A power system-oriented power distribution network networking method and system

By constructing an energy and distribution network model and setting up network ports, and utilizing fixed-point chains and information point configuration unit data flows, the control problem in distributed energy and distribution network networking was solved, achieving real-time control and stability, and improving network stability and management efficiency.

CN119448269BActive Publication Date: 2026-01-06GUANGZHOU POWER SUPPLY BUREAU GUANGDONG POWER GRID CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202411599530.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-11
Publication Date
2026-01-06
Estimated Expiration
2044-11-11

AI Technical Summary

Technical Problem

Existing technologies make it difficult to regulate the grid power demand of distributed energy sources and distribution networks in real time, resulting in difficulty in ensuring grid stability.

Method used

By constructing energy and distribution network models, setting up network ports and collecting data from multiple control terminals in real time, and controlling the data through the control model, the system utilizes fixed-point chains and information point configuration unit data streams to achieve rapid information transmission and control.

Benefits of technology

It has achieved a stable network between energy and distribution networks, ensuring real-time information and rapid response of control, and improving network stability and management efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119448269B_ABST
    Figure CN119448269B_ABST
Patent Text Reader

Abstract

The application discloses a power system-oriented power distribution network networking method and system, relates to the technical field of power distribution networks, and acquires energy information of multiple energies, wherein the energy information comprises energy distribution positions and energy data, acquires power distribution network information, wherein the power distribution network information comprises connection relationships between multiple lines and load information corresponding to the multiple lines, sets networking ports corresponding to the power distribution network and marks the networking ports in a power distribution network model, connects the power distribution network and the multiple energies based on the networking ports to obtain networking information, and collects energy information of the multiple energies and power grid energy demand information in real time and controls the multiple energies through a control model. The application guarantees the real-time performance of information, and further guarantees the stability of networking between energies and power distribution networks.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of power distribution network, in particular to a power system-oriented power distribution network networking method and system. BACKGROUND

[0002] The networking of distributed energy is an important way to realize energy transformation and sustainable development. Through the comprehensive consideration and implementation of the early planning and design, distributed energy system construction, intelligent scheduling and control, grid connection and interaction, etc. The efficient use and sustainable development of distributed energy can be promoted. At present, due to the development of distributed energy, in order to integrate and access the power distribution network for use, it is necessary to network the distributed energy and the power distribution network. In the process of networking the distributed energy, the power supply can be provided according to the networking demand of the power distribution network. Therefore, it is necessary to monitor the information of the energy and the networking port of the power distribution network. It is difficult to real-time energy regulation of energy to adapt to the demand of the networking power of the power distribution network, and it is difficult to ensure the stability of the networking. SUMMARY

[0003] The purpose of the present application is to provide a power system-oriented power distribution network networking method and system to solve the problems in the background art.

[0004] In order to achieve the above purpose, the present application provides the following technical scheme: a power system-oriented power distribution network networking method, comprising the following steps:

[0005] Obtain energy information of a plurality of energies, wherein the energy information includes energy distribution location and energy data, and construct an energy model according to the energy information;

[0006] Obtain power distribution network information, wherein the power distribution network information includes the connection relationship between a plurality of lines and the load information corresponding to the plurality of lines, and construct a power distribution network model based on the power distribution network information;

[0007] Set up a networking port corresponding to the power distribution network and mark it in the power distribution network model, connect the power distribution network and the plurality of energies based on the networking port to obtain networking information, and connect the energy model and the power distribution network model based on the networking information to obtain a control model;

[0008] Real-time collection of energy information of a plurality of energies and power grid energy demand information and regulation of a plurality of energies through the control model.

[0009] In one preferred embodiment, the step of constructing an energy model according to energy information comprises:

[0010] Obtain the energy distribution location and energy data of a plurality of energies as energy information, wherein the energy data includes device type and corresponding power generation, and connect the plurality of energies;

[0011] Obtain management maps corresponding to multiple energy sources, mark the energy distribution locations on the management maps, and obtain an energy model by marking the energy distribution locations on the management maps with corresponding energy information.

