Intelligent energy-saving control system of electrical equipment
By constructing the working environment and actual working model of electrical equipment, using Starlink to transmit real-time information and setting verification gates, and combining the electricity price energy-saving model to adjust the load, the problem of vulnerability of traditional electrical equipment energy-saving control systems is solved, and safe and reliable energy-saving control and data transmission are achieved.
Patent Information
- Application Number
- CN202510712793.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-30
- Publication Date
- 2025-10-17
AI Technical Summary
The energy-saving control systems of traditional electrical equipment are easily attacked by malicious networks, resulting in the inability to accurately obtain load information and effectively perform energy-saving control, which increases the company's energy consumption costs.
Build the working environment model and actual working model of electrical equipment, transmit real-time working information through the Starlink chain, set the Starlink verification gate during the transmission process to ensure data security, and adjust the load of electrical equipment in combination with the electricity price energy-saving model.
It achieves safe and reliable energy-saving control of electrical equipment, reduces the energy consumption cost of enterprises, and improves the security and energy-saving effect of data transmission.
Smart Images

Figure CN120802701A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of energy saving, and particularly relates to a wisdom energy-saving control system for electrical equipment. BACKGROUND
[0002] With the fluctuation of energy prices and the intensification of market competition, the operating cost pressure of enterprises has significantly increased. The high energy consumption of traditional electrical equipment has become a bottleneck restricting profitability. In the industrial field, the electricity consumption accounts for more than half of the total social energy consumption. Through wisdom energy-saving control, the energy consumption per unit of output value can be effectively reduced, and the energy saving of enterprises can be realized. At present, the energy-saving control system of electrical equipment is easily affected by malicious networks, so that the load information of electrical equipment cannot be understood, and thus energy-saving control cannot be realized or error occurs, which leads to the inability of enterprises to effectively save energy in the energy consumption of electrical equipment. SUMMARY
[0003] The present application aims to provide a wisdom energy-saving control system for electrical equipment to solve the problems in the background art.
[0004] To achieve the above-mentioned purpose, the present application provides the following technical scheme: a wisdom energy-saving control system for electrical equipment, comprising: A first construction module is used to acquire a plurality of electrical equipment that needs to be controlled, collect the basic information of the electrical equipment, and construct the working environment model of the plurality of electrical equipment according to the basic information; A second construction module is connected with the first construction module and is used to construct an actual working model, collect the real-time working information of the electrical equipment, transmit the real-time working information to the actual working model, and construct a comprehensive model by overlapping the actual working model and the working environment model; An energy-saving control module is connected with the second construction module and is used to construct an electricity price energy-saving model, load the electricity price energy-saving model in the working environment model, determine the equipment to be adjusted, and perform load adjustment.
[0005] In a preferred embodiment, the first construction module comprises: An acquisition unit is used to acquire a plurality of electrical equipment that needs to be controlled, collect the standard load information, network address information, and equipment type information of the electrical equipment as basic information; A model construction unit is used to construct a working environment model of the plurality of electrical equipment in three dimensions according to the basic information.
[0006] In a preferred embodiment, the second construction module comprises: A three-dimensional construction module is used to construct and arrange the electrical equipment in three dimensions according to the network address information to obtain a working model, and configure a star chain corresponding to the working model to obtain an actual working model; The sending establishment unit is configured to construct a star-ray packet corresponding to the network address information of the electrical equipment; The establishment unit is configured to establish a channel area between the electrical equipment and the star-ray chain; The transmission unit is configured to collect real-time working information of the electrical equipment, wherein the real-time working information includes real-time load information and real-time network address information, and store the real-time working information in the star-ray for transmission to the actual working model; The coincidence unit is configured to coincide the actual working model with the working environment model to obtain a comprehensive model.
[0007] In a preferred embodiment, the three-dimensional construction module comprises: The device model construction unit is configured to image mark the electrical equipment to obtain icons, and arrange the icons according to the network address information to obtain a working model; The receiving model construction unit is configured to configure corresponding star points corresponding to the icons in the working model, select a shooting point, connect all the star points with the shooting point in a transmitting manner to obtain a star-ray chain, and set the working model with the star-ray chain as an actual working model.
