Analysis of Battery Energy Storage System Integration in a Combined Cycle Power Plant

F. Kremer, Maxime Buquet, Hervé Biellmann, S. Rael, M. Urbain, Pierre Beaufrère
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引用次数: 2

Abstract

Grid power systems constantly seek innovative ways to improve their efficiency and flexibility with an ever-evolving mix, and more volatile markets. Energy storage systems could bring about these outcomes, as shown in multiple studies over the last decade. More recently, combining a thermal asset, herein a combined cycle power plant, and the Battery Energy Storage System creates the concept of so-called “PI-BESS”. The expected benefits of hardware and software integration for the grid are the enhanced flexibility and robustness. Moreover, the integration brings new opportunities and optimization for the owner of the thermal hybrid plant. Capable of using the best of the two assets, it optimizes timely power delivery to the grid, allows energy arbitrage depending upon market services requirement, or starts the powerplant without external help in case of grid failure. This paper particularly focuses on those outcomes and the design of the storage system.
联合循环电厂电池储能系统集成分析
电网电力系统不断寻求创新的方法来提高其效率和灵活性,以适应不断变化的组合和更不稳定的市场。正如过去十年的多项研究所显示的那样,储能系统可以带来这些结果。最近,将热资产(这里是联合循环发电厂)与电池储能系统相结合,创造了所谓的“PI-BESS”概念。硬件和软件集成对电网的预期好处是增强了灵活性和鲁棒性。此外,集成为热混合电厂的业主带来了新的机会和优化。它能够充分利用两种资产的优势,优化及时向电网供电,根据市场服务需求进行能源套利,或者在电网故障时无需外部帮助即可启动发电厂。本文重点介绍了这些结果和存储系统的设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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