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On optimal participation in the electricity markets of wind power plants with battery energy storage systems

机译:利用电池储能系统最佳参与风力发电厂的电力市场

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The recent cost reduction and technological advances in medium- to large-scale battery energy storage systems (BESS) makes these devices a true alternative for wind producers operating in electricity markets. Associating a wind power farm with a BESS (the so-called virtual power plant (VPP)) provides utilities with a tool that converts uncertain wind power production into a dispatchable technology that can operate not only in spot and adjustment markets (day-ahead and intraday markets) but also in ancillary services markets that, up to now, were forbidden to non-dispatchable technologies. What is more, recent studies have shown capital cost investment in BESS can be recovered only by means of such a VPP participating in the ancillary services markets. We present in this study a multi-stage stochastic programming model to find the optimal operation of a VPP in the day-ahead, intraday and secondary reserve markets while taking into account uncertainty in wind power generation and clearing prices (day-ahead, secondary reserve, intraday markets and system imbalances). A case study with real data from the Iberian electricity market is presented. (C) 2018 Elsevier Ltd. All rights reserved.
机译:中大型电池储能系统(BESS)的最新成本降低和技术进步,使这些设备成为在电力市场运营的风力发电商的真正替代产品。将风力发电场与BESS(所谓的虚拟电厂(VPP))相关联,为公用事业提供了一种工具,可将不确定的风力发电转换为可调度的技术,该技术不仅可以在即期市场和调整后市场中运行(日间和日内市场),但在迄今为止禁止使用不可分派技术的辅助服务市场中也是如此。而且,最近的研究表明,只有通过这样的VPP参与辅助服务市场,才能收回对BESS的资本成本投资。我们在这项研究中提出了一个多阶段随机规划模型,以在日间,日内和二级备用市场中找到VPP的最佳运行,同时考虑到风力发电和结算价格的不确定性(日间,二级备用) ,日内市场和系统失衡)。提出了一个案例研究,其中包含来自伊比利亚电力市场的真实数据。 (C)2018 Elsevier Ltd.保留所有权利。

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