并网光伏系统的控制与运行

Nayana, R. L. Chakrasali
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引用次数: 2

摘要

并网分布式发电(DG)为用户提供可靠、安全的电力。光伏并网发电系统的充分性和安全性是研究的重点。孤岛是指DG在与公用事业断开连接的情况下继续运行。孤岛检测应在尽可能短的时间内完成,以确保持续稳定运行以及线路人员和客户设备的安全。在可再生能源中,光伏系统是最适合清洁发电的能源,适用于任何领域的应用。本文将光伏电池模型作为DG与公用事业集成,并以并网和有意孤岛的方式运行。孤岛探测采用被动孤岛探测技术。DG集成到公用事业中,在电网电压和频率下运行。利用MATLAB/Simulink环境开发模型,对有意孤岛进行了测试,得到了测试结果。仿真结果验证了所提控制器和电力电子器件的有效运行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Control and operation of grid connected photovoltaic system
Grid connected Distributed generation (DG) provides reliable and secured power. The research focus is to achieve adequacy and security in the grid connected photovoltaic (PV) power generation system. The islanding is the situation where DG continues to operate with the utility disconnected. Islanding detection should be done with minimum possible time when it occurs to ensure continued stable operation along with safety of linemen and the customers' equipment. Of the renewable energy sources, PV system is most suitable source for clean generation and suitable for any areas of applications. This paper deals with the PV cell model as DG integrated with the utility and operates in grid connected and intentional islanding mode. Islanding detection is carried out with passive islanding detection technique. The DG is integrated to utility to operate at grid voltage and frequency. Intentional islanding is tested by developing the model using MATLAB/Simulink environment and results are obtained. The simulation results validate the effective operation of the proposed controller and power electronic devices.
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