certain impact on the precise measurement of temperature. Summary of the Invention

[0006] In view of this, in order to solve the problems raised in the above background technique, a precise collection system and collector for room temperature that can be precisely measured are now proposed.

[0007] The object of the present invention can be achieved by the following technical solutions: In the first aspect of the present invention, a precise measurement and acquisition system for room temperature is provided, including: a device main control module, an acquisition mode selection module, a power load detection and analysis module, a heat insulation film detection and analysis module, and an information database.

[0008] The device main control module is respectively connected to the acquisition mode selection module, the power load detection and analysis module, and the heat insulation film detection and analysis module, and the information database is respectively connected to the acquisition mode selection module, the power load detection and analysis module, and the heat insulation film detection and analysis module.

[0009] The device main control module is used to record the acquisition device for measuring room temperature as the target room temperature acquisition device, and serve as the main control center for the acquisition mode selection, power load detection and analysis, heat insulation film detection and analysis, and wireless power access of the target room temperature acquisition device.

[0010] The acquisition mode selection module is used to obtain the environmental information of the target detection space, analyze the environmental evaluation situation of the target detection space, and then select the acquisition mode of the target room temperature acquisition device in the target detection space according to its evaluation result.

[0011] The power load detection and analysis module is used to detect the socket power supply corresponding to the target room temperature acquisition device in the target detection space, obtain the electrical information of the socket power supply corresponding to the target room temperature acquisition device in the target detection space, analyze the target room temperature correction and compensation values corresponding to each load at the socket power supply corresponding to the target room temperature acquisition device in the target detection space, and display the temperature value of the target room temperature acquisition device.

[0012] The heat insulation film detection and analysis module is used to detect the heat insulation film function of the target room temperature acquisition device in the target detection space, obtain the heat insulation film function test information of the target room temperature acquisition device in the target detection space, analyze the heat insulation film function situation of the target room temperature acquisition device in the target detection space, and feedback it.

[0013] The information database is used to store the permitted electromagnetic interference intensity, the permitted concentration of various chemical gases, and the permitted vibration intensity under the safe operating conditions of each acquisition mode of the target room temperature acquisition device in the environment of the target detection space, store the temperature range and humidity range of each acquisition mode of the target room temperature acquisition device, store the reference basic value of the target room temperature correction and compensation, and store the standard temperature numerical color card.

[0014] In the second aspect of the present invention, a precise room temperature collector is provided. The precise room temperature collector stores one or more programs, and the one or more programs can be executed by one or more processors to implement a precise measurement and acquisition system for room temperature according to the present invention.

[0015] Compared with the prior art, the advantages and positive effects of the present invention are as follows: 1. Through the device main control module of the present invention, the collection mode selection, power load detection and analysis, heat insulation film detection and analysis of the target room temperature collection device, and wireless power access are completed. It can be installed on the wall socket at any position on the wall. The fixed temperature measurement is less affected by humans, avoiding the fixed installation and wiring connection of the cable of the wired temperature measurement device, which is not beautiful in the user's room. It also avoids the influence of the unstable battery power supply of the wireless temperature measurement device on the accuracy of temperature measurement.

[0016] 2. By analyzing the environmental evaluation of the target detection space, the present invention selects the collection mode of the target room temperature collection device in the target detection space. Through targeted detection and analysis of the target detection space, the collection mode of the target room temperature collection device is flexibly adjusted to meet the actual needs of the target detection space, which helps to avoid the mistake of room temperature monitoring caused by environmental changes and ensures the accuracy and reliability of room temperature.

[0017] 3. By analyzing the target room temperature correction compensation value corresponding to each load at the socket power supply of the target room temperature collection device belonging to the target detection space, the present invention helps to avoid the problem of inaccurate room temperature detection caused by the operation of the load at the socket power supply of the target room temperature collection device belonging to the target detection space, which is beneficial to realizing the accurate control of the heat supply amount, reducing energy waste and carbon emissions.

