Stability Control Strategy of Hybrid Energy Storage DC Microgrid Based on Double Closed Loop

Hongwei Yu, Bo Zhao
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引用次数: 1

Abstract

In order to solve the problems of high randomness and high volatility of photovoltaic power generation system, a DC microgrid system of accumulator-supercapacitors and photovoltaic power generation is constructed by using the complementary characteristics of accumulator-supercapacitors to photovoltaic power generation system. On the basis of comparative analysis of control principles, a double closed-loop PI control strategy suitable for DC microgrid hybrid energy storage is proposed. A photovoltaic power generation system model combining supercapacitor and battery hybrid energy storage is built under Matlab /Simulink. The simulation results show that the microgrid with double closed-loop control has better transient response speed and stability.
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基于双闭环的混合储能直流微电网稳定性控制策略
为了解决光伏发电系统的高随机性和高波动性问题,利用蓄能器-超级电容器与光伏发电系统的互补特性,构建了蓄能器-超级电容器与光伏发电的直流微电网系统。在比较分析控制原理的基础上,提出了一种适用于直流微电网混合储能的双闭环PI控制策略。在Matlab /Simulink环境下建立了超级电容器与电池混合储能相结合的光伏发电系统模型。仿真结果表明,采用双闭环控制的微电网具有更好的暂态响应速度和稳定性。
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