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Optimal DC microgrid power apportionment and closed loop storage control to mitigate source and load transients

机译:最佳的直流微电网功率分配和闭环存储控制,以减轻源和负载瞬变

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This paper considers the optimal management of an N source, DC microgrid with time-varying sources and loads. Optimality is defined as minimizing the amount of power lost through the boost converters that connect the N sources to the DC bus. The optimal power apportionment strategy is part of an overall grid management system that also includes control laws that manage bus voltage and boost currents using distributed energy storage. The performance of an optimal power apportionment strategy is compared to an existing, alternate approach using a three source simulation for both source and load step transients. The optimal power apportionment strategy is shown to use less power while maintaining bus voltage in the presence of both load and source transients. Since the optimal solution requires information exchange between all the sources, there is an opportunity for malicious attack. The ability of the strategy to maintain the desired bus voltage in the presence of an uncommunicated source failure is also presented.
机译:本文考虑具有时变源和负载的N源,DC微电网的最佳管理。最佳性定义为最小化通过将N个电源连接到DC总线的升压转换器损失的功率。最佳功率分配策略是整个电网管理系统的一部分,该系统还包括使用分布式能量存储来管理母线电压和升压电流的控制定律。最佳功率分配策略的性能与现有的替代方法进行了比较,该方法使用三个源模拟来模拟源和负载阶跃瞬变。最佳的功率分配策略表明,在负载和电源瞬变同时存在的情况下,在维持总线电压的同时使用较少的功率。由于最佳解决方案需要所有来源之间的信息交换,因此存在遭受恶意攻击的机会。还提出了在出现无法通信的电源故障的情况下维持所需总线电压的策略的能力。

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