Energy-saving control system of intelligent electrical equipment
By using an energy-saving control system for intelligent electrical equipment, the temperature and energy consumption of the equipment can be monitored and controlled in real time, solving the problems of energy waste and shortened lifespan of electrical equipment under different ambient temperatures, and achieving high-efficiency energy saving and reliable operation of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-10
- Publication Date
- 2026-04-17
AI Technical Summary
Existing electrical equipment suffers from energy waste and shortened equipment life when used under different ambient temperatures, especially during high-temperature spontaneous combustion and low-temperature preheating.
An energy-saving control system for intelligent electrical equipment includes an equipment monitoring unit, a data analysis unit, a difference judgment unit, a start-stop control unit, a low-temperature protection unit, and a heat dissipation control unit. This system monitors and controls equipment temperature and energy consumption in real time, and optimizes energy use through start-stop and heat dissipation measures.
It enables real-time temperature management of intelligent electrical equipment, avoiding energy waste, extending equipment life, reducing the risk of failure, and improving equipment reliability and energy-saving effect.
Smart Images

Figure CN118466636B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of energy-saving control technology, and in particular to an energy-saving control system for intelligent electrical equipment. Background Technology
[0002] Existing electrical equipment requires different temperatures during use due to varying environments. Excessive internal temperature can lead to aging of wiring and spontaneous combustion. Using a constantly open cooling system results in energy waste. Conversely, prolonged preheating in low ambient temperatures also wastes energy and reduces the equipment's lifespan. Therefore, we propose an energy-saving control system for intelligent electrical equipment. Summary of the Invention
[0003] The present invention proposes an energy-saving control system for intelligent electrical equipment to address the aforementioned shortcomings of the prior art.
[0004] To achieve the above objectives, the present invention adopts the following technical solution:
[0005] An energy-saving control system for intelligent electrical equipment includes multiple equipment monitoring units, a data analysis unit, a difference judgment unit, a start / stop control unit, a low-temperature protection unit, and a heat dissipation control unit.
[0006] Multiple device monitoring units are used to collect and monitor energy consumption data of different or multiple intelligent electrical devices within the monitoring range and the temperature generated inside the intelligent electrical devices during use in real time and effectively. At the same time, they record and classify the data and send the collected data information to the data analysis unit.
[0007] The data analysis unit is used to analyze and evaluate the energy consumption data and temperature values of the data information sent by multiple device monitoring units, and send the analyzed data information to the difference judgment unit. The data analysis unit analyzes and evaluates the reasons for the temperature rise or fall of the intelligent electrical equipment. When the analysis finds that the temperature rise is caused by the internal temperature rise of the intelligent electrical equipment, the data information is sent to the difference judgment unit.
[0008] In the process of judging the status of intelligent electrical equipment, reliability and instantaneous failure rate are set as decision indicators. The quantification process of the instantaneous failure rate indicator can be expressed by the following formula:
[0009] Where f(t) and R(t) represent the probability and density of failure, respectively. Similarly, the quantitative results of the reliability index are obtained. The statistical results of the quantitative index are used to judge the current operating status of the intelligent electrical equipment and filter out the equipment in the failure state.
[0010] The difference judgment unit is used to evaluate the reasons for the differences between the energy consumption data and temperature data after analysis by the data analysis unit, and to judge the magnitude of the difference data to determine the danger of abnormal conditions. When it is determined that the temperature rise exceeds the rated temperature and there is a risk of circuit damage due to excessive temperature, the early warning unit will issue an alarm warning and send the evaluated difference data information and the corresponding intelligent electrical equipment data information to the start-stop control unit.
[0011] The start / stop control unit is used to receive the corresponding data information sent by the difference judgment unit, and to perform start / stop control processing on the corresponding intelligent electrical equipment for high temperature heat dissipation and low temperature protection according to the judged data information, and to send the corresponding operation data information to the low temperature protection unit and the heat dissipation control unit respectively.