[0008] In a preferred embodiment, the sending establishment unit comprises: The monitoring setting unit is configured to set monitoring points corresponding to the electrical equipment, and the monitoring points are used to collect real-time working information of the electrical equipment; The sending construction unit is configured to set a plurality of sending packets corresponding to the monitoring points of all the electrical equipment, set a plurality of guide packets, and connect all the single sending packets of the electrical equipment with the single guide packets in a transmitting manner to obtain a star-ray packet, obtain a plurality of star-ray packets through the plurality of sending packets corresponding to the plurality of monitoring points and the plurality of guide packets, and arrange the plurality of star-ray packets in sequence.
[0009] In a preferred embodiment, the establishment unit comprises: The transmission setting unit is configured to determine a transmission range between the star-ray packet and the star-ray chain, set a transmission route between the guide packet and the shooting point and a transmission route between the sending packet and the corresponding star point in the transmission range, and obtain a plurality of transmission lines in the transmission range; The channel setting unit is configured to fix the positions between the plurality of transmission lines, and set a plurality of star-ray verification doors corresponding to the plurality of transmission lines in the transmission range, wherein the star-ray verification door is composed of a plurality of star-ray sub-doors, the plurality of star-ray sub-doors are respectively arranged on different transmission routes, the plurality of star-ray sub-doors are located at the same positions as the sending packets and the guide packets in the star-ray packet, the plurality of star-ray sub-doors are respectively used to control the opening and closing of the corresponding transmission routes, the plurality of star-ray sub-doors in the star-ray verification door are associated with each other, and the transmission range with the star-ray verification door set is taken as a channel area.
[0010] In a preferred embodiment, the transmission unit comprises: a real-time acquisition unit for acquiring real-time working information of the electrical equipment through the monitoring points; a real-time transmission unit for sequentially placing a plurality of real-time working information of the electrical equipment in the same time period in corresponding sending packets in the arrangement order of the star radiation packets, and transmitting the star radiation packets loaded with the real-time working information of the electrical equipment according to the corresponding transmission lines; a verification unit for verifying the sending packets through the star radiation verification gate during the transmission, and closing the star radiation sub-gates on the transmission line where the abnormal packet is located if the sending packet deviates from the transmission line or the data in the sending packet changes, and closing the remaining star radiation sub-gates in the star radiation verification gate through the star radiation sub-gate, extracting the data of the abnormal packet in the previous star radiation verification gate for replacement, and then opening the star radiation verification gate to continue the transmission; a receiving unit for continuously transmitting the real-time working information of the electrical equipment, and confirming the receiving and storing of the sending packet corresponding to the star point in the actual working model when the guide packet coincides with the radiation point.
[0011] In a preferred embodiment, the energy-saving control module comprises: a power price acquisition unit for acquiring power price fluctuation information, and constructing a power price energy-saving model according to the power price fluctuation information; a loading unit for loading the power price energy-saving model in the working environment model in the comprehensive model, and classifying the electrical equipment into core equipment and edge equipment; a simulation unit for taking the edge equipment as a to-be-adjusted equipment, and adjusting the to-be-adjusted equipment through the power price energy-saving model.
[0012] In the above technical solution, the present application provides technical effects and advantages: The present application sets a plurality of star radiation verification gates in the transmission range corresponding to a plurality of transmission lines, the star radiation verification gate is composed of a plurality of star radiation sub-gates, the plurality of star radiation sub-gates are respectively arranged on different transmission lines, the plurality of star radiation sub-gates are located in the same position as the sending packet and the guide packet in the star radiation packet, the plurality of star radiation sub-gates are respectively used for controlling the opening and closing of the corresponding transmission line, the plurality of star radiation sub-gates in the star radiation verification gate are associated with each other, the transmission range where the star radiation verification gate is set is taken as a channel area, the star radiation sub-gate can control the opening and closing of the corresponding transmission line and can also be used for temporarily storing the real-time working information passing through, so that when the subsequent star radiation sub-gate verifies the abnormal sending packet, the data in the previous star radiation sub-gate can be acquired for retransmission, and the transmission data security is guaranteed. BRIEF DESCRIPTION OF DRAWINGS
[0013] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments. Obviously, the drawings described below are only some embodiments of the present application, and other drawings can also be obtained by those skilled in the art based on these drawings.
