An intelligent control method and system for electric radiant heating based on air monitoring
Through air monitoring, temperature and personnel information are obtained, and the working status of the electrical radiation heating device is intelligently controlled, which solves the problem that the electrical radiation heating device cannot adjust the temperature according to the personnel situation in the room, and realizes energy-saving and safe electrical radiation heating control.
Patent Information
- Application Number
- CN202310088581.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-02-09
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2043-02-09
AI Technical Summary
The existing electrical radiation heating devices cannot automatically adjust the temperature according to the personnel conditions in the room, resulting in some unmanned rooms still working at high loads, causing energy waste.
The room temperature and personnel information are obtained through air monitoring, the face information is recognized by temperature sensors and camera devices, and the working status of the electrical radiation heating device is intelligently controlled by combining outdoor temperature information to realize intelligent adjustment of the electrical radiation heating device.
Effectively prevent the high-load operation of electrical radiation heating devices in unmanned rooms, reduce energy waste, and generate alarm signals when necessary to ensure safety.
Smart Images

Figure CN116007047B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of electric radiant heating, and particularly to an intelligent control method for electric radiant heating based on air monitoring and an intelligent control system for electric radiant heating based on air monitoring. Background Art
[0002] In the prior art, buildings (with multiple rooms) use electric radiant heating. The existing electric radiant heating can only adjust the temperature according to human control, that is, increasing the power of the electric radiant heating device to raise the temperature or decreasing the power of the electric radiant heating device to lower the temperature. However, the existing electric radiant heating devices cannot automatically adjust the temperature in the room, especially cannot adjust according to the personnel situation in the room. For example, in some rooms, there are actually no people, and at this time, there is no need for too high a temperature, but it is possible that the electric radiant heating device in that room is working at a high load.
[0003] Therefore, it is desirable to have a technical solution to solve or at least alleviate the above deficiencies of the prior art. Summary of the Invention
[0004] The purpose of the present invention is to provide an intelligent control method for electric radiant heating based on air monitoring to at least solve one of the above technical problems.
[0005] The present invention provides the following solutions:
[0006] According to one aspect of the present invention, there is provided an intelligent control method for electric radiant heating based on air monitoring, and the intelligent control method for electric radiant heating based on air monitoring includes:
[0007] Obtain the temperature information and basic personnel information of each room equipped with an electric radiant heating device;
[0008] Obtain the working state information of each electric radiant heating device;
[0009] Control any one or more electric radiant heating devices to work according to the temperature information, basic personnel information of each room equipped with an electric radiant heating device, and the working state information of each electric radiant heating device.
[0010] Optionally, the obtaining the temperature information of each room equipped with an electric radiant heating device includes:
[0011] Obtain the temperature information transmitted by the temperature sensors near the electric radiant heating devices in each room;
[0012] Obtain the temperature information transmitted by the temperature sensors far from the electric radiant heating devices in each room.
[0013] Optionally, the obtaining of the basic information of the personnel in each room equipped with an electric radiant heating device includes:
[0014] Obtaining the image information captured by the camera devices arranged in each room;
[0015] Respectively obtaining the basic information of the personnel in each room according to each piece of the image information.
[0016] Optionally, the respectively obtaining the basic information of the personnel in each room according to each piece of the image information includes:
[0017] Performing the following processing on each obtained piece of image information:
[0018] Identifying the image information to obtain the face information in the image information.
[0019] Optionally, the controlling any one or more electric radiant heating devices to work according to the temperature information, the basic information of the personnel, and the working state information of each electric radiant heating device in each room equipped with an electric radiant heating device includes:
[0020] Obtaining the room information with personnel according to the face information and the clothing information;
[0021] Obtaining the outdoor temperature information;
[0022] Controlling the electric radiant heating devices in the rooms with personnel to work according to the outdoor temperature information, the temperature information transmitted by the temperature sensors close to the electric radiant heating devices in the room information with personnel, and the temperature information transmitted by the temperature sensors far from the electric radiant heating devices.