[0012] The low-temperature protection unit is used to receive data information sent by the start-stop control unit and control the low-temperature protection mechanism to perform low-temperature protection treatment on the internal components and circuits of the intelligent electrical equipment. After receiving the low-temperature protection command sent by the start-stop control unit, the low-temperature protection unit performs heating protection on the internal circuits of the intelligent electrical equipment, effectively avoiding the waste of time caused by excessively low temperature due to excessively long preheating time of the intelligent electrical equipment, and at the same time avoiding damage to the circuits at low temperatures.
[0013] The heat dissipation control unit is used to receive data information sent by the start / stop control unit and activate the heat dissipation and cooling mechanism to quickly dissipate heat and cool the internal components and circuits of the intelligent electrical equipment. This effectively avoids the risk of short circuits caused by aging of the internal circuits due to excessive temperature, and also effectively avoids the risk of spontaneous combustion caused by the circuit being at high temperature for a long time.
[0014] It also includes a remote control unit and a constant temperature monitoring unit. The remote control unit allows managers to remotely turn the start-stop control unit on and off from the control room.
[0015] The constant temperature monitoring unit is used to monitor and judge in real time whether the internal temperature of the intelligent electrical equipment is within the normal threshold after low temperature protection and heat dissipation treatment. When the internal temperature of the intelligent electrical equipment is within the normal value, the constant temperature monitoring unit sends a constant temperature command to the start-stop control unit, which then stops the heat dissipation and heating work.
[0016] Furthermore, it also includes an environmental monitoring unit, a parameter input unit, a database, and an early warning unit. The environmental monitoring unit is used to monitor and process the temperature and humidity of the current working environment of the intelligent electrical equipment in real time, and send the monitored and collected data information to the data analysis unit.
[0017] The parameter input unit is used to input and process the maximum temperature, minimum temperature and normal temperature values that different models of intelligent electrical equipment can withstand, and send the input data to the database.
[0018] The database is used to uniformly store and process the data information input by the parameter input unit, so that the data analysis unit can retrieve and compare it.
[0019] The early warning unit is used to receive abnormal data information sent by the difference judgment unit and to perform abnormal warning alarm processing.
[0020] Furthermore, the environmental monitoring unit includes a humidity detection module, a temperature detection module, a harmful gas detection module, and an air quality detection module;
[0021] The humidity detection module includes a humidity sensor, which is used to detect and process the humidity and dryness of the working environment of the intelligent electrical equipment in real time, and send the detected data to the temperature detection module and the data analysis unit respectively. Since humidity can cause short circuits and static electricity in precision components, it can also cause equipment damage and fire. Therefore, it is necessary to monitor and process the humidity in the working environment of the intelligent electrical equipment in real time.
[0022] The temperature detection module includes a temperature sensor, which is used to detect and process the temperature status of the working environment of the intelligent electrical equipment in real time, and send the detected data to the harmful gas detection module and the data analysis unit respectively.
[0023] The harmful gas detection module includes a gas detector, which is used to monitor and collect data on the content of carbon monoxide, carbon dioxide, sulfur dioxide, ammonia and hydrogen in the working environment of the intelligent electrical equipment, and send the detected data to the air quality detection module and the data analysis unit.
[0024] The air quality detection module includes an air quality monitor, which is used to detect and process the content of PM1.0, PM2.5 and PM10 in the working environment of the intelligent electrical equipment, and send the detected data to the data analysis unit. The generation of PM1.0, PM2.5 and PM10 not only harms the human body but also affects precision equipment.
[0025] Furthermore, the low-temperature protection unit includes a low-temperature analysis module and a temperature regulation module. The low-temperature analysis module is used to receive relevant data information sent by the start-stop control unit, and to perform analysis and judgment processing of the low-temperature state. At the same time, it sends the analyzed low-temperature state data information to the temperature regulation module.
[0026] The heating regulation module is used to receive low temperature cause data information sent by the low temperature analysis module, control the heating device inside the intelligent electrical equipment to perform heating treatment, and send the heating data information to the constant temperature monitoring unit.
[0027] Furthermore, the heat dissipation control unit includes a high temperature analysis module and a cooling and heat dissipation control module. The high temperature analysis module is used to receive data information sent by the start-stop control unit, and to perform analysis and judgment processing of the high temperature state. At the same time, it sends the analyzed high temperature state data information to the cooling and heat dissipation control module.
