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Augmenting Wind Power Penetration and Grid Voltage Stability Limits Using ESS: Application Design, Sizing, and a Case Study

机译:使用ESS增强风电渗透率和电网电压稳定性极限:应用程序设计,大小调整和案例研究

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摘要

This paper presents a comprehensive energy storage system (ESS) application design for regulating wind power variation and increasing wind energy integration and grid voltage stability. The design includes a method for calculating a reference output profile, a charge-discharge scheme for directing the ESS operation, and an optimization-based method for determining ESS optimal rating. The efficacy of the application is validated via a case study with a large data set of 14 wind farms, compressed-air energy storage technology (CAES), and a 27-bus transmission grid. The results show that the use of the ESS is effective in reshaping the farms output and raising both the wind energy revenue and the grid voltage stability. For ESS optimal rating, the improvement in wind energy integration is between 1.7% and 8%. In addition, a net increase in the grid static voltage stability of 8.3%–18.3% is achieved by 13 of the 14 evaluated ESSs.
机译:本文提出了一种综合的能量存储系统(ESS)应用设计,用于调节风能变化并提高风能集成度和电网电压稳定性。该设计包括一种用于计算参考输出曲线的方法,一种用于指导ESS操作的充放电方案以及一种用于确定ESS最佳额定值的基于优化的方法。该应用程序的有效性通过一个案例研究得到了验证,该案例研究包含14个风电场的大型数据集,压缩空气储能技术(CAES)和27总线的传输网格。结果表明,使用ESS可以有效地重塑农场的产量,并提高风能收入和电网电压的稳定性。对于ESS最佳评级,风能集成的改善介于1.7%和8%之间。此外,通过评估的14个ESS中的13个,电网静态电压稳定性的净增加为8.3%–18.3%。

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