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A Novel Multi-Stage Economic Dispatch of Microgrid Based on Consensus Protocol of Multi-Agent System

机译:基于多智能体系统共识协议的新型微电网多级经济调度

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Based on the multi-agent system, this paper presents a novel real-time optimization strategy for microgrid, in which distributed generations (DGs) are parallel-connected through droop control. The economic dispatch consists of three stages: 1). A first-order consensus protocol is adopted to obtain the optimal active power regardless of the voltage and frequency regulation. 2). To track the reference, a novel secondary-order consensus protocol is proposed. 3). To optimize the system frequency and voltage, another secondary-order consensus protocol is used to control the droop parameters adaptively. In this paper, the consensus protocol at each stage is fully distributed, in which each agent only requires its neighbors' information. Moreover, the system has globally asymptotic stability proved by the extended Lyapunov theorem. Lastly, simulation cases are studied to validate the proposed strategy.
机译:基于多智能体系统,本文提出了一种新的微电网实时优化策略,其中分布式发电系统通过下垂控制并联连接。经济调度包括三个阶段:1)。无论电压和频率调节如何,均采用一阶共识协议来获得最佳有功功率。 2)。为了跟踪参考,提出了一种新颖的二阶共识协议。 3)。为了优化系统频率和电压,另一个二级共识协议用于自适应地控制下垂参数。在本文中,每个阶段的共识协议都是完全分布式的,其中每个代理仅需要其邻居的信息。此外,该系统具有扩展的Lyapunov定理证明的全局渐近稳定性。最后,对仿真案例进行了研究,以验证所提出的策略。

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