[0028] The cooling and heat dissipation control module is used to receive temperature data information analyzed by the high temperature analysis module, control the cooling and heat dissipation device inside the intelligent electrical equipment to perform cooling and heat dissipation treatment, and send the cooling and heat dissipation data information to the constant temperature monitoring unit.
[0029] Furthermore, the output terminals of the multiple device monitoring units are respectively connected to the input terminals of the data analysis unit; the output terminal of the environmental monitoring unit is connected to the input terminal of the data analysis unit; the output terminal of the parameter input unit is connected to the input terminal of the database; the database and the data analysis unit are bidirectionally connected; the output terminal of the data analysis unit is connected to the input terminal of the difference judgment unit; the output terminal of the difference judgment unit is respectively connected to the input terminals of the early warning unit, the remote control unit, and the start / stop control unit; the output terminal of the remote control unit is connected to the input terminal of the start / stop control unit; the output terminal of the start / stop control unit is respectively connected to the input terminals of the low temperature protection unit and the heat dissipation control unit; the output terminals of the heat dissipation control unit and the low temperature protection unit are respectively connected to the input terminal of the constant temperature monitoring unit; and the output terminal of the constant temperature monitoring unit is connected to the input terminal of the start / stop control unit.
[0030] Furthermore, the output terminal of the humidity detection module is connected to the input terminals of the temperature detection module and the data analysis unit, respectively; the output terminal of the temperature detection module is connected to the input terminals of the harmful gas detection module and the data analysis unit, respectively; the output terminal of the harmful gas detection module is connected to the input terminals of the data analysis unit and the air quality detection module, respectively; and the output terminal of the air quality detection module is connected to the input terminal of the data analysis unit.
[0031] Furthermore, the output terminal of the start / stop control unit is connected to the input terminal of the low-temperature analysis module, the output terminal of the low-temperature analysis module is connected to the input terminal of the temperature rise regulation module, and the output terminal of the temperature rise regulation module is connected to the input terminal of the constant temperature monitoring unit.
[0032] Furthermore, the output terminal of the start / stop control unit is connected to the input terminal of the high temperature analysis module, the output terminal of the high temperature analysis module is connected to the input terminal of the cooling and heat dissipation control module, and the output terminal of the cooling and heat dissipation control module is connected to the input terminal of the constant temperature monitoring unit.
[0033] Compared with existing technologies, the beneficial effects of this invention are:
[0034] This invention effectively monitors and processes the real-time operating status of intelligent electrical equipment by installing an equipment detection unit, an environmental monitoring unit, a data analysis unit, a difference judgment unit, a start / stop control unit, a low-temperature protection unit, a heat dissipation control unit, and a constant temperature monitoring unit. This allows the invention to not only monitor and analyze the internal temperature of the intelligent electrical equipment, but also to perform heating and rapid cooling processes, effectively controlling energy consumption and ensuring the service life of the intelligent electrical equipment. Attached Figure Description
[0035] Figure 1 This is an overall system block diagram of an energy-saving control system for intelligent electrical equipment proposed in this invention;
[0036] Figure 2 This is a block diagram of the environmental monitoring unit of an energy-saving control system for intelligent electrical equipment proposed in this invention;
[0037] Figure 3 This is a block diagram of a low-temperature protection unit in an energy-saving control system for intelligent electrical equipment proposed in this invention.
[0038] Figure 4 This is a block diagram of the heat dissipation control unit of an energy-saving control system for intelligent electrical equipment proposed in this invention. Detailed Implementation
[0039] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0040] In the description of this invention, it should be understood that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," and "counterclockwise," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.
[0041] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include one or more of the stated features. In the description of this invention, "a plurality of" means two or more, unless otherwise explicitly specified. Furthermore, the terms "installed," "connected," and "linked" should be interpreted broadly; for example, they may refer to a fixed connection, a detachable connection, or an integral connection; they may refer to a mechanical connection or an electrical connection; they may refer to a direct connection or an indirect connection through an intermediate medium; and they may refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances. The invention will now be described in further detail with reference to the accompanying drawings.
