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A Resilient Approach for Distributed MPC-Based Economic Dispatch in Interconnected Microgrids

机译:互联微电网中基于MPC的分布式经济调度的弹性方法

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Economic dispatch of interconnected microgrids that is based on distributed model predictive control (DMPC) requires the cooperation of all agents (microgrids). This paper discusses the case in which some of the agents might not comply with the decisions computed by performing a DMPC algorithm. In this regard, these agents could obtain a better performance at the cost of degrading the performance of the network as a whole. A resilient distributed method that can deal with such issues is proposed and studied in this paper. The method consists of two parts. The first part is to ensure that the decisions obtained from the algorithm are robustly feasible against most of the attacks with high confidence. In this part, we employ a two-step randomization-based approach to obtain a feasible solution with a predefined level of confidence. The second part consists in the identification and mitigation of the adversarial agents, which utilizes hypothesis testing with Bayesian inference and requires each agent to solve a mixed-integer problem to decide the connections with its neighbors. In addition, an analysis of the decisions computed using the stochastic approach and the outcome of the identification and mitigation method is provided. The performance of the proposed approach is also shown through numerical simulations.
机译:基于分布式模型预测控制(DMPC)的互连微电网的经济调度需要所有主体(微电网)的合作。本文讨论了某些代理可能不符合通过执行DMPC算法计算出的决策的情况。在这方面,这些代理可以以降低整个网络的性能为代价获得更好的性能。提出并研究了一种可以解决此类问题的弹性分布式方法。该方法包括两个部分。第一部分是确保从算法中获得的决策对于大多数攻击都具有很高的置信度,是鲁棒可行的。在这一部分中,我们采用基于两步随机化的方法来获得具有预定义置信度的可行解决方案。第二部分包括对抗性代理的识别和缓解,它利用贝叶斯推断进行假设检验,并要求每个代理解决混合整数问题,以决定与其邻居的联系。此外,还提供了使用随机方法计算的决策分析以及识别和缓解方法的结果。还通过数值模拟显示了所提出方法的性能。

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