[0023] Optionally, the controlling the electric radiant heating devices in the rooms with personnel to work according to the outdoor temperature information, the temperature information transmitted by the temperature sensors close to the electric radiant heating devices in the room information with personnel, and the temperature information transmitted by the temperature sensors far from the electric radiant heating devices includes:
[0024] Performing the following control on the electric radiant heating devices in each room with personnel:
[0025] Obtaining the difference between the temperature information transmitted by the temperature sensors far from the electric radiant heating devices and the outdoor temperature information, and this difference is called the first temperature difference;
[0026] Judging whether the first temperature difference is less than the first preset threshold and the temperature information transmitted by the temperature sensors far from the electric radiant heating devices is higher than the outdoor temperature information. If so, then
[0027] Obtain the difference between the temperature information transmitted by the temperature sensor near the electric radiant heating device and the outdoor temperature information, and this difference is called the second temperature difference;
[0028] Judge whether the second temperature difference is less than the second preset threshold and the temperature information transmitted by the temperature sensor near the electric radiant heating device is higher than the temperature information transmitted by the temperature sensor far from the electric radiant heating device. If so,
[0029] Control the electric radiant heating device in this room to work with increased power, so as to increase the second temperature difference.
[0030] Optionally, before controlling the electric radiant heating device in this room to work with increased power so as to increase the second temperature difference, the controlling the electric radiant heating device in the room with people to work according to the outdoor temperature information, the temperature information transmitted by the temperature sensor near the electric radiant heating device in the room with people, and the temperature information transmitted by the temperature sensor far from the electric radiant heating device further includes:
[0031] Obtain the temperature limit value;
[0032] Judge whether the difference between the temperature information transmitted by the temperature sensor near the electric radiant heating device and the outdoor temperature information exceeds the temperature limit value. If so,
[0033] Generate an alarm signal.
[0034] Optionally, the controlling the electric radiant heating device in the room with people to work according to the outdoor temperature information, the temperature information transmitted by the temperature sensor near the electric radiant heating device in the room with people, and the temperature information transmitted by the temperature sensor far from the electric radiant heating device further includes:
[0035] Perform the following control for the electric radiant heating device in each room with people:
[0036] Obtain the difference between the temperature information transmitted by the temperature sensor far from the electric radiant heating device and the outdoor temperature information, and this difference is called the first temperature difference;
[0037] Judge whether the first temperature difference is less than the first preset threshold. If not,
[0038] Obtain the difference between the temperature information transmitted by the temperature sensor near the electric radiant heating device and the outdoor temperature information, and this difference is called the second temperature difference;
[0039] Judge whether the second temperature difference is less than the second preset threshold. If not,
[0040] Obtain the working state of the electric radiant heating device. If the working state is the heating state, then
[0041] Obtain the working power information;
[0042] Judge whether the working power information reaches the maximum working power. If so, then
[0043] Generate an alarm signal.
[0044] The present application also provides an intelligent control system for electric radiant heating based on air monitoring. The intelligent control system for electric radiant heating based on air monitoring includes:
[0045] An information acquisition module, which is used to acquire the temperature information and basic personnel information of each room where an electric radiant heating device is installed;
[0046] A working state acquisition module, which is used to acquire the working state information of each electric radiant heating device;
[0047] A control module, which is used to control any one or more electric radiant heating devices to work according to the temperature information and basic personnel information of each room where an electric radiant heating device is installed and the working state information of each electric radiant heating device.
[0048] The intelligent control method for electric radiant heating based on air monitoring in the present application performs intelligent control of the electric radiant heating device according to the specific conditions of the room, thereby preventing the electric radiant heating device from working at a high load even when there is no one in some rooms, thus wasting electricity. Description of the Drawings
[0049] Figure 1 is a schematic flowchart of an intelligent control method for electric radiant heating based on air monitoring in an embodiment of the present application;
[0050] Figure 2 is a block diagram of the electronic device structure of an intelligent control method for electric radiant heating based on air monitoring provided in an embodiment of the present application. Detailed Embodiments
[0051] Next, the technical solutions of the present invention will be described clearly and completely in conjunction with the drawings. Apparently, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art without creative efforts based on the embodiments of the present invention belong to the protection scope of the present invention.
