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A Control Strategy for a Distributed Power Generation Microgrid Application With Voltage- and Current-Controlled Source Converter

机译:具有电压和电流控制源转换器的分布式发电微电网应用的控制策略

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摘要

This paper presents a pseudodroop control structure integrated within a microgrid system through distributed power generation (DPG) modules capable to function in off-grid islanded, genset-connected, and grid-connected modes of operation. System efficiency has an important role in order to harvest the maximum available renewable energy from dc or ac sources while providing power backup capability. A control strategy is proposed in off-grid islanded mode method based on the microgrid line-frequency control as agent of communication for energy control between the DPG modules. A critical case is where the ac load demand could be lower than the available power from the photovoltaic solar array, where the battery bank can be overcharged with unrecoverable damage consequences. The DPG voltage-forming module controls the battery charge algorithm with a frequency-generator function, and the DPG current source module controls its output current through a frequency-detection function. The physical installation between DPG modules is independent, since no additional communication wiring is needed between power modules, which represent another integration advantage within the microgrid-type application.
机译:本文提出了一种通过分布式发电(DPG)模块集成在微电网系统中的伪下降控制结构,该模块能够在离网孤岛,发电机组连接和电网连接的运行模式下运行。系统效率对于在提供备用电源的同时从直流或交流电源中获取最大的可再生能源具有重要作用。在离网孤岛模式方法中,提出了一种基于微电网线频控制作为DPG模块之间能量控制通信代理的控制策略。一个关键情况是交流负载需求可能低于光伏太阳能电池阵列的可用功率,在这种情况下,电池组可能会过度充电,从而造成不可恢复的损坏后果。 DPG电压形成模块通过频率发生器功能控制电池充电算法,而DPG电流源模块通过频率检测功能控制其输出电流。 DPG模块之间的物理安装是独立的,因为电源模块之间不需要额外的通信布线,这代表了微电网型应用程序的另一个集成优势。

著录项

  • 作者

    E Serban; H Serban;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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