[0018] 4. By analyzing the heat insulation film function of the target room temperature collection device belonging to the target detection space, the present invention helps to avoid the problem of inaccurate room temperature detection caused by the possible sunlight irradiation of the installation position of the target room temperature collection device belonging to the target detection space, which is beneficial to realizing heat supply on demand and balance adjustment, improving the heat supply efficiency and quality, and also improving the user satisfaction. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0020] Figure 1 It is a schematic diagram of the system module connection of the present invention. DETAILED DESCRIPTION OF THE INVENTION

[0021] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0022] Embodiment 1

[0023] Please refer to Figure 1 As shown, the present invention provides a precise room temperature acquisition system that can be precisely measured, and the specific module distribution is as follows: a device main control module, an acquisition mode selection module, a power load detection and analysis module, a heat insulation film detection and analysis module, and an information library. Among them, the connection method between the modules is: the device main control module is respectively connected to the acquisition mode selection module, the power load detection and analysis module, and the heat insulation film detection and analysis module, and the information library is respectively connected to the acquisition mode selection module, the power load detection and analysis module, and the heat insulation film detection and analysis module.

[0024] The device main control module is used to record the acquisition device for measuring the room temperature as the target room temperature acquisition device, and serve as the main control center for the acquisition mode selection, power load detection and analysis, heat insulation film detection and analysis, and wireless power access of the target room temperature acquisition device.

[0025] As a preferred feasible example, the device main control module specifically includes: the power supply of the target room temperature acquisition device is provided by a socket-type power supply, which can be installed on any wall socket on the wall, and can perform temperature correction when other loads are working on its socket, and at the same time, a layer of heat insulation film is attached to its surface.

[0026] The present invention completes the acquisition mode selection, power load detection and analysis, heat insulation film detection and analysis, and wireless power access of the target room temperature acquisition device through the device main control module. It can be installed on any wall socket on the wall, and the fixed temperature measurement is less affected by humans, avoiding the fixed installation and wiring connection of the cable of the wired temperature measurement device, which is not beautiful in the user's room, and also avoiding the influence of the unstable battery power supply of the wireless temperature measurement device on the accuracy of temperature measurement.

[0027] The acquisition mode selection module is used to obtain the environmental information of the target detection space, analyze the environmental evaluation situation of the target detection space, and then select the acquisition mode of the target room temperature acquisition device in the target detection space according to its evaluation result.

[0028] As a preferred feasible example, the environmental information of the target detection space includes temperature range, humidity range, electromagnetic interference intensity, various chemical gas concentrations, and vibration intensity.

[0029] It should be further noted that the specific method for obtaining the temperature range and humidity range of the target detection space is as follows: The temperature range and humidity range of the target detection space are obtained by the user of the target detection space inputting them himself / herself.

[0030] The specific method for obtaining the electromagnetic interference intensity, the concentration of various chemical gases, and the vibration intensity of the target detection space is as follows: The electromagnetic interference intensity, the concentration of various chemical gases, and the vibration intensity of the target detection space are directly measured by using the arranged electromagnetic field intensity meter, gas detector, and vibration meter.

[0031] As a preferred feasible example, in the process of analyzing the environmental evaluation situation of the target detection space, it is necessary to obtain each environmental matching acquisition mode of the target room temperature acquisition device in the environment of the target detection space. The specific analysis method includes: extracting the electromagnetic interference intensity, the concentration of various chemical gases, and the vibration intensity of the target detection space, and comparing them respectively with the permitted electromagnetic interference intensity, the permitted concentration of various chemical gases, and the permitted vibration intensity under the safe operation conditions of each acquisition mode of the target room temperature acquisition device in the environment of the target detection space extracted from the information database;

[0032] If the electromagnetic interference intensity of the target detection space is less than the permitted electromagnetic interference intensity under the safe operation conditions of a certain acquisition mode of the target room temperature acquisition device in the environment of the target detection space, then this acquisition mode of the target room temperature acquisition device in the environment of the target detection space is recorded as the electromagnetic intensity matching acquisition mode of the target room temperature acquisition device in the environment of the target detection space. Furthermore, each electromagnetic intensity matching acquisition mode of the target room temperature acquisition device in the environment of the target detection space is obtained. Similarly, each chemical gas concentration matching acquisition mode and each vibration intensity matching acquisition mode of the target room temperature acquisition device in the environment of the target detection space can be obtained;

[0033] Further, screen among each electromagnetic intensity matching acquisition mode, each chemical gas concentration matching acquisition mode, and each vibration intensity matching acquisition mode of the target room temperature acquisition device in the environment of the target detection space to obtain each acquisition mode in which the electromagnetic intensity, chemical gas concentration, and vibration intensity of the target room temperature acquisition device in the environment of the target detection space are all matched, and record them as each environmental matching acquisition mode of the target room temperature acquisition device in the environment of the target detection space.

