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Harmonic mitigation in an islanded microgrid using a DSTATCOM

机译:使用DSTATCOM缓解孤岛微电网中的谐波

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The degree of proliferation of Distributed Energy Resources (DERs) and application of power electronics appliances are in demand. A microgrid can contain variety of sources such as diesel generator, wind turbine, PV arrays, micro-turbine and fuel cell. Usually these sources share power where the system frequency changes depending on the power supplied. On the other hand, the microgrid can contain harmonic loads that can affect the performance of the synchronous generators. These deleterious effects of distorting loads can be corrected using a distribution static compensator (DSTATCOM). In this paper, an isochronous control based droop strategy is employed that forces the microgrid to operate at the base frequency of 50 Hz. Therefore the DSTATCOM can be operated at 50 Hz. A closed-loop space vector pulse width modulation (SVPWM) technique is used for the DSTATCOM control. The scheme is validated through the extensive PSCAD/EMTDC simulation studies.
机译:对分布式能源(DERs)的扩散程度和电力电子设备的应用有需求。微电网可以包含各种来源,例如柴油发电机,风力涡轮机,光伏阵列,微型涡轮机和燃料电池。通常,这些电源共享功率,其中系统频率根据所提供的功率而变化。另一方面,微电网可能包含谐波负载,可能会影响同步发电机的性能。可以使用分布静态补偿器(DSTATCOM)纠正负载失真的这些有害影响。在本文中,采用了基于等时控制的下垂策略,该策略迫使微电网以50 Hz的基本频率运行。因此,DSTATCOM可以以50 Hz的频率运行。闭环空间矢量脉冲宽度调制(SVPWM)技术用于DSTATCOM控制。通过广泛的PSCAD / EMTDC仿真研究验证了该方案。

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