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Optimizing coordinated control of distributed energy storage system in microgrid to improve battery life

机译:优化微电网中分布式能量存储系统的协调控制,提高电池寿命

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Microgrids based on renewable energy require energy storage systems to mitigate the power imbalances that arise due to variable and intermittent nature of renewable sources. Battery energy storage system (BESS) has been widely used to provide the necessary support. However, higher cost and limited life depending on number of charging and discharging cycles, restricts its application. The calendar life of the BESS can be improved by optimizing the control operation of the battery. This paper presents a control strategy for distributed BESS in a centrally controlled microgrid to enhance the calendar life of BESS. The proposed strategy controls the charging and discharging of individual batteries based on state of charge (SOC), state of health (SOH) and maximum capacity. The controller selects the BESS with better health and higher capacity for operation on priority resulting in better calendar life of the energy storage system. The simulations results for the test system indicates an overall improvement in calendar life of BESS by 57%. (C) 2020 Elsevier Ltd. All rights reserved.
机译:基于可再生能量的微电网需要能量存储系统来减轻由于可再生源的可变和间歇性而产生的功率不平衡。电池储能系统(BESS)已被广泛用于提供必要的支持。然而,根据充电和放电循环的数量,更高的成本和有限的寿命,限制了其应用。通过优化电池的控制操作,可以改善BESS的日历寿命。本文介绍了集中控制的微电网中分布式BES的控制策略,以增强贝塞的日历寿命。该策略基于充电状态(SOC),健康状况(SOH)和最大容量来控制各个电池的充电和放电。控制器选择具有更好的健康和更高的操作能力的BESS,从而优先级,从而产生更好的能量存储系统的日历寿命。测试系统的模拟结果表明BESS的日历寿命的总体改善57%。 (c)2020 elestvier有限公司保留所有权利。

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