[0034] As a preferred feasible example, the specific operation of selecting the acquisition mode of the target room temperature acquisition device in the target detection space according to its evaluation result includes: extracting the temperature range and humidity range of each acquisition mode of the target room temperature acquisition device from the information database, and extracting the temperature range and humidity range of each environmental matching acquisition mode of the target room temperature acquisition device in the environment of the target detection space from them;

[0035] Extract the temperature range and humidity range of the target detection space, and match them with the temperature range and humidity range of each environment matching acquisition mode of the target room temperature acquisition device in the environment of the target detection space, so as to obtain each environment matching acquisition mode of the target room temperature acquisition device in the environment of the target detection space where both the temperature range and humidity range match the temperature range and humidity range of the target detection space, and record it as each matching acquisition mode of the target room temperature acquisition device;

[0036] Further select from each matching acquisition mode of the target room temperature acquisition device the matching acquisition mode of the target room temperature acquisition device with the largest difference in the permitted electromagnetic interference intensity from the electromagnetic interference intensity of the target detection space, and use it as the acquisition mode of the target room temperature acquisition device in the target detection space.

[0037] The present invention selects the acquisition mode of the target room temperature acquisition device in the target detection space by analyzing the environmental evaluation of the target detection space. Through targeted detection and analysis of the target detection space, the acquisition mode of the target room temperature acquisition device is flexibly adjusted to meet the actual needs of the target detection space, which helps to avoid mistakes in room temperature monitoring caused by environmental changes and ensures the accuracy and reliability of the room temperature.

[0038] A power load detection and analysis module is used to detect the power supply at the socket corresponding to the target room temperature acquisition device in the target detection space, obtain the electrical information at the power supply of the socket corresponding to the target room temperature acquisition device in the target detection space, analyze the target room temperature correction compensation value corresponding to each load at the power supply of the socket corresponding to the target room temperature acquisition device in the target detection space, and display the temperature value of the target room temperature acquisition device.

[0039] As a preferred feasible example, the electrical information at the power supply of the socket corresponding to the target room temperature acquisition device in the target detection space includes an operating temperature distribution map, as well as the current and distance lengths of each load.

[0040] It should be explained that the distance length of each load is the distance length between each load and the target room temperature acquisition device.

[0041] It should be further explained that the specific acquisition method of the operating temperature distribution map at the power supply of the socket corresponding to the target room temperature acquisition device in the target detection space is: use a thermal imaging temperature detector to detect the power supply of the socket corresponding to the target room temperature acquisition device in the target detection space to obtain the operating temperature distribution map at the power supply of the socket corresponding to the target room temperature acquisition device in the target detection space.

[0042] The specific method for obtaining the current and distance length of each load at the socket power supply corresponding to the target room temperature acquisition device in the target detection space is as follows: Use the deployed clamp-on current transducer and laser rangefinder to measure the current and distance length of each load at the socket power supply corresponding to the target room temperature acquisition device in the target detection space.

[0043] As a preferred feasible example, the specific analysis method for the target room temperature correction compensation value corresponding to each specified load includes: Extract the operating temperature distribution map at the socket power supply corresponding to the target room temperature acquisition device in the target detection space, as well as the current and distance length of each load.

[0044] Extract from the operating temperature distribution map at the socket power supply corresponding to the target room temperature acquisition device in the target detection space to obtain the target room temperature acquisition device at the socket power supply corresponding to the target room temperature acquisition device in the target detection space and the operating temperature of each load.

[0045] It should be further noted that the specific extraction method for the target room temperature acquisition device at the socket power supply corresponding to the target room temperature acquisition device in the target detection space and the operating temperature of each load is as follows: Compare the operating temperature distribution map at the socket power supply corresponding to the target room temperature acquisition device in the target detection space with the standard temperature value color card stored in the information library to obtain the target room temperature acquisition device at the socket power supply corresponding to the target room temperature acquisition device in the target detection space and the operating temperature of each load.

[0046] According to the analysis model Obtain the target room temperature correction compensation value corresponding to each specified load where f = 1, 2,..., c, f is the number corresponding to each specified load, c is the number of specified loads, T f 、I f 、L f are respectively the operating temperature, current and distance length of the f-th load at the socket power supply corresponding to the target room temperature acquisition device in the target detection space, T 0 is the operating temperature of the target room temperature acquisition device at the socket power supply corresponding to the target room temperature acquisition device in the target detection space, I 0 、L 0 are respectively the maximum current and minimum distance length under the operating conditions affecting the target room temperature acquisition device, T 参考 is the target room temperature correction compensation reference base value extracted from the information library.