[0012] In a preferred embodiment, the step of constructing a distribution network model based on distribution network information includes:

[0013] The connection relationships between multiple lines in the distribution network and the load information corresponding to multiple lines are obtained as distribution network information.

[0014] A distribution network line connection model is constructed based on distribution network information, and the load information is marked in the power line connection model to obtain the distribution network model.

[0015] In a preferred embodiment, the step of connecting the energy model and the distribution network model based on network information to obtain the control model includes:

[0016] Multiple network ports are set up in the distribution network, and the corresponding network demand information is obtained for each of the multiple network ports. The network ports and the corresponding network demand information are marked in the distribution network model.

[0017] Based on the networking requirements information, the networking ports are matched with the corresponding energy sources to obtain matching information. Based on the matching information, the distribution network is connected to multiple energy sources to obtain networking information.

[0018] The control model is obtained by connecting the energy model and the distribution network model through network information.

[0019] In a preferred embodiment, the step of real-time acquisition of energy information and grid energy demand information, and regulation of multiple energy sources through a control model, includes:

[0020] Multiple energy sources are registered to obtain multiple energy terminals. Based on the network information, the network ports corresponding to the multiple energy terminals are obtained and information is bound to obtain multiple control terminals.

[0021] Multiple control terminals are respectively connected to multiple energy sources and network ports in the control model for communication;

[0022] The energy information from multiple control terminals and the grid energy demand information from the network ports are collected in real time and transmitted to the control model. The energy difference information between the grid energy demand information and the corresponding energy terminal energy information is determined in the control model.

[0023] Based on energy difference information, multiple energy sources are regulated through a control model to obtain multiple regulated energy sources. Power is then supplied to the distribution network based on the network ports corresponding to these multiple regulated energy sources.

[0024] In a preferred embodiment, the step of establishing communication connections between the multiple control terminals and the corresponding multiple energy sources and network ports in the control model includes:

[0025] In the control model, corresponding sub-servers are configured for each of the multiple energy sources and their corresponding network ports, and the control center is formed by connecting the multiple sub-servers.

[0026] Multiple control terminals are respectively bound to the corresponding energy sources and sub-servers configured in the network port of the control model;

[0027] Establish a communication channel between the information-bound control terminal and the sub-server, and set up information columns based on the communication channel. The information columns include multiple information chains and information receiving disks.

[0028] Communication connections between multiple energy sources and network ports are established based on communication channels with configured information columns.

[0029] In a preferred embodiment, the step of establishing a communication channel between the control terminal and the sub-server for information binding, and setting information columns based on the communication channel, includes:

[0030] A communication channel is established between the information-bound control terminal and the sub-server. An information chain is set up in the communication channel. The same information receiving disk is set up between the communication channel and the control terminal and the sub-server. The information receiving disk stores the unit information.

[0031] Connect the information receiving disk and information chain between the communication channel, the control terminal, and the sub-server;

[0032] The information chain and information receiving disk are used as information columns.

[0033] In a preferred embodiment, the step of establishing a communication channel between the information-bound control terminal and the sub-server, and setting up an information chain in the communication channel, includes:

[0034] Set up a fixed-point chain in the communication channel and set up multiple information points in the fixed-point chain, and configure the corresponding unit data stream for the multiple information points;

[0035] A unit data stream represents a unit of information. By establishing the association between the unit data stream and the information receiving disk, an information chain is obtained.

[0036] The present invention also provides a power distribution network networking system, comprising:

[0037] The first construction module is used to acquire energy information from multiple energy sources, including energy distribution locations and energy data, and to construct an energy model based on the energy information.

[0038] The second construction module, connected to the first construction module, is used to obtain distribution network information, which includes the connection relationship between multiple lines and the load information corresponding to multiple lines. A distribution network model is constructed based on the distribution network information.

