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Decentralized-distributed robust electric power scheduling for multi-microgrid systems

机译:多微电网系统的分散分布式强大的电力调度

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摘要

This paper proposes a novel decentralized-distributed (DD) adaptive robust optimization (ARO) method to address the efficient distributed scheduling of multi-microgrid systems involving various entities, uncertainties and accidental communication failures. To avoid an unavailable coordination center of the whole network, a DD-ARO model is firstly proposed based on the parallelizing-distributed (PD) framework, which allocates the task of tie-line power coordination in the virtual center to the neighboring stakeholders. According to the properties of nonlinear ARO, a modified analytical target cascading method is further developed to formulate the consistency constraints on shared tie-lines, thus guaranteeing the optimality and enhancing the solution quality of the DD-ARO model. Finally, an iterative solution algorithm is proposed to efficiently solve the resulting multi-level nonconvex DD-ARO model. Case studies and computational results illustrate the effectiveness of the DD-ARO approach for an AC/DC hybrid multi-microgrid system under normal and faulty communications.
机译:本文提出了一种新颖的分散分布(DD)自适应稳健优化(ARO)方法,用于解决涉及各种实体,不确定性和意外通信故障的多微电网系统的有效分布式调度。为避免整个网络的不可用协调中心,首先基于并行分布(PD)框架提出了DD-ARO模型,该框架将虚拟中心的Tie-Line电源协调的任务分配给邻近利益相关者。根据非线性ARO的性质,进一步开发了一种改进的分析目标级联方法以配制共享系线上的一致性约束,从而保证了最佳性和增强DD-ARO模型的溶液质量。最后,提出了一种迭代解决方案算法,以有效地解决了所得的多级非透露DD-ARO模型。案例研究和计算结果说明了DD-ARO方法在正常和故障通信下AC / DC混合多微电网系统的有效性。

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