[0052] Figure 1 is a schematic flowchart of an intelligent control method for electric radiant heating based on air monitoring in an embodiment of the present application.
[0053] As Figure 1 shown, the intelligent control method for electric radiant heating based on air monitoring includes:
[0054] Step 1: Obtain the temperature information and basic personnel information of each room equipped with an electric radiant heating device;
[0055] Step 2: Obtain the working state information of each electric radiant heating device;
[0056] Step 3: Control any one or more electric radiant heating devices to work according to the temperature information, basic personnel information of each room equipped with an electric radiant heating device, and the working state information of each electric radiant heating device.
[0057] The intelligent control method for electric radiant heating based on air monitoring in this application performs intelligent control of the electric radiant heating device according to the specific conditions of the room, thereby preventing the electric radiant heating device from working at high load even when there is no one in some rooms, thus wasting electricity.
[0058] In this embodiment, the obtaining of the temperature information of each room equipped with an electric radiant heating device includes:
[0059] Obtain the temperature information transmitted by the temperature sensors near the electric radiant heating device in each room;
[0060] Obtain the temperature information transmitted by the temperature sensors far from the electric radiant heating device in each room.
[0061] In this embodiment, two temperature sensors can be placed in each room, one near the electric radiant heating device and the other far from the electric radiant heating device. For example, the temperature sensor far from the electric radiant heating device can be placed at the position detected by the distance detection device as the farthest from the electric radiant heating device.
[0062] In this embodiment, the obtaining of the basic personnel information of each room equipped with an electric radiant heating device includes:
[0063] Obtain the image information captured by the camera devices installed in each room;
[0064] Obtain the basic personnel information of each room according to each piece of the image information respectively.
[0065] In this embodiment, the obtaining of the basic personnel information of each room according to each piece of the image information respectively includes:
[0066] Perform the following processing on each obtained image information:
[0067] Identify the image information to obtain the face information in the image information.
[0068] In this embodiment, face information in the image information can be obtained according to the image recognition method, so as to determine whether there is anyone in the room based on the face information.
[0069] In this embodiment, since it is only necessary to determine whether there is anyone in the room, only the face contour needs to be recognized.
[0070] In this embodiment, the control of any one or more of the electric radiant heating devices to work according to the temperature information of each room equipped with an electric radiant heating device, the basic information of the personnel, and the working state information of each electric radiant heating device includes:
[0071] Obtain the room information with personnel according to the face information and clothing information;
[0072] Obtain the outdoor temperature information;
[0073] Control the electric radiant heating devices in the rooms with personnel to work according to the outdoor temperature information, the temperature information transmitted by the temperature sensors near the electric radiant heating devices in the room information with personnel, and the temperature information transmitted by the temperature sensors far from the electric radiant heating devices.
[0074] In this embodiment, the control of the electric radiant heating devices in the rooms with personnel to work according to the outdoor temperature information, the temperature information transmitted by the temperature sensors near the electric radiant heating devices in the room information with personnel, and the temperature information transmitted by the temperature sensors far from the electric radiant heating devices includes:
[0075] Perform the following control for the electric radiant heating devices in each room with personnel:
[0076] Obtain the difference between the temperature information transmitted by the temperature sensor far from the electric radiant heating device and the outdoor temperature information, and this difference is called the first temperature difference;
[0077] Judge whether the first temperature difference is less than the first preset threshold and the temperature information transmitted by the temperature sensor far from the electric radiant heating device is higher than the outdoor temperature information. If so, then
[0078] Obtain the difference between the temperature information transmitted by the temperature sensor near the electric radiant heating device and the outdoor temperature information, and this difference is called the second temperature difference;
[0079] Judge whether the second temperature difference is less than the second preset threshold and the temperature information transmitted by the temperature sensor near the electric radiant heating device is higher than the temperature information transmitted by the temperature sensor far from the electric radiant heating device. If so, then
[0080] Control the electric radiant heating device in the room to increase its power operation, thereby increasing the second temperature difference.