[0039] The connection module, connected to the second construction module, is used to set up networking ports for the corresponding distribution network and mark them in the distribution network model. Based on the networking ports, the distribution network is connected to multiple energy sources to obtain networking information. Based on the networking information, the energy model and the distribution network model are connected to obtain the control model.

[0040] The control module, connected to the connection module, is used to collect energy information from multiple energy sources and grid energy demand information in real time, and to control multiple energy sources through a control model.

[0041] The technical effects and advantages provided by the present invention in the above technical solution are as follows:

[0042] This invention sets up multiple information points in a fixed-point chain, and configures corresponding unit data streams for each information point. The information points are storage points used to store unit data streams. Each unit data stream represents a corresponding unit information. Only the corresponding number of unit data streams that originally existed in the communication channel need to be deduced, which can quickly transmit data, ensure the real-time nature of information, and thus ensure the stability of the network between energy and distribution networks. Attached Figure Description

[0043] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in this invention. For those skilled in the art, other drawings can be obtained based on these drawings.

[0044] Figure 1 This is a flowchart of the method of the present invention.

[0045] Figure 2 This is a system block diagram of the present invention. Detailed Implementation

[0046] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, 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, 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.

[0047] Example 1, please refer to Figure 1As shown in this embodiment, a power distribution network networking method for power systems includes the following steps:

[0048] S1. Obtain energy information from multiple energy sources, including energy distribution locations and energy data, and construct an energy model based on the energy information;

[0049] S2. Obtain distribution network information, which includes the connection relationship between multiple lines and the load information corresponding to multiple lines. Construct a distribution network model based on the distribution network information.

[0050] S3. Set up network ports for the corresponding distribution network and mark them in the distribution network model. Based on the network ports, connect the distribution network with multiple energy sources to obtain network information. Based on the network information, connect the energy model and the distribution network model to obtain the control model.

[0051] S4. Real-time collection of energy information from multiple energy sources and grid energy demand information, and regulation of multiple energy sources through a control model;

[0052] As described in steps S1-S4 above, the network utilization of distributed energy is an important way to achieve energy transformation and sustainable development. Through comprehensive consideration and implementation of preliminary planning and design, distributed energy system construction, intelligent scheduling and control, grid connection and interaction, etc., the efficient utilization and sustainable development of distributed energy can be promoted. Currently, due to the development of distributed energy, in order to integrate it into the distribution network for use, it is necessary to network distributed energy with the distribution network. During the network construction process, electricity can be provided according to the network requirements of the distribution network. Therefore, it is necessary to monitor the network ports of both the energy and the distribution network. It is difficult to adjust the energy in real time to adapt to the network power demand of the distribution network, making it difficult to ensure network stability. In this application, multiple information points are set in the fixed-point chain, and corresponding unit data streams are configured for each information point. The information points are storage points used to store unit data streams. One unit data stream represents one unit of information. Only the corresponding number of unit data streams originally existing in the communication channel need to be deduced, enabling rapid data transmission, ensuring real-time information, and thus ensuring the stability of the network between the energy and the distribution network.

[0053] In one embodiment, step S1 of constructing an energy model based on energy information includes:

[0054] S11. Obtain the energy distribution location and energy data of multiple energy sources as energy information, wherein the energy data includes equipment type and corresponding power generation, and connect multiple energy sources.

[0055] S12. Obtain management maps corresponding to multiple energy sources, mark the energy distribution locations on the management maps, and obtain an energy model by marking the energy distribution locations on the management maps with corresponding energy information.

[0056] As described in steps S11 and S12 above, the multiple energy sources here are clean energy sources such as photovoltaic and wind power. This system is used to network multiple energy sources within a management area, such as a district, with the surrounding power distribution network. These multiple energy sources are distributed energy sources, enabling the energy to be combined and networked with the power distribution network to supply the electrical equipment in the district. Here, it is necessary to obtain the energy distribution location and energy data of multiple energy sources as energy information. The energy data includes the equipment type and the corresponding power generation. The multiple energy sources are connected, and they are interconnected, enabling transmission and control between multiple energy sources during subsequent energy regulation. The equipment type here is photovoltaic or wind power generation equipment, etc. Then, the management map corresponding to the multiple energy sources is obtained, and the energy distribution location is marked on the management map. The energy distribution location on the management map is marked with the corresponding energy information to obtain the energy model. This energy model is a model that displays energy information and is used to connect with the actual multiple energy sources and control the energy networking information.

