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Distributed Cooperative Optimal Control of DC Microgrids With Communication Delays

机译:具有通信时延的直流微电网分布式协同最优控制

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摘要

One of the fundamental and challenging issues in microgrids is to guarantee fairness of load sharing while realizing voltage regulation of distributed generations. In order to address this issue, a new multiobjective optimization problem with tunable weighting coefficients is first formulated for dc microgrids. Second, a new distributed control scheme, which only requires local communications among neighbors, is proposed to solve the optimization problem. It is theoretically proved that the distributed control scheme can exponentially achieve the global optimal outputs of voltages and currents at distributed generations. Compared with a centralized control scheme, the proposed distributed control scheme provides remarkable advantages in improving reliability and scalability of microgrids. Third, the distributed control scheme is extended to accommodate a constant communication delay. The effects of the communication delay on the stability of microgrids are explicitly characterized. Finally, the performance of the proposed control schemes is evaluated by a modified six-bus microgrid with dc-powered trolleybus systems in terms of their convergence, robustness to load variations, plug-and-play functionality, tradeoff ability, and effects of communication delays.
机译:微电网中的基本问题和具有挑战性的问题之一是在实现分布式发电的电压调节的同时,确保负载分配的公平性。为了解决这个问题,首先为直流微电网制定了具有可调加权系数的新的多目标优化问题。其次,提出了一种新的分布式控制方案,该方案仅要求邻居之间进行本地通信,以解决优化问题。从理论上证明了分布式控制方案可以指数地实现分布式发电的电压和电流的全局最优输出。与集中控制方案相比,所提出的分布式控制方案在提高微电网的可靠性和可扩展性方面具有明显的优势。第三,扩展了分布式控制方案以适应恒定的通信延迟。明确表征了通信延迟对微电网稳定性的影响。最后,通过改进的六总线微电网和直流电无轨电车系统对所提出的控制方案的性能进行了评估,包括其收敛性,对负载变化的鲁棒性,即插即用功能,权衡能力以及通信延迟的影响。 。

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