[0014] Figure 1 The system block diagram of the present application. DETAILED DESCRIPTION
[0015] In order to make the objects, technical solutions and advantages of the embodiments of the present application clearer, the following will combine the drawings in the embodiments of the present application to clearly and completely describe the technical solutions in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, not all. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the protection scope of the present application.
[0016] Embodiment 1, please refer to Figure 1 The intelligent energy-saving control system of the electrical equipment described in the present embodiment comprises: A first construction module is configured to acquire a plurality of electrical equipment to be controlled, collect basic information of the electrical equipment, and construct a working environment model of each of the electrical equipment according to the basic information. A second construction module is connected with the first construction module and configured to construct an actual working model, collect real-time working information of the electrical equipment and transmit the real-time working information to the actual working model, and construct a comprehensive model by overlapping the actual working model and the working environment model. An energy-saving control module is connected with the second construction module and configured to construct an electricity price energy-saving model, load the electricity price energy-saving model in the working environment model, determine the equipment to be adjusted, and perform load adjustment. In one embodiment, the first construction module comprises: A collection unit is configured to acquire a plurality of electrical equipment to be controlled, and collect standard load information, network address information and equipment type information of the electrical equipment as basic information. A model construction unit is configured to construct a working environment model of each of the electrical equipment according to the basic information. It should be noted that the plurality of electrical equipment determined to need energy saving management is collected as basic information, including standard load information, network address information and equipment type information, for example, managing electrical equipment in large enterprises, such as air conditioners, lamps and other electrical equipment, which has a good electrical equipment display function, image marking of electrical equipment as a single model representing electrical equipment, then arranging the single model according to the network address information, constructing the standard load information in the corresponding single model to obtain a working environment model, which can clearly display the basic information of electrical equipment.
[0017] In one embodiment, the second construction module comprises: A three-dimensional construction module is configured to construct and arrange electrical equipment in three dimensions according to network address information to obtain a working model, and configure a star chain for the working model to obtain an actual working model. A sending establishment unit is configured to construct a star packet according to network address information of electrical equipment. An establishment unit is configured to establish a channel area between electrical equipment and a star chain. A transmission unit is configured to collect real-time working information of electrical equipment, including real-time load information and real-time network address information, and store the real-time working information in a star packet for transmission to an actual working model. A coincidence unit is configured to coincide and construct an actual working model with a working environment model to obtain a comprehensive model. It should be noted that the three-dimensional construction of electrical equipment according to network address information is partially similar to the construction of the working environment model, image marking of electrical equipment is arranged according to network address information to obtain a distribution model of electrical equipment as a working model, and then a channel area is established between electrical equipment and an actual working model, which is used for subsequent transmission of a star packet, real-time working information of electrical equipment is collected, including real-time load information and real-time network address information, real-time load information includes real-time voltage information and real-time current information, and then the real-time working information can be transmitted to the actual working model, which is received and displayed by a star chain in the actual working model, and then the actual working model is coincided and constructed with the working environment model to obtain a comprehensive model, which can be better integrated and subsequently adjusted for energy saving of electrical equipment. In one embodiment, the three-dimensional construction module comprises: A device model construction unit is configured to image mark electrical equipment to obtain an icon, and arrange the icon according to network address information to obtain a working model. The receiving model construction unit is configured to correspond to the icons in the working model to configure corresponding star points, select a shooting point, connect all the star points with the shooting point in a shooting manner to obtain a star-shooting chain, and set the working model with the star-shooting chain as an actual working model. In one embodiment, the sending establishment unit comprises: The monitoring setting unit is configured to set monitoring points corresponding to the electrical equipment, and the monitoring points are used to collect real-time working information of the electrical equipment. The sending construction unit is configured to correspond to the monitoring points of all the electrical equipment to set a plurality of sending packets for the monitoring points, set a plurality of guide packets, connect each of the sending packets of all the electrical equipment with each of the guide packets in a shooting manner to obtain a star-shooting packet, obtain a plurality of star-shooting