[0081] For example, assume that the outdoor temperature is 2 degrees, the temperature information transmitted by the temperature sensor far from the electric radiant heating device is 15 degrees, and the first preset threshold is 15 degrees. At this time, the first temperature difference is less than the first preset threshold and the temperature information transmitted by the temperature sensor far from the electric radiant heating device is higher than the outdoor temperature information.
[0082] Obtain the difference between the temperature information transmitted by the temperature sensor close to the electric radiant heating device and the outdoor temperature information. In this embodiment, the temperature information transmitted by the temperature sensor close to the electric radiant heating device is 25 degrees, and the second preset threshold is 25 degrees. Determine that the second temperature difference is less than the second preset threshold and the temperature information transmitted by the temperature sensor close to the electric radiant heating device is higher than the temperature information transmitted by the temperature sensor far from the electric radiant heating device. At this time, control the electric radiant heating device in the room to increase its power operation, thereby increasing the second temperature difference.
[0083] In this case, it indicates that due to the cold outdoors, the indoor temperature, especially the temperature in the place far from the electric radiant heating device, has not reached the expected temperature, resulting in the room still being relatively cold. Therefore, the working power should be increased to raise the indoor temperature.
[0084] In this embodiment, before controlling the electric radiant heating device in the room to increase its power operation, thereby increasing the second temperature difference, the step of controlling the electric radiant heating device in the room with people to operate according to the outdoor temperature information, the temperature information transmitted by the temperature sensor close to the electric radiant heating device in the room with people, and the temperature information transmitted by the temperature sensor far from the electric radiant heating device further includes:
[0085] Obtain the temperature limit value;
[0086] Judge whether the temperature information transmitted by the temperature sensor close to the electric radiant heating device and the outdoor temperature information exceed the temperature limit value. If so,
[0087] Generate an alarm signal.
[0088] In some cases, although the temperature does not meet the conditions, in fact, the electric radiant heating device may have reached a relatively high temperature, but due to the problem of unsmooth temperature conduction, the temperature cannot be effectively utilized. At this time, if the temperature is increased, it may cause damage to the electric radiant heating device or fire. Therefore, if the indoor temperature does not meet the requirements when exceeding the temperature limit value, an alarm process is carried out.
[0089] In this embodiment, the control of the electric radiant heating device in the room with people according to the outdoor temperature information, the temperature information transmitted by the temperature sensors near and far from the electric radiant heating device in the room information with people further includes:
[0090] Perform the following control for the electric radiant heating device in each room with people:
[0091] Obtain the difference between the temperature information transmitted by the temperature sensor far from the electric radiant heating device and the outdoor temperature information, and this difference is called the first temperature difference;
[0092] Judge whether the first temperature difference is less than the first preset threshold. If not, then
[0093] Obtain the difference between the temperature information transmitted by the temperature sensor close to the electric radiant heating device and the outdoor temperature information, and this difference is called the second temperature difference;
[0094] Judge whether the second temperature difference is less than the second preset threshold. If not, then
[0095] Obtain the working state of the electric radiant heating device. If the working state is the heating state, then
[0096] Obtain the working power information;
[0097] Judge whether the working power information reaches the maximum working power. If so, then
[0098] Generate an alarm signal.
[0099] In some cases, it indicates that even if the electric radiant heating device is working at the maximum working power, the temperature outside the house is relatively low, which may be due to the damage of the electric radiant heating device. Therefore, an alarm process is carried out.
[0100] This application also provides an intelligent control system for electric radiant heating based on air monitoring. The intelligent control system for electric radiant heating based on air monitoring includes an information acquisition module, a working state acquisition module, and a control module. Among them,
[0101] The information acquisition module is used to acquire the temperature information and basic personnel information of each room equipped with an electric radiant heating device;
[0102] The working state acquisition module is used to acquire the working state information of each electric radiant heating device;
[0103] The control module is used to control any one or more of the electric radiant heating devices to work according to the temperature information of each room equipped with an electric radiant heating device, the basic personal information, and the working status information of each electric radiant heating device.