[0057] In one embodiment, step S2, which involves constructing a distribution network model based on distribution network information, includes:

[0058] S21. Obtain the connection relationship between multiple lines in the distribution network and the load information corresponding to multiple lines as distribution network information;

[0059] S22. Construct a distribution network line connection model based on distribution network information, and mark the load information in the power line connection model to obtain the distribution network model;

[0060] As described in steps S21 and S22 above, it is necessary to understand the information of the distribution network. Here, the connection relationship between multiple lines in the distribution network and the load information corresponding to multiple lines are obtained as the distribution network information. The connection relationship between multiple lines can be used to construct the distribution network line connection model. The distribution network line connection model is a topology diagram constructed according to the connection relationship between multiple lines. Then, the load information is marked in the power grid line connection model to obtain the distribution network model. This allows for a clear understanding of the distribution network information, which is convenient for the subsequent networking of multiple energy sources with the distribution network.

[0061] In one embodiment, step S3, which connects the energy model and the distribution network model based on network information to obtain the control model, includes:

[0062] S31. Set up multiple network ports in the distribution network, obtain the corresponding network demand information for each of the multiple network ports, and mark the network ports and the corresponding network demand information in the distribution network model.

[0063] S32. Based on the networking requirement information, the networking ports are matched with the corresponding energy sources to obtain matching information. Based on the matching information, the distribution network is connected to multiple energy sources to obtain networking information.

[0064] S33. The control model is obtained by connecting the energy model and the distribution network model through the networking information;

[0065] As described in steps S31-S33 above, multiple network ports for multiple energy sources are set up in the distribution network. Then, the corresponding network demand information is obtained for each of the multiple network ports. The network demand information here is the access voltage level, such as 220V, 380V and other voltage levels. Then, based on the network demand information, the network ports are matched with the corresponding energy sources to obtain matching information. Based on the matching information, the distribution network is connected to multiple energy sources to obtain network information. The network information here is the actual connection relationship between the distribution network and multiple energy sources. Then, the energy model and the distribution network model are connected through the network information to obtain the control model. The connection relationship between the energy model and the distribution network model can be obtained through the control model, so as to better perform subsequent network control.

[0066] In one embodiment, step S4, which involves real-time acquisition of energy information and grid energy demand information and regulation of multiple energy sources through a control model, includes:

[0067] S41. Register multiple energy sources to obtain multiple energy terminals, obtain the network ports corresponding to the multiple energy terminals based on the network information, and bind the information to obtain multiple control terminals.

[0068] S42. Connect multiple control terminals to the corresponding energy sources and network ports in the control model for communication.

[0069] S43. Real-time collection of energy information from multiple control terminals and grid energy demand information from network ports is transmitted to the control model. In the control model, the energy difference information between the grid energy demand information and the corresponding energy terminal energy information is determined.

[0070] S44. Based on the energy difference information, multiple energy sources are regulated through a control model to obtain multiple regulated energy sources, and power is supplied to the distribution network according to the network ports corresponding to the multiple regulated energy sources.