packets through the plurality of sending packets corresponding to the plurality of monitoring points and the plurality of guide packets, and arrange the plurality of star-shooting packets in sequence. In one embodiment, the establishment unit comprises: The transmission setting unit is configured to determine a transmission range between the star-shooting packet and the star-shooting chain, set a transmission route between the guide packet and the shooting point and a transmission route between the sending packet and the corresponding star point in the transmission range, and obtain a plurality of transmission lines in the transmission range. The channel setting unit is configured to fix positions between the plurality of transmission lines, and set a plurality of star-shooting verification doors corresponding to the plurality of transmission lines in the transmission range, wherein the star-shooting verification door is composed of a plurality of star-shooting sub-doors, the plurality of star-shooting sub-doors are respectively arranged on different transmission routes, the plurality of star-shooting sub-doors are located at the same positions as the sending packets and the guide packets in the star-shooting packet, the plurality of star-shooting sub-doors are respectively used to control opening and closing of the corresponding transmission routes, the plurality of star-shooting sub-doors in the star-shooting verification door are associated with each other, and the transmission range with the star-shooting verification door set is taken as a channel area. In one embodiment, the transmission unit comprises: The real-time collection unit is configured to collect real-time working information of the electrical equipment through the monitoring points. The real-time transmission unit is configured to sequentially place a plurality of real-time working information of the same period of the plurality of electrical equipment in corresponding sending packets in sequence according to the arrangement sequence of the star-shooting packet, and transmit the star-shooting packet loaded with the real-time working information of the plurality of electrical equipment according to the corresponding transmission line. The verification unit is configured to verify the sending packet through the star-shooting verification door in the process of transmission, close the star-shooting sub-door on the transmission line of the abnormal packet if the sending packet deviates from the transmission line or the data in the sending packet changes, close the remaining star-shooting sub-doors in the star-shooting verification door through the star-shooting sub-door, extract data of the abnormal packet in the previous star-shooting verification door to replace, and then open the star-shooting verification door to continue transmission. The receiving unit is used to continuously transmit the real-time working information of the electrical equipment. When the guidance packet coincides with the shooting point, the sending packet transmitted to the corresponding star point in the actual working model will be confirmed received and stored; It should be noted that first, an actual working model needs to be set, which is the combination of the working model and the star-ray chain. The working model is a three-dimensional construction of electrical equipment according to network address information, and the icons corresponding to the electrical equipment in the working model are configured with corresponding star points. The star point is a storage, and the shooting point is a data location point (a virtual transmission network address). Then all the star points are connected with the shooting points in a transmitting manner to obtain the star-ray chain. The transmitting connection represents that the star point points to the shooting point. Finally, multiple star points are connected to one shooting point, and the shooting point is used for subsequent real-time working information reception confirmation.After setting the part of data receiving, then build the part of sending, real-time working information needs to be collected through monitoring points, multiple electrical equipment exists multiple monitoring points, set multiple sending packets corresponding to the monitoring points of all electrical equipment, set multiple guide packets, connect each sending packet of all electrical equipment with each guide packet to get star shot packets, the connection here and the connection of star shot chain have the same meaning, get multiple star shot packets through multiple sending packets corresponding to multiple monitoring points and multiple guide packets, arrange multiple star shot packets in order, the sending packet is a storage for real-time working information, the guide packet is an information point, the transmission range between star shot packet and star shot chain, the transmission range is the communication range between star shot packet and star shot chain, set the transmission route between guide packet and shot point and the transmission route between sending packet and corresponding star point in the transmission range to get multiple transmission lines in the transmission range, the transmission route is a transmission line, the transmission line is a communication channel for limiting the transmission of subsequent sending packet and guide packet, the positions of multiple transmission lines are fixed, set multiple star shot verification doors corresponding to multiple transmission lines in the transmission range, the star shot verification door is composed of multiple star shot sub-doors, multiple star shot sub-doors are arranged on different transmission routes, the positions of multiple star shot sub-doors are the same as those of sending packet and guide packet in star shot packet, multiple star shot sub-doors are respectively used to control the opening and closing of corresponding transmission route, multiple star shot sub-doors in star shot verification door are associated with each other, the transmission range with star shot verification door is used as a channel area, the star shot sub-door can control the opening and closing of the corresponding transmission route and can be used for temporary storage of real-time working information passing through, so that when the subsequent