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Control of Battery Storage Systems for the Simultaneous Provision of Multiple Services

机译:同时提供多种服务的电池存储系统控制

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In this paper, we propose a control framework for a battery energy storage system (BESS) to provide simultaneously multiple services to the electrical grid. The objective is to maximize the battery exploitation from these services in the presence of uncertainty (load, stochastic distributed generation, and grid frequency). The framework is structured in two phases. In a period-ahead phase, we solve an optimization problem that allocates the battery power and energy budgets to the different services. In the subsequent real-time phase the control set-points for the deployment of such services are calculated separately and superimposed. The control framework is first formulated in a general way and then casted in the problem of providing dispatchability of a medium voltage feeder in conjunction to primary frequency control. The performance of the proposed framework are validated by simulations and real-scale experiments, performed with a grid-connected 560 kWh/720 kVA Li-ion BESS.
机译:在本文中,我们提出了一种用于电池能量存储系统(BESS)的控制框架,以同时向电网提供多种服务。目的是在存在不确定性(负载,随机分布式发电和电网频率)的情况下,最大限度地利用这些服务来利用电池。该框架分为两个阶段。在提前阶段,我们解决了一个优化问题,该问题将电池电量和能源预算分配给了不同的服务。在随后的实时阶段中,将单独计算并叠加用于部署此类服务的控制设置点。首先以一般方式制定控制框架,然后提出与中频控制相结合提供中压馈线可调度性的问题。通过并网连接560 kWh / 720 kVA锂离子BESS进行的仿真和实际实验验证了所提出框架的性能。

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