[0071] As described in steps S41-S44 above, multiple energy sources are registered to obtain multiple energy terminals. Based on the network information, the network ports corresponding to each energy terminal are obtained and information is bound to obtain multiple control terminals. These control terminals are used as objects to be controlled by the control model. Then, the multiple control terminals are connected to the corresponding energy sources and network ports in the control model. The control model can obtain the energy information of the multiple control terminals and the grid energy demand information of the network ports through these communication connections. Finally, the energy difference information between the grid energy demand information and the corresponding energy information of the energy terminals is determined. This energy difference information represents the energy required by the network ports in the distribution network. The difference between the received electricity and the corresponding energy source's capacity may exist in several scenarios: the required electricity at the distribution network's network ports may be greater than the energy source's capacity, the required electricity at the distribution network's network ports may be equal to the energy source's capacity, or the required electricity at the distribution network's network ports may be less than the energy source's capacity. This allows for energy regulation of multiple energy sources using a control model based on the energy difference information, resulting in regulated energy sources. The distribution network is then supplied with power based on the network ports corresponding to these regulated energy sources. This enables the power system to better adapt to the distribution network's needs and ensures the stability of the distribution network's power supply.

[0072] In one embodiment, step S42, which establishes communication connections between multiple control terminals and corresponding energy sources and network ports in the control model, includes:

[0073] S421. In the control model, each of the multiple energy sources and their corresponding network ports is configured with a corresponding sub-server, and the multiple sub-servers are connected to form a control center.

[0074] S422. Bind information between multiple control terminals and the corresponding energy sources and network port configuration sub-servers in the control model.

[0075] S423. Establish a communication channel between the information-bound control terminal and the sub-server, and set up information columns based on the communication channel. The information columns include multiple information chains and information receiving disks.

[0076] S424. Establish communication connections between multiple energy sources and network ports based on communication channels with information columns set;

[0077] As described in steps S421-S424 above, in order for the control model to control the energy and its corresponding network ports, it is necessary to configure corresponding sub-servers for each of the multiple energy sources and their corresponding network ports in the control model. The multiple sub-servers are connected to form a control center. The sub-servers are used to communicate with the control terminal to facilitate subsequent control and networking. The multiple sub-servers are connected. Then, the multiple control terminals are bound to the sub-servers configured for the corresponding energy and network ports in the control model to determine the correspondence between the control model and the control terminal. Then, a communication channel is built between the information-bound control terminal and the sub-server. Based on the communication channel, information columns are set. The information columns include multiple information chains and information receiving disks. This can build a communication channel between the information-bound control terminal and the sub-server, ensuring that the sub-server collects energy information and grid energy demand information from multiple energy sources and controls multiple energy sources.

[0078] In one embodiment, step S423, which involves establishing a communication channel between the control terminal and the sub-server for information binding, and setting information columns based on the communication channel, includes:

[0079] S4231. Establish a communication channel between the information-bound control terminal and the sub-server, set up an information chain in the communication channel, and set up the same information receiving disk between the communication channel and the control terminal and the sub-server, storing unit information in the information receiving disk.

[0080] S4232. Connect the information receiving disk and information chain between the communication channel, the control terminal, and the sub-server.

[0081] S4233, Treat the information chain and information receiving disk as information columns;

[0082] As described in steps S4231-S4233 above, multiple information chains are set in the communication channel. The same information receiving disk is set at both ends of the communication channel and at the connection points with the control terminal and the sub-server. The information receiving disks between the communication channel and the control terminal and the sub-server correspond to and are connected to the information chains. Then, the energy information collected from multiple control terminals and the grid energy demand information of the network port can be quickly transmitted through the transmission channel. The control instructions obtained by the sub-server to control multiple energy sources can also be quickly transmitted through the transmission channel, thereby improving the management efficiency of the power distribution network.

[0083] In one embodiment, step S4231, which involves establishing a communication channel between the information-bound control terminal and the sub-server, and setting up an information chain within the communication channel, includes:

[0084] S42311. Set up a fixed-point chain in the communication channel and set up multiple information points in the fixed-point chain, and configure the corresponding unit data stream for the multiple information points;

[0085] S42312. A unit data stream represents a unit information. Establish the association information between the unit data stream and the information receiving disk to obtain the information chain.