[0047] As a preferred feasible example, the display of the temperature value of the target room temperature acquisition device specifically includes: extracting the maximum correction compensation value of the target room temperature from the target room temperature correction compensation values corresponding to each specified load, and denoting it as the optimal correction compensation value of the target room temperature.

[0048] Obtain the temperature value collected by the target room temperature acquisition device in the target detection space in the acquisition mode, add it to the optimal correction compensation value of the target room temperature, and display the obtained sum as the temperature value of the target room temperature acquisition device.

[0049] By analyzing the target room temperature correction compensation values corresponding to each load at the socket power supply of the target room temperature acquisition device belonging to the target detection space, the present invention helps to avoid the problem of inaccurate room temperature detection caused by the operation of the loads at the socket power supply of the target room temperature acquisition device belonging to the target detection space, is conducive to realizing precise control of the heat supply, and reduces energy waste and carbon emissions.

[0050] The heat insulation film detection and analysis module is used to detect the heat insulation film function of the target room temperature acquisition device belonging to the target detection space, obtain the heat insulation film function test information of the target room temperature acquisition device belonging to the target detection space, analyze the heat insulation film function situation of the target room temperature acquisition device belonging to the target detection space, and feedback it.

[0051] As a preferred feasible example, the heat insulation film function test information of the target room temperature acquisition device belonging to the target detection space includes the room temperature at each measurement point.

[0052] It should be explained that each measurement point is at each socket power supply of the target detection space.

[0053] It should be further noted that the specific method for obtaining the room temperature at each measurement point of the target room temperature acquisition device belonging to the target detection space is: the room temperature measured at each socket power supply of the target detection space by the target room temperature acquisition device belonging to the target detection space, and denoting it as the room temperature at each measurement point of the target room temperature acquisition device belonging to the target detection space.

[0054] As a preferred feasible example, during the analysis of the heat insulation film function situation of the target room temperature acquisition device belonging to the target detection space, it is necessary to construct the room temperature fluctuation coefficient of the target room temperature acquisition device belonging to the target detection space, and the specific analysis method includes:

[0055] Extract the room temperature at each measurement point of the target room temperature acquisition device belonging to the target detection space, and analyze the room temperature fluctuation coefficient of the target room temperature acquisition device belonging to the target detection space Where RTg The room temperature of the g-th measurement point of the target room temperature acquisition device belonging to the target detection space, ΔRT 0 Is the set allowable room temperature difference, g = 1, 2,..., d, where g is the number corresponding to each measurement point and d is the number of measurement points.

[0056] As a preferred feasibility example, for the heat insulation film function of the target room temperature acquisition device belonging to the target detection space, the specific analysis method includes: comparing the room temperature fluctuation coefficient of the target room temperature acquisition device belonging to the target detection space with the set room temperature fluctuation coefficient threshold. If the room temperature fluctuation coefficient of the target room temperature acquisition device belonging to the target detection space is less than the set room temperature fluctuation coefficient threshold, the heat insulation film function of the target room temperature acquisition device belonging to the target detection space is recorded as qualified; otherwise, the heat insulation film function of the target room temperature acquisition device belonging to the target detection space is recorded as unqualified and feedback is given.

[0057] The information database is used to store the allowable electromagnetic interference intensity, the allowable concentration of various chemical gases, and the allowable vibration intensity under the safe operating conditions of each acquisition mode of the target room temperature acquisition device in the environment of the target detection space, store the temperature range and humidity range of each acquisition mode of the target room temperature acquisition device, store the reference basic value for target room temperature correction and compensation, and store the standard temperature numerical color card.

[0058] By analyzing the heat insulation film function of the target room temperature acquisition device belonging to the target detection space, the present invention helps to avoid the problem of inaccurate room temperature detection caused by the possible sunlight exposure of the installation position of the target room temperature acquisition device belonging to the target detection space, is conducive to realizing on-demand heating and balanced regulation, improves the heating efficiency and quality, and also improves user satisfaction.

[0059] Embodiment 2

[0060] The present invention provides a precise room temperature collector. The precise room temperature collector stores one or more programs, and the one or more programs can be executed by one or more processors to implement a precise room temperature acquisition system that can be precisely measured as described in the present invention.

[0061] The above content is only an example and illustration of the concept of the present invention. Those skilled in the art of this technology can make various modifications, supplements, or use similar methods to replace the specific embodiments described, as long as they do not deviate from the concept of the invention or exceed the scope defined by the present invention, they should all belong to the protection scope of the present invention.