[0042] Example 1
[0043] Reference Figure 1 An energy-saving control system for intelligent electrical equipment includes multiple equipment monitoring units, data analysis units, difference judgment units, start / stop control units, low-temperature protection units, and heat dissipation control units;
[0044] Multiple device monitoring units are used to collect and monitor energy consumption data of different or multiple intelligent electrical devices within the monitoring range and the temperature generated inside the intelligent electrical devices during use in real time. At the same time, they record and classify the data and send the collected data information to the data analysis unit.
[0045] The data analysis unit is used to analyze and evaluate the energy consumption data and temperature values of the data information sent by multiple device monitoring units, and send the analyzed data information to the difference judgment unit. The data analysis unit analyzes and evaluates the reasons for the temperature rise or fall of the intelligent electrical equipment. When the analysis finds that the temperature rise is caused by the internal temperature rise of the intelligent electrical equipment, the data information is sent to the difference judgment unit.
[0046] In the process of judging the status of intelligent electrical equipment, reliability and instantaneous failure rate are set as decision indicators. The quantification process of the instantaneous failure rate indicator can be expressed by the following formula:
[0047] Where f(t) and R(t) represent the probability and density of failure, respectively. Similarly, the quantitative results of the reliability index are obtained. The statistical results of the quantitative index are used to judge the current operating status of the intelligent electrical equipment and filter out the equipment in the failure state.
[0048] The difference judgment unit is used to evaluate the reasons for the differences between energy consumption data and temperature data after analysis by the data analysis unit. At the same time, it judges the magnitude of the difference data to determine the danger of abnormal conditions. When it is determined that the temperature rise exceeds the rated temperature and there is a risk of circuit damage due to excessive temperature, the early warning unit will issue an alarm warning and send the evaluated difference data information and the corresponding intelligent electrical equipment data information to the start-stop control unit.
[0049] The start-stop control unit is used to receive the corresponding data information sent by the difference judgment unit, and to perform start-stop control processing on the corresponding intelligent electrical equipment for high temperature heat dissipation and low temperature protection based on the judged data information, and to send the corresponding operation data information to the low temperature protection unit and the heat dissipation control unit respectively.
[0050] The low-temperature protection unit is used to receive data information sent by the start-stop control unit and control the low-temperature protection mechanism to perform low-temperature protection treatment on the internal components and circuits of the intelligent electrical equipment. After receiving the low-temperature protection command sent by the start-stop control unit, the low-temperature protection unit will perform heating protection on the internal circuits of the intelligent electrical equipment, effectively avoiding the waste of time caused by excessively low temperature due to excessively long preheating time of the intelligent electrical equipment, and at the same time avoiding damage to the circuit at low temperature.
[0051] The heat dissipation control unit receives data from the start / stop control unit and activates the heat dissipation and cooling mechanism to quickly dissipate heat and cool the internal components and circuits of the intelligent electrical equipment. This effectively prevents the internal circuits of the intelligent electrical equipment from aging due to excessive temperature, which could cause short circuits. At the same time, it also effectively prevents the risk of spontaneous combustion caused by the circuit being exposed to high temperatures for a long time.
[0052] Reference Figure 1 The invention also includes an environmental monitoring unit, a parameter input unit, a database, and an early warning unit. The environmental monitoring unit is used to monitor and process the temperature and humidity of the current working environment of the intelligent electrical equipment in real time, and send the collected data to the data analysis unit.
[0053] The parameter input unit is used to input and process the maximum temperature, minimum temperature and normal temperature values that different models of intelligent electrical equipment can withstand, and send the input data to the database.
[0054] The database is used to uniformly store and process the data information input by the parameter input unit, making it convenient for the data analysis unit to retrieve and compare it.
[0055] The early warning unit is used to receive abnormal data information sent by the difference judgment unit and to perform abnormal warning and alarm processing.
[0056] Reference Figure 1 The invention also includes a remote control unit and a constant temperature monitoring unit. The remote control unit facilitates the management personnel to remotely turn the start-stop control unit on and off from the control room.
[0057] The constant temperature monitoring unit is used to monitor and judge in real time whether the internal temperature of the intelligent electrical equipment is within the normal threshold after low temperature protection and heat dissipation treatment. When the internal temperature of the intelligent electrical equipment is within the normal value, the constant temperature monitoring unit sends a constant temperature command to the start-stop control unit, which then stops the heat dissipation and heating work.
