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Optimal Online Control of Multiple Battery Energy Storage Systems for Primary Frequency Control

机译:用于初级频率控制的多电池储能系统的最佳在线控制

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Battery energy storage system (BESS) has been recognized as a promising candidate for primary frequency control (PFC), thanks to its flexibility and fast response time. In this paper, we consider an aggregator that coordinates a number of BESSs to provide PFC service in the ancillary service market. To increase the profitability of the system, we propose an optimal online multi-BESS control algorithm that minimizes the penalty cost due to regulation failure. The algorithm is "online" in the sense that the control decisions are made without any knowledge of future information. Through rigorous analysis, we show that the proposed online algorithm achieves exactly the same performance as the optimal offline control, which assumes perfect knowledge of future information. Moreover, the computational complexity of the proposed algorithm is as low as solving a linear programming problem. Numerical results show that the proposed algorithm significantly outperforms a number of benchmark algorithms. Our work provides a useful theoretical foundation for optimal multi-BESS control that maximizes the economic benefits of BESSs in the ancillary service market.
机译:由于其灵活性和快速响应时间,电池储能系统(BESS)被认为是主要频率控制(PFC)的有希望的候选者。在本文中,我们考虑一个聚合器,该聚合器协调一些BESS,以提供辅助服务市场的PFC服务。为了提高系统的盈利能力,我们提出了一种最佳的在线多BESS控制算法,可根据调节故障最小化罚款成本。该算法在没有任何未来信息的情况下进行控制决策的意义上是“在线”。通过严格的分析,我们表明所提出的在线算法与最佳离线控制完全相同的性能,这假设对未来信息的完美了解。此外,所提出的算法的计算复杂度与求解线性编程问题一样低。数值结果表明,所提出的算法显着优于许多基准算法。我们的工作为最佳多贝尔斯控制提供了一个有用的理论基础,最大限度地提高了辅助服务市场中贝塞斯的经济效益。

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