[0086] As described in steps S42311 and S42312 above, a fixed-point chain is set in the communication channel. This fixed-point chain is an information storage chain fixed within the communication channel. Multiple information points are set in the fixed-point chain, and corresponding unit data streams are configured for each information point. Each information point is a storage point used to store unit data streams. One unit data stream represents one unit of information. The unit information is a value stored on the information receiving disk. For example, if the unit information corresponds to a power consumption of 1 kWh, one unit data stream represents 1 kWh. When the energy information is 5 kWh, when this information is transmitted to the corresponding sub-server, it will push out (move all unit data streams in the transmission direction, causing the unit data streams located on the sub-server to be pushed out) the unit data streams in the information receiving disk corresponding to the 5 unit data streams, resulting in 5 kWh. The information is stored in the corresponding sub-servers. When the power grid energy demand information requires electricity, the same transmission method is used. When transmitting electricity between multiple energy sources, the control center controls the sub-servers according to the power scheduling between multiple energy sources. Then, the sub-servers push out unit data streams through the information receiving panel, representing the corresponding energy source that needs to store the electricity output from other energy sources. The sub-servers absorb unit data streams through the information receiving panel, representing the corresponding energy source that needs to output the corresponding unit data stream. It is not necessary to transmit 5kWh of information in the communication channel. It is only necessary to push out or absorb the corresponding quantity of unit data streams that originally exist in the communication channel. This enables fast data transmission, ensures the real-time nature of information, and thus ensures the stability of the network between energy and distribution network, enabling fast transmission response.

[0087] Example 2, please refer to Figure 2 As shown in this embodiment, a power distribution network system for power systems includes:

[0088] The first construction module is used to acquire energy information from multiple energy sources, including energy distribution locations and energy data, and to construct an energy model based on the energy information.

[0089] The second construction module, connected to the first construction module, is used to obtain distribution network information, which includes the connection relationship between multiple lines and the load information corresponding to multiple lines. A distribution network model is constructed based on the distribution network information.

[0090] The connection module, connected to the second construction module, is used to set up networking ports for the corresponding distribution network and mark them in the distribution network model. Based on the networking ports, the distribution network is connected to multiple energy sources to obtain networking information. Based on the networking information, the energy model and the distribution network model are connected to obtain the control model.

[0091] The control module, connected to the connection module, is used to collect energy information from multiple energy sources and grid energy demand information in real time, and to control multiple energy sources through a control model.

[0092] The storage point is used to store unit data streams. One unit data stream represents one unit of information. It is only necessary to push out the corresponding number of unit data streams that originally existed in the communication channel. This enables rapid data transmission, ensures the real-time nature of information, and thus ensures the stability of the network between energy and distribution networks.

[0093] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.

Claims

1. A power system-oriented power distribution network networking method, characterized by, The method comprises the following steps: acquiring energy information of a plurality of energy sources, wherein the energy information comprises energy distribution locations and energy data, and constructing an energy model according to the energy information; acquiring power distribution network information, wherein the power distribution network information comprises connection relationships between a plurality of lines and load information corresponding to the plurality of lines, and constructing a power distribution network model based on the power distribution network information; setting a networking port corresponding to the power distribution network and marking the networking port in the power distribution network model, connecting the power distribution network and the plurality of energy sources based on the networking port to obtain networking information, and connecting the energy model and the power distribution network model based on the networking information to obtain a control model; real-time collection of energy information of the plurality of energy sources and power grid energy demand information and control of the plurality of energy sources through the control model; The step of real-time collection of energy information and power grid energy demand information and control of the plurality of energy sources through the control model comprises: registration of the plurality of energy sources to obtain a plurality of energy terminals, acquisition of a plurality of networking ports corresponding to the plurality of energy terminals based on the networking information, and information binding to obtain a plurality of control terminals; communication connection of the plurality of control terminals with a plurality of energy sources and networking ports corresponding to the plurality of control terminals in the control model; real-time collection of energy information of the plurality of control terminals and power grid energy demand information of the networking ports and transmission of the energy information and the power grid energy demand information to the control model, determination of energy difference information between the power grid energy demand information and energy information of corresponding energy terminals in the control model, and energy control of the plurality of energy sources through the control model according to the energy difference information to obtain the plurality of energy sources after control, and power supply to the power distribution network through the plurality of energy sources after control corresponding to the networking ports; The step of communication connection of the plurality of control terminals with a plurality of energy sources and networking ports corresponding to the plurality of control terminals in the control model comprises: configuration of corresponding sub-servers corresponding to the plurality of energy sources and the corresponding networking ports in the control model, connection of a plurality of sub-servers to obtain a control center, and information binding between the plurality of control terminals and the sub-servers corresponding to the energy sources and the networking ports in the control model; communication channel establishment between the information-bound control terminals and the sub-servers, information column setting based on the communication channel, wherein the information column comprises a plurality of information chains and information receiving discs; communication connection establishment between the plurality of energy sources and the networking ports based on the communication channel with the set information column; The step of communication channel establishment between the information-bound control terminals and the sub-servers, information column setting based on the communication channel comprises: communication channel establishment between the information-bound control terminals and the sub-servers, information chain setting in the communication channel, and same information receiving discs setting between the communication channel and the control terminals and the sub-servers, and unit information storage in the information receiving discs; connection between the information receiving discs and the information chains between the communication channel and the control terminals and the sub-servers; information chain and information receiving disc as information column; The step of communication channel establishment between the information-bound control terminals and the sub-servers, information chain setting in the communication channel comprises: setting of a fixed-point chain in the communication channel and configuration of corresponding unit data streams in a plurality of information points in the fixed-point chain. ​ ​ One unit data stream represents one unit information, establishes the association information of the unit data stream and the information receiving disk, and obtains the information chain.