[0058] Reference Figure 2 In this invention, the environmental monitoring unit includes a humidity detection module, a temperature detection module, a harmful gas detection module, and an air quality detection module.
[0059] The humidity detection module includes a humidity sensor, which is used to detect and process the humidity and dryness of the working environment in which the intelligent electrical equipment is located in real time, and sends the detected data to the temperature detection module and the data analysis unit respectively. Since humidity can cause short circuits and static electricity in precision components, and can also cause equipment damage and fire, it is necessary to monitor and process the humidity in the working environment of the intelligent electrical equipment in real time.
[0060] The temperature detection module includes a temperature sensor, which is used to detect and process the temperature status of the working environment of the intelligent electrical equipment in real time, and sends the detected data to the harmful gas detection module and the data analysis unit respectively.
[0061] The hazardous gas detection module includes a gas detector, which is used to monitor and collect data on the levels of carbon monoxide, carbon dioxide, sulfur dioxide, ammonia, and hydrogen in the working environment of the intelligent electrical equipment, and sends the detected data to the air quality detection module and the data analysis unit.
[0062] The air quality detection module includes an air quality monitor, which is used to detect and process the content of PM1.0, PM2.5 and PM10 in the working environment of intelligent electrical equipment, and send the detected data to the data analysis unit. The generation of PM1.0, PM2.5 and PM10 not only harms the human body, but also affects precision equipment.
[0063] Reference Figure 3 In this invention, the low-temperature protection unit includes a low-temperature analysis module and a temperature regulation module. The low-temperature analysis module is used to receive relevant data information sent by the start-stop control unit, and to perform analysis and judgment processing of the low-temperature state. At the same time, it sends the analyzed low-temperature state data information to the temperature regulation module.
[0064] The temperature control module receives low-temperature cause data from the low-temperature analysis module, controls the internal temperature control device of the intelligent electrical equipment to perform temperature rise treatment, and sends the temperature rise data to the constant temperature monitoring unit.
[0065] Reference Figure 4 In this invention, the heat dissipation control unit includes a high temperature analysis module and a cooling and heat dissipation control module. The high temperature analysis module is used to receive data information sent by the start-stop control unit, and to perform analysis and judgment processing of the high temperature state. At the same time, it sends the analyzed high temperature state data information to the cooling and heat dissipation control module.
[0066] The cooling and heat dissipation control module receives temperature data from the high-temperature analysis module, controls the cooling and heat dissipation devices inside the intelligent electrical equipment to perform cooling and heat dissipation treatment, and sends the cooling and heat dissipation data to the constant temperature monitoring unit.
[0067] Reference Figure 1 In this invention, the output terminals of multiple device monitoring units are respectively connected to the input terminals of a data analysis unit; the output terminal of an environmental monitoring unit is connected to the input terminal of a data analysis unit; the output terminal of a parameter input unit is connected to the input terminal of a database; a bidirectional connection is established between the database and the data analysis unit; the output terminal of the data analysis unit is connected to the input terminal of a difference judgment unit; the output terminal of the difference judgment unit is respectively connected to the input terminals of an early warning unit, a remote control unit, and a start-stop control unit; the output terminal of the remote control unit is connected to the input terminal of the start-stop control unit; the output terminal of the start-stop control unit is respectively connected to the input terminals of a low-temperature protection unit and a heat dissipation control unit; the output terminals of the heat dissipation control unit and the low-temperature protection unit are respectively connected to the input terminal of a constant temperature monitoring unit; and the output terminal of the constant temperature monitoring unit is connected to the input terminal of the start-stop control unit.
[0068] Reference Figure 2In this invention, the output terminal of the humidity detection module is connected to the input terminals of the temperature detection module and the data analysis unit, respectively; the output terminal of the temperature detection module is connected to the input terminals of the harmful gas detection module and the data analysis unit, respectively; the output terminal of the harmful gas detection module is connected to the input terminals of the data analysis unit and the air quality detection module, respectively; and the output terminal of the air quality detection module is connected to the input terminal of the data analysis unit.
