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Controlled Operation of the Islanded Portion of the International Council on Large Electric Systems (CIGRE) Low Voltage Distribution Network

机译:国际大型电气系统理事会(CIGRE)低压配电网孤岛部分的受控运行

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In islanding, a portion of the power network, comprised of the loads and distributed generation (DG) units, is isolated from the rest of the power grid and forms a micro grid (MG). In this condition, it becomes essential for the islanded MG to operate in a stable and controlled manner by providing ancillary services. When the MG is cut off from the main grid, the islanding must be detected by the DG units. In this condition it is essential that one of the controllers should be switched to the voltage-frequency (VF) control mode. In islanding, the network loses it slack reference and this reference is established by a VF controller. The voltage and the frequency of the islanded MG deviate when disconnected from the transmission grid and these deviations are caused by the load-generation imbalance. The voltage and the frequency of the islanded MG can be restored to the permissible limits if the desired/exceeded amount of active and reactive power is injected/absorbed by the locally available sources in islanded MG. This paper proposes a control strategy which can compensate the voltage and the frequency deviations in the islanded portion of the International Council on Large Electric Systems (CIGRE) low voltage distribution network by using advanced power electronics devices such as STATCOMs) for Photovoltaic (PV) Units and Battery Energy Storage Systems (BESS) STATCOMs (for battery units). The selection of the VF controller for the most suitable DG unit of this test network is also presented in this paper, and the effectiveness of the controllers is verified by presenting simulation results using DIgSILENT (DIgSILENT GmbH, Gomaringen, Germany) power factory software version 15.0.
机译:在孤岛中,由负载和分布式发电(DG)单元组成的一部分电网与其余电网隔离,形成微电网(MG)。在这种情况下,孤岛MG通过提供辅助服务以稳定和受控的方式运行至关重要。当MG从主电网断开时,孤岛必须由DG单元检测到。在这种情况下,必须将其中一个控制器切换到电压-频率(VF)控制模式。在孤岛中,网络丢失其松弛参考,并且该参考由VF控制器建立。当与输电网断开连接时,孤岛MG的电压和频率会发生偏差,这些偏差是由负载产生不平衡引起的。如果有希望/超出的有功功率和无功功率被孤岛MG的本地可用电源注入/吸收,孤岛MG的电压和频率可以恢复到允许的极限。本文提出了一种控制策略,该策略可以通过使用先进的电力电子设备(例如STATCOM)来补偿国际光伏系统(CIGRE)低压配电网孤岛部分的电压和频率偏差,该光伏设备用于光伏(PV)单元和电池储能系统(BESS)STATCOM(用于电池单元)。本文还介绍了该测试网络最适合的DG单元的VF控制器的选择,并通过使用DIgSILENT(德国Gomaringen的DIgSILENT GmbH)动力工厂软件15.0版提供的仿真结果来验证控制器的有效性。 。

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