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Control and sizing of modular multilevel converter-based STATCOM with hybrid energy storage system for large-scale integration of wind farms with the grid

机译:用混合储能系统对基于模块化多级转换器的STATCOM的控制和尺寸,用于将风电场与电网的大规模集成

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A configuration of energy storage system with STATCOM features (E-STATCOM) using modular multilevel converter (MMC) is presented in this paper. It helps to integrate large wind farms into the grid complying grid codes. The E-STATCOM has the capability to provide active and reactive power supports according to the requirements. The proposed topology can handle higher power at improved efficiency compared to the conventional converter-based configurations. The energy storage system (ESS) of E-STATCOM is formed with battery and ultracapacitor to meet the demand of both high-power-density and high-energy-density loads. Also, the combination can improve the transient performance and lifespan of the battery. In this paper, the integration of hybrid energy storage system (H-ESS) with the MMC to form an E-STATCOM and associated control-related issues are discussed. An algorithm to balance the state of charge among the distributed ESS is proposed. A procedure to determine size of the H-ESS is also discussed. The complete system is simulated in PSCAD, and the effectiveness of E-STATCOM is checked for the integration of a large wind farm with the grid.
机译:本文介绍了使用模块化多级转换器(MMC)的具有STATCOM功能(E-Statcom)的能量存储系统的配置。它有助于将大型风电场整合到网格符合网格码。 E-Statcom具有根据要求提供主动和无功的支持。与传统的基于转换器的配置相比,所提出的拓扑可以以提高的效率处理更高的功率。 E-STATCOM的储能系统(ESS)由电池和超级电池组成,以满足高功率密度和高能密度负载的需求。此外,该组合可以改善电池的瞬态性能和寿命。在本文中,讨论了混合能量存储系统(H-ESS)与MMC形成E-Statcom的集成以及相关的控制相关问题。提出了平衡分布式ESS之间的充电状态的算法。还讨论了确定H-ESS大小的程序。完整的系统在PSCAD中模拟,并检查了E-Statcom的有效性,以将大型风电场与网格集成。

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