Droop Control Based Strategy for Photovoltaic Sources in an Islanded Microgrid

Jiahui Jiang, C. Coates
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Abstract

To integrate more renewable energy (RE) into the power grid, an effective control strategy for photovoltaic (PV) sources in an islanded microgrid is investigated. A power sharing scheme is designed to give PV sources the priority of power supply. Based on the scheme, adjusted droop control strategy is employed for voltage source inverters (VSI). Considering PV power characteristics, a DC/DC converter controller is also designed for PV panels. There are two operating modes of PV sources: maximum power point tracking (MPPT) mode and power curtailment (PC) mode. MPPT mode is supported by MPPT technique combining with a frequency increment on the VSI droop controller. The traditional droop controller and DC bus voltage tracking loop support PC mode. Stability analysis is conducted. Simulation results show the control strategy can share power demand effectively among different kinds of power sources even under varying weather conditions.
孤岛微电网中光伏电源下垂控制策略
为了将更多的可再生能源纳入电网,研究了孤岛微电网中光伏电源的有效控制策略。设计了光伏电源优先供电的电力共享方案。在此基础上,对电压源逆变器(VSI)采用了可调下垂控制策略。针对光伏板的电源特性,设计了DC/DC变换器控制器。光伏电源有两种工作模式:最大功率点跟踪(MPPT)模式和弃电(PC)模式。MPPT技术与VSI下垂控制器上的频率增量相结合,支持MPPT模式。传统的下垂控制器和直流母线电压跟踪回路支持PC模式。进行了稳定性分析。仿真结果表明,该控制策略即使在不同天气条件下也能有效地实现不同类型电源的电力需求共享。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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