Energy Storage Capacity Configuration Planning Considering Dual Scenarios of Peak Shaving and Emergency Frequency Regulation

Author:

Chen Xiaozheng1ORCID,Nan Dongliang2,Xiong Xiaofu1,Chen Hongzhou1,Ma Wenqing1

Affiliation:

1. State Key Laboratory of Power Transmission Equipment Technology, Chongqing University, Chongqing 400044, China

2. Electric Power Research Institute of State Grid Xinjiang Electric Power Co., Ltd., Urumqi 830013, China

Abstract

New energy storage methods based on electrochemistry can not only participate in peak shaving of the power grid but also provide inertia and emergency power support. It is necessary to analyze the planning problem of energy storage from multiple application scenarios, such as peak shaving and emergency frequency regulation. This article proposes an energy storage capacity configuration planning method that considers both peak shaving and emergency frequency regulation scenarios. A frequency response model based on emergency frequency regulation combined with low-frequency load shedding is established, taking into account the frequency safety constraints of the system and the principle of idle time reuse, to establish a bi-level programming model. In the upper-level model, the optimization objective is to minimize the annual operating cost of the system during the planning period, combined with the constraints of power grid operation to plan the energy storage capacity. The lower-level model embeds frequency safety constraints with the optimization objective of minimizing the cost of fault losses. To solve the bi-level optimization problem, the Karush–Kuhn–Tucher (KKT) condition and Big-M method were used to transform the bi-level model into a single-layer linear model. Finally, an improved IEEE RTS-24 system was used for numerical verification. The results show that the method proposed in this article can reasonably plan the capacity of energy storage, improve frequency safety during system operation, and reduce the operating cost of the power grid.

Funder

National Natural Science Foundation of China

Publisher

MDPI AG

Reference23 articles.

1. Short-term wind power forecasting using the hybrid model of improved variational mode decomposition and Correntropy Long Short-term memory neural network;Duan;Energy,2021

2. Analysis of power system peaking capacity and economy considering uncertainty of wind and solar output;Zhao;Power Syst. Technol.,2022

3. Li, J., and Wang, S. (2017). Optimal combined peak-shaving scheme using energy storage for auxiliary considering both technology and economy. Autom. Electr. Power Syst., 41.

4. Power system frequency control: An updated review of current solutions and new challenges;Bevrani;Electr. Power Syst. Res.,2021

5. Using battery storage for peak shaving and frequency regulation: Joint optimization for superlinear gains;Shi;IEEE Trans. Power Syst.,2017

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