2. The power system oriented power distribution network networking method of claim 1, wherein: The step of constructing the energy model according to the energy information comprises: Obtaining energy distribution positions and energy data of a plurality of energies as energy information, wherein the energy data comprises equipment types and corresponding power generation amounts, and the plurality of energies are connected; Obtaining a management map corresponding to the plurality of energies, marking the energy distribution positions on the management map, and marking the energy distribution positions on the management map with the energy information to obtain the energy model.

3. The power system oriented power distribution network networking method of claim 1, wherein: The step of constructing the power distribution network model based on the power distribution network information comprises: Obtaining connection relationships between a plurality of lines in the power distribution network and load information corresponding to the plurality of lines as power distribution network information; Constructing a power distribution network line connection model based on the power distribution network information, and marking the load information in the power distribution network line connection model to obtain the power distribution network model.

4. The power system oriented power distribution network networking method of claim 1, wherein: The step of connecting the energy model and the power distribution network model based on the networking information to obtain the control model comprises: Setting a plurality of networking ports in the power distribution network, obtaining corresponding networking demand information for the plurality of networking ports, marking the networking ports and the corresponding networking demand information in the power distribution network model; Matching the networking ports and the corresponding energies based on the networking demand information to obtain matching information, and connecting the power distribution network and the plurality of energies based on the matching information to obtain networking information; Connecting the energy model and the power distribution network model based on the networking information to obtain the control model.

5. A power system oriented distribution network system for implementing the power system oriented distribution network method of any one of claims 1-4, characterized in that, Comprise: A first construction module configured to obtain energy information of a plurality of energies, wherein the energy information comprises energy distribution positions and energy data, and construct an energy model according to the energy information; A second construction module connected with the first construction module and configured to obtain power distribution network information, wherein the power distribution network information comprises connection relationships between a plurality of lines and load information corresponding to the plurality of lines, and construct a power distribution network model based on the power distribution network information; A connection module connected with the second construction module and configured to set networking ports in the power distribution network and mark the networking ports in the power distribution network model, connect the power distribution network and the plurality of energies based on the networking ports to obtain networking information, and connect the energy model and the power distribution network model based on the networking information to obtain a control model; A regulation and control module connected with the connection module and configured to collect energy information of the plurality of energies and power grid energy demand information in real time, and regulate and control the plurality of energies through the control model.

Citation Information

Patent Citations

  • Source-load peer-to-peer electric energy interaction method based on Internet+

    CN108269025A