[0069] Reference Figure 3 In this invention, the output terminal of the start / stop control unit is connected to the input terminal of the low-temperature analysis module, the output terminal of the low-temperature analysis module is connected to the input terminal of the temperature regulation module, and the output terminal of the temperature regulation module is connected to the input terminal of the constant temperature monitoring unit.
[0070] Reference Figure 4 In this invention, the output terminal of the start / stop control unit is connected to the input terminal of the high temperature analysis module, the output terminal of the high temperature analysis module is connected to the input terminal of the cooling and heat dissipation control module, and the output terminal of the cooling and heat dissipation control module is connected to the input terminal of the constant temperature monitoring unit.
[0071] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.
Claims
1. An energy-saving control system for intelligent electrical equipment, characterized in that, It includes multiple equipment monitoring units, data analysis units, difference judgment units, start / stop control units, low temperature protection units, and heat dissipation control units; Multiple device monitoring units are used to collect and monitor energy consumption data of different or multiple intelligent electrical devices within the monitoring range and the temperature generated inside the intelligent electrical devices during use in real time and effectively. At the same time, they record and classify the data and send the collected data information to the data analysis unit. The data analysis unit is used to analyze and evaluate energy consumption data and temperature values of data sent through multiple device monitoring units. In the process of judging the status of intelligent electrical equipment, reliability and instantaneous failure rate are set as decision indicators. The quantification process of the instantaneous failure rate indicator can be expressed by the following formula: ,in and These represent the probability and density of failures, respectively. The statistical results of the comprehensive quantitative indicators are used to determine the current operating status of the intelligent electrical equipment and filter out equipment in a faulty state. The data information of the filtered normal intelligent electrical equipment is sent to the difference judgment unit. The difference judgment unit is used to evaluate the reasons for the differences between the energy consumption data and temperature data after analysis by the data analysis unit, and at the same time, to judge the magnitude of the difference data to determine the danger of abnormal conditions, and send the judged and evaluated difference data information and the corresponding data information of the intelligent electrical equipment to the start-stop control unit. The start / stop control unit is used to receive the corresponding data information sent by the difference judgment unit, and to perform start / stop control processing on the corresponding intelligent electrical equipment for high temperature heat dissipation and low temperature protection according to the judged data information, and to send the corresponding operation data information to the low temperature protection unit and the heat dissipation control unit respectively. The low-temperature protection unit is used to receive data information sent by the start / stop control unit and control the low-temperature protection mechanism to perform low-temperature protection treatment on the internal components and circuits of the intelligent electrical equipment. The heat dissipation control unit is used to receive data information sent by the start / stop control unit and activate the heat dissipation and cooling mechanism to quickly dissipate heat and cool the internal components and circuits of the intelligent electrical equipment. It also includes a remote control unit and a constant temperature monitoring unit. The remote control unit allows managers to remotely turn the start-stop control unit on and off from the control room. The constant temperature monitoring unit is used to monitor and judge in real time whether the internal temperature of the intelligent electrical equipment is within the normal threshold state after low temperature protection and heat dissipation treatment.
2. The energy-saving control system for intelligent electrical equipment according to claim 1, characterized in that, It also includes an environmental monitoring unit, a parameter input unit, a database, and an early warning unit; The environmental monitoring unit is used to monitor and process the temperature and humidity of the current working environment of the intelligent electrical equipment in real time, and send the collected data to the data analysis unit. The parameter input unit is used to input and process the maximum temperature, minimum temperature and normal temperature values that different models of intelligent electrical equipment can withstand, and send the input data to the database. The database is used to uniformly store and process the data information input by the parameter input unit, so that the data analysis unit can retrieve and compare it. The early warning unit is used to receive abnormal data information sent by the difference judgment unit and to perform abnormal warning alarm processing.
