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Harmonic compensation in distributed generation based micro-grid using droop control technique

机译:基于下垂控制技术的分布式发电微电网谐波补偿

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Increase in demand for electric power, industrial growth, environmental pollution etc. have led to think for alternative energy resources based on distributed generations. The distributed generation (DG) considered in our work includes fuel cells, photovoltaic systems, wind energy systems etc. The micro-grid formulation by integrating various DG with the conventional power system through power electronic converters showing better performance and reliability. Again, due to increase of power electronic devices, many of the loads within micro-grid are nonlinear in nature, so, the harmonic pollution is caused due to this. In this paper, a novel strategy for harmonic compensation in micro-grid based on droop control of interface converters is proposed. The operation principle is explained in detail. The simulation results performed by MATLAB/SIMULINK shows the harmonic damping capability of the proposed strategy.
机译:电力需求的增长,工业增长,环境污染等导致人们开始考虑基于分布式发电的替代能源。在我们的工作中考虑的分布式发电(DG)包括燃料电池,光伏系统,风能系统等。通过将各种DG与通过电力电子转换器的常规电力系统集成在一起的微电网公式显示出更好的性能和可靠性。再次,由于电力电子设备的增加,微电网内的许多负载本质上是非线性的,因此,由此引起了谐波污染。本文提出了一种新的基于接口变换器下垂控制的微电网谐波补偿策略。详细说明其工作原理。 MATLAB / SIMULINK进行的仿真结果表明了该策略的谐波阻尼能力。

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