[0104] In this embodiment, the electric radiant heating device may be an electric radiant heating tube, and the number of electric radiant heating tubes in each room may be multiple.
[0105] Figure 2 It is a block diagram of the structure of an electronic device provided by one or more embodiments of the present invention.
[0106] As Figure 2 shown, the present application also discloses an electronic device, including: a processor, a communication interface, a memory, and a communication bus. Among them, the processor, the communication interface, and the memory complete mutual communication through the communication bus; a computer program is stored in the memory. When the computer program is executed by the processor, the processor executes the steps of the intelligent control method for electric radiant heating based on air monitoring.
[0107] The present application also provides a computer-readable storage medium, which stores a computer program executable by an electronic device. When the computer program runs on the electronic device, it can implement the steps of the intelligent control method for electric radiant heating based on air monitoring.
[0108] The communication bus mentioned in the above electronic device may be a Peripheral Component Interconnect (PCI) bus, an Extended Industry Standard Architecture (EISA) bus, or the like. This communication bus can be divided into an address bus, a data bus, a control bus, etc. For the sake of simplicity, only a thick line is used to represent it in the figure, but it does not mean that there is only one bus or one type of bus.
[0109] The electronic device includes a hardware layer, an operating system layer running on the hardware layer, and an application layer running on the operating system. The hardware layer includes hardware such as a Central Processing Unit (CPU), a Memory Management Unit (MMU), and a memory. The operating system can be any one or more computer operating systems that implement the control of the electronic device through processes. For example, the Linux operating system, the Unix operating system, the Android operating system, the iOS operating system, or the Windows operating system, etc. And in the embodiments of the present invention, the electronic device may be a handheld device such as a smart phone or a tablet computer, or an electronic device such as a desktop computer or a portable computer. The embodiments of the present invention do not particularly limit this.
[0110] The execution subject of the electronic device control in the embodiments of the present invention may be an electronic device, or a functional module in the electronic device that can call and execute a program. The electronic device can obtain the firmware corresponding to the storage medium, and the firmware corresponding to the storage medium is provided by the supplier. The firmware corresponding to different storage media may be the same or different, which is not limited herein. After the electronic device obtains the firmware corresponding to the storage medium, it can write the firmware corresponding to the storage medium into the storage medium. Specifically, it burns the firmware corresponding to the storage medium into the storage medium. The process of burning the firmware into the storage medium can be implemented by the prior art and will not be elaborated in the embodiments of the present invention.
[0111] The electronic device can also obtain the reset command corresponding to the storage medium, and the reset command corresponding to the storage medium is provided by the supplier. The reset commands corresponding to different storage media may be the same or different, which is not limited herein.
[0112] At this time, the storage medium of the electronic device is the storage medium written with the corresponding firmware. The electronic device can respond to the reset command corresponding to the storage medium in the storage medium written with the corresponding firmware, so that the electronic device resets the storage medium written with the corresponding firmware according to the reset command corresponding to the storage medium. The process of resetting the storage medium according to the reset command can be implemented by the prior art and will not be elaborated in the embodiments of the present invention.
[0113] For the convenience of description, when describing the above device, various units and modules are described separately according to their functions. Of course, when implementing the present application, the functions of the various units and modules can be implemented in one or more software and / or hardware.
[0114] Those skilled in the art of this technology can understand that unless otherwise defined, all terms (including technical terms and scientific terms) used here have the same meaning as the general understanding of those of ordinary skill in the field to which the present invention belongs. It should also be understood that terms such as those defined in a general dictionary should be understood to have a meaning consistent with the meaning in the context of the prior art, and will not be interpreted with an idealized or overly formal meaning unless specifically defined.
