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Modeling and Simulation of BESS-Upgraded Power Transmission Systems for Frequency Control

机译:BEss升级变频调速系统的建模与仿真

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摘要

This thesis reports on the evaluation of the impact of a battery energy storage system (BESS) on the voltage and frequency stability of a power transmission system. With the increased penetration of renewable energy sources, particularly wind power, into the power system network new challenges regarding the two major concerns in the transportation and distribution of electrical energy, i.e. power quality and system stability, are being experienced. One way to reduce these concerns is the application of MW-level Battery Energy Storage Systems (BESSs). Despite a long-standing interest in the BESS technology, its application in the transmission system had not been seriously considered until relatively recently. Since the main focus for this study is frequency stability, a comprehensive discussion on frequency control, including primary and secondary frequency controls is included. This provides the opening for the evaluation of the impact of the BESS on system frequency. In addition, this thesis outlines several BESS installations from early 1980s to today’s state of the art technology.The thesis conducts research using modeling and simulation in PSCAD and PowerWorld environments to carry out a comprehensive assessment of the impact of the BESS technology to ameliorate the frequency excursions that follow a power load increase in a high-voltage transmission system and providing effective voltage support.In brief, the findings of this thesis indicate the positive influence of the BESS on the power transmission system stability.
机译:本文报道了电池储能系统(BESS)对输电系统的电压和频率稳定性的影响评估。随着可再生能源,特别是风力发电,越来越多地渗透到电力系统网络中,有关电能的运输和分配的两个主要问题,即电能质量和系统稳定性,面临着新的挑战。减少这些担忧的一种方法是应用MW级电池储能系统(BESS)。尽管对BESS技术有着长期的兴趣,但是直到最近才对其在传输系统中的应用进行了认真的考虑。由于本研究的主要重点是频率稳定性,因此对频率控制进行了全面的讨论,包括一次和二次频率控制。这为评估BESS对系统频率的影响提供了机会。此外,本文概述了从1980年代初到当今技术水平的BESS安装。本文在PSCAD和PowerWorld环境中使用建模和仿真进行了研究,从而对BESS技术的影响进行了综合评估,以改善频率简而言之,本文的发现表明了BESS对输电系统稳定性的积极影响。

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  • 作者

    Farughian Amir;

  • 作者单位
  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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