Claims

1. A room temperature accurate acquisition system capable of accurate measurement, characterized in that: include: The device main control module is used to record the acquisition device used to measure the room temperature as the target room temperature acquisition device, and serve as the main control center for the target room temperature acquisition device to select the acquisition mode, power load detection and analysis, thermal insulation film detection and analysis, and wireless power access; The collection mode selection module is used to obtain the environmental information of the target detection space, analyze the environmental evaluation of the target detection space, and then select the collection mode of the target room temperature collection device in the target detection space according to the evaluation results; The power load detection and analysis module is used to detect the socket power supply corresponding to the target room temperature acquisition device belonging to the target detection space, obtain the electrical information of the socket power supply corresponding to the target room temperature acquisition device belonging to the target detection space, analyze the target room temperature correction compensation value corresponding to each load at the socket power supply corresponding to the target room temperature acquisition device belonging to the target detection space, and display the temperature value of the target room temperature acquisition device; The thermal insulation film detection and analysis module is used to detect the thermal insulation film function of the target room temperature acquisition device belonging to the target detection space, obtain the thermal insulation film function test information of the target room temperature acquisition device belonging to the target detection space, analyze the thermal insulation film function of the target room temperature acquisition device belonging to the target detection space, and provide feedback; The information database is used to store the permitted electromagnetic interference intensity, permitted concentration of various chemical gases and permitted vibration intensity under the safe operating conditions of each acquisition mode of the target room temperature acquisition equipment in the environment of the target detection space, store the temperature range and humidity range of each acquisition mode of the target room temperature acquisition equipment, store the reference basic value of the target room temperature correction compensation, and store the standard temperature value colorimetric card.

2. According to claim 1, a room temperature accurate acquisition system capable of accurate measurement is characterized in that: The power supply of the target room temperature acquisition device is provided by a socket-type power supply, which can be installed on a wall socket at any position on the wall. At the same time, a layer of heat insulation film is attached to the surface of the target room temperature acquisition device, and the device main control module can perform temperature correction when the socket is working with other loads.

3. The room temperature accurate acquisition system capable of accurate measurement according to claim 1, characterized in that: The environmental information of the target detection space includes temperature range, humidity range, electromagnetic interference intensity, concentration of various chemical gases and vibration intensity; The electrical information at the socket power supply corresponding to the target room temperature acquisition device of the target detection space includes an operating temperature distribution diagram and the current and distance length of each load; The thermal insulation film function test information of the target room temperature acquisition device belonging to the target detection space includes the room temperature of each measuring point.

4. The room temperature accurate acquisition system capable of accurate measurement according to claim 3 is characterized in that: In the process of analyzing the environmental evaluation of the target detection space, it is necessary to obtain the environmental matching acquisition modes of the target room temperature acquisition device under the environment of the target detection space. The specific analysis method includes: Extract the electromagnetic interference intensity, concentration of various chemical gases and vibration intensity of the target detection space, and compare them with the permitted electromagnetic interference intensity, permitted concentration of various chemical gases and permitted vibration intensity under the safe operation conditions of each acquisition mode of the target room temperature acquisition equipment under the environment of the target detection space extracted from the information database; If the electromagnetic interference intensity of the target detection space is less than the permitted electromagnetic interference intensity under the safe operation conditions of a certain acquisition mode of the target room temperature acquisition device under the environment of the target detection space, then the acquisition mode of the target room temperature acquisition device under the environment of the target detection space is recorded as the electromagnetic intensity matching acquisition mode of the target room temperature acquisition device under the environment of the target detection space, and then the electromagnetic intensity matching acquisition modes of the target room temperature acquisition device under the environment of the target detection space are obtained. Similarly, the chemical gas concentration matching acquisition modes and the vibration intensity matching acquisition modes of the target room temperature acquisition device under the environment of the target detection space can be obtained. Further, the electromagnetic intensity matching collection modes, chemical gas concentration matching collection modes and vibration intensity matching collection modes of the target room temperature collection device in the environment of the target detection space are screened to obtain collection modes in which the electromagnetic intensity, chemical gas concentration and vibration intensity of the target room temperature collection device in the environment of the target detection space are matched, and they are recorded as the environment matching collection modes of the target room temperature collection device in the environment of the target detection space.