[0115] For the method embodiments, for the sake of simple description, they are all expressed as a series of action combinations. However, those skilled in the art should know that the embodiments of the present invention are not limited by the described action sequence, because according to the embodiments of the present invention, certain steps can be performed in other sequences or simultaneously. Secondly, those skilled in the art should also know that the embodiments described in the specification are all preferred embodiments, and the actions involved are not necessarily essential to the embodiments of the present invention.
[0116] Through the description of the above embodiments, those skilled in the art can clearly understand that this application can be implemented by means of software plus a necessary general hardware platform. Based on such an understanding, the technical solution of this application, in essence, or the part that makes a contribution to the prior art, can be embodied in the form of a software product. This computer software product can be stored in a storage medium, such as ROM / RAM, magnetic disk, optical disc, etc., and includes several instructions for causing a computer device (which can be a personal computer, server, or network device, etc.) to execute the methods described in various embodiments or some parts of the embodiments of this application.
[0117] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some or all of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present invention.
Claims
1. An intelligent control method for electric radiant heating based on air monitoring, characterized in that, The intelligent control method for electric radiant heating based on air monitoring includes: Obtaining the temperature information and basic personnel information of each room equipped with an electric radiant heating device; Obtaining the working state information of each electric radiant heating device; Controlling any one or more electric radiant heating devices to work according to the temperature information, basic personnel information of each room equipped with an electric radiant heating device, and the working state information of each electric radiant heating device; The obtaining of the temperature information of each room equipped with an electric radiant heating device includes: Obtaining the temperature information transmitted by the temperature sensors near the electric radiant heating devices in each room; Obtaining the temperature information transmitted by the temperature sensors far from the electric radiant heating devices in each room; The obtaining of the basic personnel information of each room equipped with an electric radiant heating device includes: Obtaining the image information captured by the camera devices installed in each room; Respectively obtaining the basic personnel information of each room according to each piece of the image information; The respectively obtaining the basic personnel information of each room according to each piece of the image information includes: Performing the following processing on each obtained piece of image information: Identifying the image information to obtain the face information in the image information; The controlling any one or more electric radiant heating devices to work according to the temperature information, basic personnel information of each room equipped with an electric radiant heating device, and the working state information of each electric radiant heating device includes: Obtaining the room information with people according to the face information and clothing information; Obtaining the outdoor temperature information; Controlling the electric radiant heating devices in the rooms with people to work according to the outdoor temperature information, the temperature information transmitted by the temperature sensors near the electric radiant heating devices in the room information with people, and the temperature information transmitted by the temperature sensors far from the electric radiant heating devices; The controlling the electric radiant heating devices in the rooms with people to work according to the outdoor temperature information, the temperature information transmitted by the temperature sensors near the electric radiant heating devices in the room information with people, and the temperature information transmitted by the temperature sensors far from the electric radiant heating devices includes: Performing the following control on the electric radiant heating devices in each room with people: Obtaining the difference between the temperature information transmitted by the temperature sensor far from the electric radiant heating device and the outdoor temperature information, and this difference is called the first temperature difference; Judging whether the first temperature difference is less than the first preset threshold and the temperature information transmitted by the temperature sensor far from the electric radiant heating device is higher than the outdoor temperature information. If so, then Obtaining the difference between the temperature information transmitted by the temperature sensor near the electric radiant heating device and the outdoor temperature information, and this difference is called the second temperature difference; Judging whether the second temperature difference is less than the second preset threshold and the temperature information transmitted by the temperature sensor near the electric radiant heating device is higher than the temperature information transmitted by the temperature sensor far from the electric radiant heating device. If so, then Controlling the electric radiant heating device in this room to work with increased power, so as to increase the second temperature difference.
2. The intelligent control method for electric radiant heating based on air monitoring according to claim 1, wherein Before increasing the power of the electric radiant heating device in the room to work, thereby increasing the second temperature difference, the control of the electric radiant heating device in the room with people further includes, according to the outdoor temperature information, the temperature information transmitted by the temperature sensor near the electric radiant heating device in the room with people, and the temperature information transmitted by the temperature sensor far from the electric radiant heating device: Obtain the temperature limit value; Judge whether the temperature information transmitted by the temperature sensor near the electric radiant heating device and the outdoor temperature information exceed the temperature limit value. If so, then Generate an alarm signal.
