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Power Electronic Converter Configurations Integration with Hybrid Energy Sources - A Comprehensive Review for State-of the-Art in Research

机译:电力电子转换器配置与混合能源集成 - 全面审查最先进的研究

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摘要

The electricity demand is increasing day by day. On the other side, fossil fuels are depleting at a higher rate. The abundantly available renewable energy sources like solar, wind, and fuel cells are becoming popular sources of energy. But due to the intermittent availability of these renewable energy sources, two or more energy sources are integrated together. Power electronic converters are used for integrating different energy sources. Various power electronic converter (PEC) topologies have been proposed and analyzed in detail to control maximum power point, voltage, frequency, and harmonic distortions. Each of these configurations will differ in its topology and operating principle. The objective of this paper is to present a comprehensive review of various aspects of PEC configurations available for integration of renewable energy sources by systematization into three groups (AC shunt coupled, DC shunt coupled, and hybrid coupled systems). Emphasis is also given to coordination power control, maximum power point, and grid integration challenges related to the hybrid energy system. Furthermore, a general, system modeling of solar, wind, and grid integration is presented here to give an overall picture of a hybrid renewable energy system.
机译:电力需求日益增加。另一方面,化石燃料以更高的速度耗尽。大量可用的可再生能源,如太阳能,风和燃料电池正在成为流行的能源。但由于这些可再生能源的间歇可用性,两个或多个能源集成在一起。电力电子转换器用于集成不同的能源。已经详细提出和分析了各种电力电子转换器(PEC)拓扑,以控制最大功率点,电压,频率和谐波扭曲。这些配置中的每一个都会在其拓扑和操作原理中不同。本文的目的是展示可用于将可再生能源集成到三组(交流分流耦合,直流分流耦合和混合耦合系统)的可用于将可再生能源集成的PEC配置的各个方面的全面审查。强调还提供与混合能源系统相关的协调功率控制,最大功率点和网格集成挑战。此外,这里介绍了太阳能,风和网格集成的一般系统建模,以提供混合可再生能源系统的整体图像。

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