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Battery and backup generator sizing for a resilient microgrid under stochastic extreme events

机译:随机极端事件下可恢复的微电网的电池和备用发电机选型

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摘要

Owing to the recent power outages caused by extreme events, installing battery energy storage and backup generators is important to improve resiliency for a grid-tied microgrid. In the design stage, the event occurrence time and duration, which are highly uncertain and cannot be effectively predicted, may affect the needed battery and backup generator capacity but are usually assumed to be pre-determined in utility planning tools. This study investigates the optimal battery and backup generator sizing problem considering the stochastic event occurrence time and duration for the grid-tied microgrid under islanded operation. The reliability requirement is quantified by the mean value of the critical customer interruption time in each stochastic islanding time window (ITW), whose length is the duration and the centre is the occurrence time. The stochastic ITW constraint is then transformed to a probability-weighted expression to derive an equivalent Mixed Integer Linear Programming model. Numerical simulations on a realistic grid-tied PV-based microgrid demonstrate that the total cost is reduced by 11.5% considering the stochastic ITW, compared with the deterministic ITW under the same reliability requirement.
机译:由于最近发生的极端事件导致断电,因此安装电池储能和备用发电机对于提高并网微电网的弹性非常重要。在设计阶段,事件发生的时间和持续时间高度不确定,无法有效预测,可能会影响所需的电池和备用发电机容量,但通常假定是在公用事业规划工具中确定的。这项研究考虑孤岛操作下并网微电网的随机事件发生时间和持续时间,研究了最佳电池和备用发电机的选型问题。可靠性要求通过每个随机孤岛时间窗口(ITW)中关键客户中断时间的平均值来量化,其时间长度是持续时间,中心是发生时间。然后将随机ITW约束转换为概率加权表达式,以得出等效的混合整数线性规划模型。在实际的基于网格的基于PV的微电网上的数值模拟表明,与随机ITW相比,在相同可靠性要求下确定性ITW的总成本降低了11.5%。

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