智能微电网超级电容-电池混合储能及控制策略研究

Wenzhou Liu, Xun Liu, Bo Du, Zhihon Jiang, H. Cui, Qiaoyun Gao, Yancheng Wei, Ning Li, D. Xi, Chang Liu
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引用次数: 3

摘要

面对严峻的环境问题,大规模利用和开发可再生、无污染、绿色、清洁的风能和太阳能,发展智能微电网是分布式能源发电和并网的最佳途径。在微电网中,电池将与超级电容器连接,形成混合储能系统。电池将稳定直流母线的电压,以保持母线上的供需平衡。超级电容器将快速提供负载变化所需的高频功率分量,从而限制负载突变对直流母线的影响。应根据变电站的直流系统进行参数设计。利用仿真软件对不同电容水平下的应急减载和突然减载进行仿真,论证混合储能系统的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on hybrid energy storage by super capacitor-battery and control strategy for intelligence micro-grid system
Confronted with severe environment issues, large scale utilization and development of wind energy and solar energy that are regenerative, non-pollution, green and clean, the best way for power generation and grid synchronization of distributed energy is to develop intelligence micro-grid. Amongst micro-grid, batteries will be connected with super capacitors to form hybrid energy storage system. Batteries will stabilize the voltage of DC busbar to as to retain balance between demand and supply over busbar. Super capacitors will quickly provide high frequency power component needed for load variation so as to restrict the impact of abrupt load variation on DC busbar. Parameters should be designed based on DC system at substation. Simulation software will be used to simulate emergency load and abrupt load reduction under different capacitance levels so as to demonstrate The feasibility of Hybrid Energy Storage Systems.
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