star shot sub-door verifies the abnormal sending packet (i.e. the sending packet is separated from the transmission line (the sending packet is replaced by other network address to transmit and will be separated from the transmission line) or the internal data of the sending packet changes (the data is tampered by network attack)), the data of the abnormal packet in the previous star shot sub-door can be obtained and re-sent, which has good transmission data security guarantee, the data of the abnormal packet in the previous star shot verification door is replaced, then the star shot verification door is opened to continue transmission, and the real-time working information of the electrical equipment is continuously transmitted, when the guide packet coincides with the shot point, the sending packet of the corresponding star point in the actual working model is confirmed to be received and stored, the data connection structure of star shot packet, star shot chain and star shot verification door is the same, so that the star shot verification door can verify the star shot packet, the star shot packet can be stored corresponding to the position of the star shot chain after transmission, and the safety degree of transmission can be obtained through the star shot verification door, wherein the formula for calculating the safety degree is: Wherein, Safety degree, The total number of abnormal sending packets, The number of transmission routes corresponding to the abnormal sending packets, The maximum number of times of sending packet abnormality in the transmission route, is the total number of transmission routes, is the transmission route weight coefficient, is a constant greater than zero, it should be noted that, and The larger the value is, The larger the value of is, the lower the security of real-time work information transmission is, which can ensure the security and continuity of data transmission; finally, the actual work model and the work environment model are overlapped to construct a comprehensive model, the actual work model and the work environment model are consistent in shape, so they can be overlapped to construct a comprehensive model; In one embodiment, the energy-saving control module comprises: The electricity price acquisition unit is configured to acquire electricity price fluctuation information and construct an electricity price energy-saving model according to the electricity price fluctuation information; The load unit is configured to load the electricity price energy-saving model in the work environment model in the comprehensive model, classify the electrical equipment, and respectively classify the core equipment and the edge equipment; The simulation unit is configured to take the edge equipment as a to-be-adjusted device and load adjust the to-be-adjusted device through the electricity price energy-saving model; It should be noted that the electricity price fluctuation information is the corresponding electricity price under the time line, the electricity price energy-saving model is a corresponding table of time and electricity price, and the edge equipment is load adjusted through the electricity price energy-saving model, which aims to reduce the power consumption and achieve the energy-saving requirement.
[0018] The above is only a specific embodiment of the present application, but the protection scope of the present application is not limited thereto, any person skilled in the art can easily think of changes or replacements within the technical range disclosed in the present application, which should be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. An intelligent energy-saving control system for electrical equipment, characterized in that: include: The first construction module is used to obtain multiple electrical devices that need to be controlled, collect basic information of the electrical devices, and construct working environment models of the multiple electrical devices according to the basic information; The second construction module is connected to the first construction module and is used to construct an actual working model, collect real-time working information of the electrical equipment and transmit it to the actual working model, and overlap the actual working model with the working environment model to construct a comprehensive model; The energy-saving control module is connected to the second building module and is used to build an electricity price energy-saving model, load the electricity price energy-saving model into the working environment model, determine the equipment to be adjusted and perform load adjustment.
2. The intelligent energy-saving control system for electrical equipment according to claim 1, characterized in that: The first building block includes: The acquisition unit is used to acquire multiple electrical devices that need to be controlled, and collect standard load information, network address information, and device type information of the electrical devices as basic information; The model building unit is used to perform three-dimensional construction according to basic information to obtain working environment models of multiple electrical equipment.
3. The intelligent energy-saving control system for electrical equipment according to claim 1, characterized in that: The second building block includes: The three-dimensional construction module is used to construct and arrange the electrical equipment in three dimensions according to the network address information to obtain a working model, and configure the Starlink corresponding to the working model to obtain the actual working model; A sending establishment unit is used to construct a star-shooting packet corresponding to the network address information of the electrical device; Establishing unit for establishing a channel area between electrical equipment and the star-shooing chain; A transmission unit is used to collect real-time working information of electrical equipment, wherein the real-time working information includes real-time load information and real-time network address information, and store the real-time working information in the star shot and transmit it to the actual working model; The overlap unit is used to overlap the actual working model with the working environment model to obtain a comprehensive model.
