IP Library Granted Patent US 12699370
Granted Patent B2
US 12699370 · App. 19/023,423 · Granted Aug 4, 2026

Testing method and system for enhancing the grid-supporting capability of energy storage integrated with renewable energy

Inventors: Hongchun Shu (Kunming, CN); Botao Shi (Kunming, CN); Guangxue Wang (Kunming, CN); Liuqing Zhu (Kunming, CN); Yutao Tang (Kunming, CN); Shunguang Lei (Kunming, CN); Yinan Hu (Kunming, CN)
G05B13/048H02J3/00H02J2103/30
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Quick Facts
Patent No.
US 12699370
App. No.
19/023,423
Granted
Aug 4, 2026
Kind
B2
Abstract

A method and a system to enhance the grid-supporting capability of energy storage integrated with renewable energy are provided. The method includes: determining and adjusting simulation parameters for various models based on a target testing project; simulating fault information and configuring the working state of physical terminals accordingly; identifying fault types and levels from operational parameters; determining fault handling strategies based on the faults; controlling physical terminals using the strategies and receiving feedback on handling results. This method ensures efficient and flexible testing for large-scale energy storage and renewable energy integration into the grid.

Claims (33)

1 . A method for testing a system for enhancing a grid-supporting capability of an energy storage integrated with a renewable energy,

wherein the system comprises:

a multi-agent system (MAS) operation platform, configured to determine simulation parameters corresponding to a plurality of simulation models based on a target testing project, perform parameter adjustment operations on the plurality of simulation models based on the simulation parameters, simulate fault information corresponding to the target testing project based on the plurality of simulation models, configure a working state of physical terminals based on the fault information, determine fault types and fault levels of the physical terminals based on operational parameters, determine a fault handling strategy based on the fault types and the fault levels, wherein the fault handling strategy is specifically selected for determined fault types and fault levels, and receive handling results fed back by the physical terminals;

a power hardware-in-the-loop testing platform, configured to obtain the operational parameters of the physical terminals and control the physical terminals based on an information flow signal of a working state of the fault handling strategy;

a group of physical controllers, configured to obtain the operational parameters of the physical terminals and control the physical terminals based on control instructions of the fault handling strategy; and

a cloud-edge collaborative data management platform, configured to centrally store the handling results, perform data analysis operations on the handling results to obtain analysis results, and use the analysis results as a basis for testing results of an active supporting capability of the energy storage;

wherein the method comprises:

determining the simulation parameters corresponding to the plurality of simulation models based on the target testing project and performing the parameter adjustment operations on the plurality of simulation models based on the simulation parameters;

simulating the fault information corresponding to the target testing project based on the plurality of simulation models and configuring the working state of the physical terminals based on the fault information;

obtaining the operational parameters of the physical terminals and determining the fault types and the fault levels of the physical terminals based on the operational parameters;

determining the fault handling strategy based on the fault types and the fault levels;

controlling the physical terminals based on the information flow signal of the working state of the fault handling strategy and controlling the physical terminals based on the control instructions of the fault handling strategy, wherein the information flow signal and the control instructions are generated from the determined fault handling strategy and are distinct signal types for different levels of control;

receiving the handling results fed back by the physical terminals; and

centrally storing the handling results, performing the data analysis operations on the handling results to obtain the analysis results, and using the analysis results as the basis for the testing results of the active supporting capability of the energy storage;

wherein performing the parameter adjustment operations on the plurality of simulation models based on the simulation parameters comprises:

adjusting parameters of a power grid equipment model based on line structure parameters, operational state parameters, and electrical component parameters in the simulation parameters;

adjusting parameters of a renewable energy model based on the operational state parameters in the simulation parameters; and

adjusting parameters of a transformer model based on transformer ratio parameters in the simulation parameters;

wherein controlling the physical terminals comprises:

controlling startup, shutdown, and speed adjustment of the physical terminals based on the information flow signal of the working state of the fault handling strategy; and

controlling restart and line switching of the physical terminals based on the control instructions of the fault handling strategy;

wherein performing the data analysis operations on the handling results to obtain the analysis results comprises:

performing long-term historical data analysis operations on the handling results to obtain long-term historical data analysis results;

performing fault diagnosis operations on the handling results to obtain fault diagnosis results; and

performing inference analysis operations on the handling results to obtain inference analysis results.

2 . A testing apparatus, comprising:

a memory,

a processor, and

a testing program stored in the memory and executable on the processor,

wherein the testing program is configured to implement the method for testing the system for enhancing the grid-supporting capability of the energy storage integrated with the renewable energy according to claim 1 .

3 . A non-transitory computer-readable storage medium,

wherein the non-transitory computer-readable storage medium stores a testing program for enhancing the grid-supporting capability of the energy storage integrated with the renewable energy,

wherein the testing program, when executed by a processor, implements the method for testing the system for enhancing the grid-supporting capability of the energy storage integrated with the renewable energy in according to claim 1 .