5. The room temperature accurate acquisition system capable of accurate measurement according to claim 4, characterized in that: The specific operation of selecting the collection mode of the target room temperature collection device in the target detection space according to the evaluation result includes: Extract the temperature range and humidity range of each acquisition mode of the target room temperature acquisition device from the information database, and extract the temperature range and humidity range of each environment matching acquisition mode of the room temperature acquisition device from the information database; Extract the temperature range and humidity range of the target detection space, match them with the temperature range and humidity range of each environment matching acquisition mode of the target room temperature acquisition device under the environment of the target detection space, obtain each environment matching acquisition mode of the target room temperature acquisition device under the environment of the target detection space, and record them as each matching acquisition mode of the target room temperature acquisition device; Further, the matching acquisition mode of the target room temperature acquisition device with the largest difference between the permitted electromagnetic interference intensity and the electromagnetic interference intensity of the target detection space is selected from the matching acquisition modes of the target room temperature acquisition device, and is used as the acquisition mode of the target room temperature acquisition device in the target detection space.

6. The room temperature accurate acquisition system capable of accurate measurement according to claim 3, characterized in that: The target room temperature correction compensation value corresponding to each load at the socket power supply corresponding to the target room temperature acquisition device of the target detection space includes: Extract the operating temperature distribution diagram of the socket power supply corresponding to the target room temperature acquisition device of the target detection space and the current and distance length of each load; Extract from the operating temperature distribution map of the socket power supply corresponding to the target room temperature acquisition device of the target detection space, and obtain the operating temperature of the target room temperature acquisition device and each load at the socket power supply corresponding to the target room temperature acquisition device of the target detection space; According to the analysis model Get the target room temperature correction compensation value corresponding to each load at the socket power supply corresponding to the target room temperature acquisition device of the target detection space Where f=1,2,...,c, f is the number corresponding to each load, c is the number of loads, T f ,I f , L f are the operating temperature, current and distance length of the fth load at the socket power supply corresponding to the target room temperature acquisition device in the target detection space, respectively. T0 is the operating temperature of the target room temperature acquisition device at the socket power supply corresponding to the target room temperature acquisition device in the target detection space. I0 and L0 are the maximum current and minimum distance length set without affecting the operating conditions of the target room temperature acquisition device, respectively. T 参考 Correct the compensation reference base value for the target room temperature extracted from the information library.

7. The room temperature accurate acquisition system capable of accurate measurement according to claim 6, characterized in that: The specific operation of displaying the temperature value of the target room temperature acquisition device includes: Extract the maximum target room temperature correction compensation value from the target room temperature correction compensation values ​​corresponding to each load at the socket power supply corresponding to the target room temperature acquisition device of the target detection space, and record it as the optimal target room temperature correction compensation value; The temperature value collected by the target room temperature collection device in the collection mode of the target detection space is obtained, and the temperature value is accumulated with the target room temperature optimal correction compensation value, and the obtained sum is displayed as the temperature value of the target room temperature collection device.

8. The room temperature accurate acquisition system capable of accurate measurement according to claim 3, characterized in that: In the process of analyzing the function of the thermal insulation film of the target room temperature acquisition device of the target detection space, it is necessary to construct the room temperature fluctuation coefficient of the target room temperature acquisition device of the target detection space. The specific analysis method includes: Extract the room temperature of each measuring point of the target room temperature acquisition device in the target detection space, and analyze the room temperature fluctuation coefficient of the target room temperature acquisition device in the target detection space RT g is the room temperature of the gth measurement point of the target room temperature acquisition device belonging to the target detection space, ΔRT0 is the set allowable room temperature difference, g=1,2,...,d, g is the number corresponding to each measurement point, and d is the number of measurement points.

9. The room temperature accurate acquisition system capable of accurate measurement according to claim 8, characterized in that: The specific analysis method of the insulation film function of the target room temperature acquisition device of the target detection space includes: The room temperature fluctuation coefficient of the target room temperature collection device belonging to the target detection space is compared with the set room temperature fluctuation coefficient threshold. If the room temperature fluctuation coefficient of the target room temperature collection device belonging to the target detection space is less than the set room temperature fluctuation coefficient threshold, the thermal insulation film function of the target room temperature collection device belonging to the target detection space is recorded as qualified; otherwise, the thermal insulation film function of the target room temperature collection device belonging to the target detection space is recorded as unqualified and feedback is given.

10. A room temperature precision collector, characterized by: The room temperature precision collector stores one or more programs, and the one or more programs can be executed by one or more processors to implement a room temperature precision collection system that can accurately measure room temperature as described in any one of claims 1-9.

Citation Information

Patent Citations

  • Carbon fiber controller temperature compensation method

    CN110687942A

  • Circuit of socket type room temperature collector and temperature measurement correction method

    CN111765983A