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Centralized nonlinear switching control strategy for distributed energy storage systems communicating via a network with large time delays

机译:具有大型时间延迟的网络通信的分布式能量存储系统的集中式非线性交换控制策略

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This paper proposes a novel centralized switching controller for the state of charge balancing of battery energy storage systems distributed in a DC microgrid. The main advantage of the proposed controller is that it can tolerate non-uniform and time-varying delays in the communication links between a central processor and each battery energy storage system. The central processor generates predictive estimates of the renewable energy generation/load and state of charge of each battery energy storage. The switching controller uses the predictive estimates to generate participation rates of battery energy storage systems. The proposed control strategy is integrated with the primary droop control and the secondary voltage control for the power sharing and microgrid voltage restoration. In addition, the proposed control method guarantees that the active battery energy storage systems are either charging or discharging thus eliminating circulating currents. RTDS real-time simulator is used to verify the proposed large time delay tolerant control scheme on a DC microgrid with four distributed battery energy storage systems, loads and a PV generation. Moreover, mathematically rigorous analysis of the proposed control scheme is given.
机译:本文提出了一种新型集中交换控制器,用于分布在DC微电池中的电池能量存储系统的充电平衡状态。所提出的控制器的主要优点在于它可以容忍中央处理器和每个电池能量存储系统之间的通信链路中的不均匀和时变延迟。中央处理器产生可再生能源产生/负载和每个电池能量存储的充电状态的预测估计。切换控制器使用预测估计来产生电池能量存储系统的参与率。所提出的控制策略与主要下垂控制和电力共享和微电网恢复的二次电压控制集成。另外,所提出的控制方法保证了有源电池能量存储系统的充电或放电,从而消除循环电流。 RTDS实时模拟器用于验证DC MicroGrid中所提出的大型时间延迟容忍控制方案,具有四个分布式电池储能系统,负载和光伏生成。此外,给出了对所提出的控制方案的数学严格分析。

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