Grid integration and application of Battery Energy Storage Systems

Maneesh Kumar, K. Shanmugam, Kaustove Pradeep, Matteo Filippone
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引用次数: 2

Abstract

Energy storage systems (ESS) provide numerous benefits like smart energy consumption, better grid management, cost-cutting, resilience, resource-saving, grid stability, etc. In this paper, various ESS techniques are compared in terms of the parameters such as capacity, cost of energy, energy density, round trip efficiency, response time, lifetime, etc. Among all the ESS, Li-ion Battery energy storage system (BESS) is found to be optimum for power applications due to research & technical advancements in power electronics & battery technologies. With a wide range of power and storage capacity, BESSs are designed for small-sized household applications to large scale systems used for utilities, industrial, commercial, defense, hospital applications. In this paper, a secondary distributed control technique is developed for BESS farms utility grid BESS plant along with a centralized plant controller at the PCC level. While designing these control algorithms care is taken to make the plant compliant with all grid codes, provide additional support to grid during contingencies, and also able to be operative in both grid connected and standalone modes. The BESS farm is modelled with three BESS units connected to the grid using IEC61131-PLC programming language, the operation is validated & analyzed under different operating conditions while considering the grid transitions, as well as the grid management during contingencies by providing voltage frequency support, reactive power control at PCC by controlling the power factor as per the IEEE1547-2018 reactive power control methodologies.
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电池储能系统的并网与应用
储能系统(ESS)提供了许多好处,如智能能源消耗、更好的电网管理、成本削减、弹性、资源节约、电网稳定性等。本文对各种ESS技术在容量、能量成本、能量密度、往返效率、响应时间、寿命等参数方面进行了比较。在所有ESS中,由于电力电子和电池技术的研究和技术进步,锂离子电池储能系统(BESS)被认为是电力应用的最佳选择。bess具有广泛的功率和存储容量,专为小型家庭应用而设计,用于公用事业,工业,商业,国防,医院应用的大型系统。本文提出了一种针对BESS电厂的二次分布式控制技术,并在PCC级建立了集中式电厂控制器。在设计这些控制算法时,要注意使电厂符合所有电网规范,在紧急情况下为电网提供额外的支持,并且能够在并网和独立模式下运行。BESS发电厂使用IEC61131-PLC编程语言对三个连接到电网的BESS机组进行建模,在不同的运行条件下进行运行验证和分析,同时考虑到电网转换,以及通过提供电压频率支持在突发事件期间进行电网管理,根据IEEE1547-2018无功功率控制方法通过控制功率因数在PCC进行无功功率控制。
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