3. The intelligent control method for electric radiant heating based on air monitoring according to claim 2, wherein, The control of the electric radiant heating device in the room with people further includes, according to the outdoor temperature information, the temperature information transmitted by the temperature sensor near the electric radiant heating device in the room with people, and the temperature information transmitted by the temperature sensor far from the electric radiant heating device: Control the electric radiant heating device in each room with people as follows: Obtain the difference between the temperature information transmitted by the temperature sensor far from the electric radiant heating device and the outdoor temperature information. This difference is called the first temperature difference; Judge whether the first temperature difference is less than the first preset threshold. If not, then Obtain the difference between the temperature information transmitted by the temperature sensor near the electric radiant heating device and the outdoor temperature information. This difference is called the second temperature difference; Judge whether the second temperature difference is less than the second preset threshold. If not, then Obtain the working state of the electric radiant heating device. If the working state is the heating state, then Obtain the working power information; Judge whether the working power information reaches the maximum working power. If so, then Generate an alarm signal.
4. An intelligent control system for electric radiant heating based on air monitoring, characterized in that, The intelligent control system for electric radiant heating based on air monitoring includes: An information acquisition module, which is used to acquire the temperature information and personnel basic information of each room equipped with an electric radiant heating device; A working state acquisition module, which is used to acquire the working state information of each electric radiant heating device; A control module, which is used to control any one or more electric radiant heating devices to work according to the temperature information and personnel basic information of each room equipped with an electric radiant heating device and the working state information of each electric radiant heating device; The acquisition of the temperature information of each room equipped with an electric radiant heating device includes: Obtain the temperature information transmitted by the temperature sensor near the electric radiant heating device in each room; Obtain the temperature information transmitted by the temperature sensor far from the electric radiant heating device in each room; The acquisition of the personnel basic information of each room equipped with an electric radiant heating device includes: Obtain the image information captured by the camera device arranged in each room; Respectively obtain the personnel basic information of each room according to each image information; The acquisition of the personnel basic information of each room according to each image information includes: Process each acquired image information as follows: Identify the image information to obtain the face information in the image information; Controlling any one or more of the electric radiant heating devices according to the temperature information of each room equipped with an electric radiant heating device, the basic information of the personnel, and the working state information of each electric radiant heating device includes: Obtaining room information with personnel according to the face information and clothing information; Obtaining outdoor temperature information; Controlling the electric radiant heating devices in the rooms with personnel according to the outdoor temperature information, the temperature information transmitted by the temperature sensors near the electric radiant heating devices in the room information with personnel, and the temperature information transmitted by the temperature sensors far from the electric radiant heating devices; The controlling the electric radiant heating devices in the rooms with personnel according to the outdoor temperature information, the temperature information transmitted by the temperature sensors near the electric radiant heating devices in the room information with personnel, and the temperature information transmitted by the temperature sensors far from the electric radiant heating devices includes: Performing the following control for the electric radiant heating devices in each room with personnel: Obtaining the difference between the temperature information transmitted by the temperature sensor far from the electric radiant heating device and the outdoor temperature information, and this difference is called the first temperature difference; Judging whether the first temperature difference is less than the first preset threshold and the temperature information transmitted by the temperature sensor far from the electric radiant heating device is higher than the outdoor temperature information. If so, then Obtaining the difference between the temperature information transmitted by the temperature sensor near the electric radiant heating device and the outdoor temperature information, and this difference is called the second temperature difference; Judging whether the second temperature difference is less than the second preset threshold and the temperature information transmitted by the temperature sensor near the electric radiant heating device is higher than the temperature information transmitted by the temperature sensor far from the electric radiant heating device. If so, then Controlling the electric radiant heating device in this room to work with increased power, thereby increasing the second temperature difference.
Citation Information
Patent Citations
Heating equipment control method and heating equipment
CN115013857A