并网和孤岛型光伏/DG混合微电网的有效电源管理方案

Urvi Patel
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引用次数: 0

摘要

基于光伏的微电网在并网模式和孤岛模式下更难实现期望控制目标。并网模式下,光伏电源并网逆变器作为可控电流源,采用P-Q控制方法。在孤岛模式下,主要控制目标是将电压和频率控制在一个标称范围内以稳定运行。在孤岛模式下,采用基于V-f控制的下垂控制方法,将逆变器作为受控电压源运行。此外,在基于PV的MG中,由于负载变化或电网断开,有必要保持直流母线电压稳定。在孤岛模式下,通过精确的功率平衡来保持直流母线电压稳定,避免光伏电源过载是至关重要的。本文提出了一种改进的电源管理方案,使光伏电源在并网模式和孤岛模式下都能作为可控电压源,在负荷变化或电网断开时保持直流母线电压稳定。该方法实现了并网模式下的理想功率传输、稳定的孤岛运行以及两种模式之间的平稳过渡。仿真结果验证了该控制方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Effective Power Management Scheme for Grid connected and Islanded PV/DG Hybrid Microgrid
PV based Microgrid presents more difficulties to achieve desire control objective in grid connected mode as well as in islanding mode. In grid connected mode PV source connected inverter is operated as controlled current source using P-Q control method. In islanding mode main control objective is to control voltage and frequency within a nominal range for stable operation. V-f Control based droop control method is used in islanding mode by operating inverter as controlled voltage source. Also in PV based MG it is necessary to maintain DC bus voltage stability that occurs due to load change or grid disconnection. In islanding mode it is essential to maintain DC bus voltage stability to avoid overloading of PV source by accurate power balance. In this paper modified power management scheme is proposed so that PV source can work as controlled voltage source in grid connected mode as well as in islanding mode which is capable of maintaining dc bus voltage stability during load change or during grid disconnection. Using proposed method desire power transfer in grid connected mode and stable islanding operation as well as smooth transition between both modes are achieved. Simulations results are presented to validate the effectiveness of the control approach.
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