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Operating compressed-air energy storage as dynamic reactive compensator for stabilising wind farms under grid fault conditions

机译:运行压缩空气储能,作为动态无功补偿器,在电网故障情况下稳定风电场

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摘要

Compressed-air energy storage (CAES) is considered a promising energy storage system for many grid applications, including managing renewable variability and grid capacity concerns. However, compared with conventional generation such as coal or hydro, the cost of storage power of CAES is still high, which impedes its deployment. Therefore a standing question is how to operate CAES in the most efficient and economical fashion, that is, to exploit the system functions for maximum-possible benefit. This study investigates the CAES dynamic reactive capability used to stabilise wind farms under grid fault conditions. Two considered operation modes are motor mode with leading power factor and synchronous condenser mode. Analysis with a 60-MW wind farm and two types of popular wind turbines, namely stall-regulated and doubly fed induction-generatorbased WTs, shows that the CAES performance is comparable or better than that of an static var compensator in most situations investigated. Therefore the reactive-power-supply function should be considered in CAES design and operation to increase the system efficiency and value.
机译:压缩空气储能(CAES)被认为是用于许多电网应用的有前途的储能系统,包括管理可再生能源的可变性和电网容量问题。然而,与诸如煤或水力发电的常规发电相比,CAES的存储电力成本仍然很高,这阻碍了其的部署。因此,一个长期存在的问题是如何以最有效,最经济的方式操作CAES,即如何利用系统功能以获得最大可能的收益。这项研究调查了用于稳定电网故障条件下的风电场的CAES动态无功能力。考虑的两种运行模式是功率因数超前的电动机模式和同步电容器模式。用60兆瓦的风电场和两种流行的风力涡轮机进行分析,即失速调节和双馈感应式发电机WT,在大多数调查情况下,CAES性能与静态无功补偿器相当或更好。因此,在CAES设计和运行中应考虑无功电源功能,以提高系统效率和价值。

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  • 来源
    《Renewable Power Generation, IET》 |2013年第6期|717-726|共10页
  • 作者

    Le H.T.; Santoso S.;

  • 作者单位

    Department of Electrical and Computer Engineering, The University of Texas at Austin, Austin, Texas 78712, USA|c|;

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