3. The energy-saving control system for intelligent electrical equipment according to claim 2, characterized in that, The environmental monitoring unit includes a humidity detection module, a temperature detection module, a harmful gas detection module, and an air quality detection module; The humidity detection module is used to detect and process the humidity and dryness of the working environment of the intelligent electrical equipment in real time, and send the detected data to the temperature detection module and the data analysis unit respectively. The temperature detection module is used to detect and process the temperature status of the working environment of the intelligent electrical equipment in real time, and send the detected data to the harmful gas detection module and the data analysis unit respectively. The harmful gas detection module is used to monitor and collect data on the content of carbon monoxide, carbon dioxide, sulfur dioxide, ammonia and hydrogen in the working environment of the intelligent electrical equipment, and send the detected data to the air quality detection module and the data analysis unit. The air quality detection module is used to detect and process the content of PM1.0, PM2.5 and PM10 in the working environment of the intelligent electrical equipment, and send the detected data to the data analysis unit.
4. The energy-saving control system for intelligent electrical equipment according to claim 1, characterized in that, The low-temperature protection unit includes a low-temperature analysis module and a temperature regulation module. The low-temperature analysis module is used to receive relevant data information sent by the start-stop control unit, and to analyze and judge the low-temperature state. At the same time, it sends the analyzed low-temperature state data information to the temperature regulation module. The heating regulation module is used to receive low temperature cause data information sent by the low temperature analysis module, control the heating device inside the intelligent electrical equipment to perform heating treatment, and send the heating data information to the constant temperature monitoring unit.
5. The energy-saving control system for intelligent electrical equipment according to claim 1, characterized in that, The heat dissipation control unit includes a high temperature analysis module and a cooling and heat dissipation control module. The high temperature analysis module is used to receive data information sent by the start-stop control unit, and to analyze and judge the high temperature state. At the same time, it sends the analyzed high temperature state data information to the cooling and heat dissipation control module. The cooling and heat dissipation control module is used to receive temperature data information analyzed by the high temperature analysis module, control the cooling and heat dissipation device inside the intelligent electrical equipment to perform cooling and heat dissipation treatment, and send the cooling and heat dissipation data information to the constant temperature monitoring unit.
6. The energy-saving control system for intelligent electrical equipment according to claim 2, characterized in that, The output terminals of multiple device monitoring units are respectively connected to the input terminals of the data analysis unit. The output terminal of the environmental monitoring unit is connected to the input terminal of the data analysis unit. The output terminal of the parameter input unit is connected to the input terminal of the database. The database and the data analysis unit are bidirectionally connected. The output terminal of the data analysis unit is connected to the input terminal of the difference judgment unit. The output terminal of the difference judgment unit is respectively connected to the input terminals of the early warning unit, the remote control unit, and the start-stop control unit. The output terminal of the remote control unit is connected to the input terminal of the start-stop control unit. The output terminal of the start-stop control unit is respectively connected to the input terminals of the low temperature protection unit and the heat dissipation control unit. The output terminals of the heat dissipation control unit and the low temperature protection unit are respectively connected to the input terminal of the constant temperature monitoring unit. The output terminal of the constant temperature monitoring unit is connected to the input terminal of the start-stop control unit.
7. The energy-saving control system for intelligent electrical equipment according to claim 3, characterized in that, The output of the humidity detection module is connected to the input of the temperature detection module and the data analysis unit, respectively. The output of the temperature detection module is connected to the input of the harmful gas detection module and the data analysis unit, respectively. The output of the harmful gas detection module is connected to the input of the data analysis unit and the air quality detection module, respectively. The output of the air quality detection module is connected to the input of the data analysis unit.
8. The energy-saving control system for intelligent electrical equipment according to claim 1, characterized in that, The output terminal of the start / stop control unit is connected to the input terminal of the low temperature analysis module, the output terminal of the low temperature analysis module is connected to the input terminal of the temperature rise regulation module, and the output terminal of the temperature rise regulation module is connected to the input terminal of the constant temperature monitoring unit.
9. The energy-saving control system for intelligent electrical equipment according to claim 3, characterized in that, The output terminal of the start / stop control unit is connected to the input terminal of the high temperature analysis module, the output terminal of the high temperature analysis module is connected to the input terminal of the cooling and heat dissipation control module, and the output terminal of the cooling and heat dissipation control module is connected to the input terminal of the constant temperature monitoring unit.
Citation Information
Patent Citations
Electric equipment operation environment control method and electric equipment operation environment control system
CN104896693A
Operation energy consumption monitoring device for transformer substation
CN113964939A
Temperature control management system for central battery box of commercial vehicle
CN116031542A