Analysis of Voltage Control Strategies for DC Microgrid with Multiple Types of Energy Storage Systems

Author:

Yang Zhichun12,Wang Chenxia3,Han Ji3,Yang Fan12,Shen Yu12,Min Huaidong12,Hu Wei12,Song Huihui3

Affiliation:

1. Electric Power Research Institute, State Grid Hubei Electric Power Co., Ltd., Wuhan 430077, China

2. Key Laboratory of High-Voltage Field-Test Technique of SGCC, Wuhan 430077, China

3. College of New Energy, Harbin Institute of Technology at Weihai, Weihai 264200, China

Abstract

Direct-current (DC) microgrids have gained worldwide attention in recent decades due to their high system efficiency and simple control. In a self-sufficient energy system, voltage control is an important key to dealing with upcoming challenges of renewable energy integration into DC microgrids, and thus energy storage systems (ESSs) are often employed to suppress the power fluctuation and ensure the voltage stability. In this paper, the performances of three voltage control strategies for DC microgrids are compared, including the proportion integration (PI) control, the fuzzy PI control and particle swarm optimization (PSO) PI control. Particularly, two kinds of ESSs including battery and advanced adiabatic compressed air energy storage (AA-CAES) with different operational characteristics are installed in the microgrid, and their impacts on voltage control are investigated. The control performances are comprehensively compared under different control schemes, various scenarios of renewable energy fluctuations, participation in the control of the two ESSs or not, and different fault conditions. Additionally, the dynamic performances of the ESSs are exhibited. The results verify the validity of the control schemes and the feasibility of the configuration of the ESSs into the DC microgrid.

Funder

State Grid Hubei Electric Power Company Science and Technology Project

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Computer Networks and Communications,Hardware and Architecture,Signal Processing,Control and Systems Engineering

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