直流微电网系统控制算法的设计与开发

A. Shirodkar, C. Vyjayanthi
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引用次数: 0

摘要

直流微电网技术由于易于集成可再生能源、需要控制的电网变量数量较少以及直流储能技术的快速发展,为现有的交流微电网提供了一个有希望的替代方案。用于高功率应用的直流照明负载,直流电机和高效DC- ac转换器的可用性为实施直流微电网提供了强有力的案例。本文提出了一种直流微电网系统,并提出了一种用于上述微电网混合模式运行的控制算法。微电网集成了具有MPP跟踪的光伏阵列、交流电网接口、具有CC-CV充电的电池储能系统和使用拟议的电池平衡算法的电池平衡。对各组成部分分别进行了研究和设计,最后将各组成部分集成构成直流微电网,并通过仿真结果演示了直流微电网在混合模式下的运行情况。
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Design and Development of Control Algorithm for a DC Microgrid System
DC microgrid technology provides a promising alternative to the currently existing AC microgrids, owing to ease of integration of renewable energy sources, lesser number of grid variables in need of control, and the rapid developments in DC energy storage technologies. The availibility of DC lighting loads, DC motors, and high efficiency DC-AC converters for high power applications make a strong case for the implementation of DC microgrids. This paper proposes a DC microgrid system, and a control algorithm for operating the aforementioned microgrid in Hybrid Mode. The microgrid integrates a PV array with MPP tracking, AC grid interfacing, a Battery Energy Storage System with CC-CV charging and cell balancing using a proposed cell balancing algorithm. Each component is studied and designed individually, and finally all are integrated to form the DC microgrid, whose operation in Hybrid Mode is demonstrated through simulated results.
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