4. The intelligent energy-saving control system for electrical equipment according to claim 3, characterized in that: The three-dimensional building block comprises: The device model building unit is used to mark the electrical equipment with images to obtain icons, and arrange the icons according to the network address information to obtain a working model; The receiving model construction unit is used to configure the corresponding star points corresponding to the icons in the working model, select a shooting point, and connect all the star points to the shooting point in a radioactive manner to obtain a star-shooting chain. The working model with the star-shooting chain set up is used as the actual working model.
5. The intelligent energy-saving control system for electrical equipment according to claim 4, characterized in that: The sending establishment unit includes: A monitoring setting unit is used to set monitoring points corresponding to electrical equipment, and the monitoring points are used to collect real-time working information of the electrical equipment; The sending construction unit is used to set multiple sending packages and multiple guide packages for the monitoring points of all electrical equipment, and to connect the single sending packages of all electrical equipment with the single guide package in a transmitting manner to obtain a star-shooting package. Multiple star-shooting packages are obtained through the multiple sending packages corresponding to multiple monitoring points and the set multiple guide packages, and the multiple star-shooting packages are arranged in sequence.
6. The intelligent energy-saving control system for electrical equipment according to claim 5, characterized in that: The establishing unit includes: A transmission setting unit is used to determine the transmission range between the star-shooting package and the star-shooting chain, set the transmission route between the guide package and the shooting point and the transmission route between the sending package and the corresponding star point in the transmission range, and obtain multiple transmission lines within the transmission range; A channel setting unit is used to fix the positions between multiple transmission lines, and to set up multiple star-shooting verification gates corresponding to the multiple transmission lines in the transmission range, wherein the star-shooting verification gate is composed of multiple star-shooting sub-gates, and the multiple star-shooting sub-gates are respectively set on different transmission routes. The positions of the multiple star-shooting sub-gates are the same as those of the sending packets and the guide packets in the star-shooting package. The multiple star-shooting sub-gates are respectively used to control the opening and closing of the corresponding transmission routes. The multiple star-shooting sub-gates in the star-shooting verification gate are mutually related, and the transmission range where the star-shooting verification gate is set is used as the channel area.
7. The intelligent energy-saving control system for electrical equipment according to claim 6, characterized in that: The transmission unit includes: Real-time collection unit, used to collect real-time working information of electrical equipment through monitoring points; A real-time transmission unit is used to sequentially place multiple real-time working information of multiple electrical devices in the same period into corresponding transmission packets according to the arrangement order of the star-shooting packets, and transmit the star-shooting packets carrying the real-time working information of multiple electrical devices along the corresponding transmission lines; The verification unit is used to verify the sending packet through the star-shot verification gate during the transmission process. If the sending packet is out of the transmission line or the data inside the sending packet changes, the sending packet will be regarded as an abnormal packet, and the star-shot sub-gate on the transmission line where the abnormal packet is located will be closed. At the same time, the remaining star-shot sub-gates in the star-shot verification gate will be de-associated through the star-shot sub-gate and closed. The data of the abnormal packet in the previous star-shot verification gate will be extracted and replaced, and then the star-shot verification gate will be opened again to continue transmission; The receiving unit is used to continuously transmit the real-time working information of the electrical equipment. When the guidance package coincides with the shooting point, the sending package transmitted to the corresponding star point in the actual working model will be confirmed received and stored.
8. The intelligent energy-saving control system for electrical equipment according to claim 1, characterized in that: The energy-saving control module includes: An electricity price acquisition unit, used to acquire electricity price fluctuation information and build an electricity price energy-saving model based on the electricity price fluctuation information; The load unit is used to load the electricity price energy-saving model into the working environment model in the comprehensive model and classify the electrical equipment into core equipment and edge equipment; The simulation unit is used to treat the edge device as the device to be regulated and perform load regulation on the device to be regulated through the electricity price energy-saving model.