利用HESS D-FACTS缓解电压骤降同步方法的最新进展

M. Khaleel, N. El-Naily, Hamdi Alzargi, Mohamed R. Amer, Tahir Ghandoori, A. Abulifa
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引用次数: 2

摘要

混合储能系统(HESS)对电网的贡献正在迅速增长。最近人们对HESS集成到PG中的兴趣对分布式柔性交流输电系统(DFACTS)技术提出了挑战,该技术基于包括锁相环(PLL)和同步参考框架(SRF-PLL)在内的同步方法来消除电压暂降。毋庸置疑,越来越多的人意识到PG中几种故障情况造成的电压凹陷损害,因此,降低电能质量(PQ)问题和温室气体排放是使用D-FACTS技术消除PG中电压凹陷的主要驱动因素。本文成功地用包含光伏(PV)模块、燃料电池(FC)和锂电池的HESS的PG代替了储能系统。HESS迅速控制了电压并降低了成本。此外,本文还提供了一个概念框架,通过消除电压凹陷来增强优越的PG。在这种情况下,锁相环和SRF-PLL在电网控制和逆变器运行中起着至关重要的作用。d - fat技术旨在消除电压凹陷,提高PQ。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent Progress in Synchronization Approaches to Mitigation Voltage Sag Using HESS D-FACTS
The contribution of a hybrid energy storage system (HESS) is expediently growing at the power grid (PG). Recent interest in the integration of HESS into the PG poses a challenge to distributed flexible ac transmission system (DFACTS) technology based on the synchronization approaches including a phase-locked loop (PLL) and synchronous reference frame (SRF-PLL) to eliminate the voltage sag. Needless to say, there is growing awareness of the voltage sag damage caused by several fault scenarios in the PG. Thus, reducing power quality (PQ) problems and greenhouse gas emissions are the main driver to eliminate voltage sag in the PG using D-FACTS technology. This article has successfully replaced the energy storage system with the PG with HESS inclusion photovoltaic (PV) Module, Fuel Cell (FC), and lithium battery. The HESS quickly gained control of voltage and reduced costs. Moreover, this article contributes to providing a conceptual framework to enhance a superior PG by eliminating voltage sag. In this context, PLL and SRF-PLL play a crucial role in control as well as inverters’ operation for the power grid. The D-FATS technology is designed to eliminate voltage sag to improve PQ.
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