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Diffusion Strategy-Based Distributed Operation of Microgrids Using Multiagent System

机译:基于Agent的基于扩散策略的微电网分布式运营

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摘要

In distributed operation, each unit is operated by its local controller instead of using a centralized controller, which allows the action to be based on local information rather than global information. Most of the distributed solutions have implemented the consensus method, however, convergence time of the consensus method is quite long, while diffusion strategy includes a stochastic gradient term and can reach convergence much faster compared with consensus method. Therefore, in this paper, a diffusion strategy-based distributed operation of microgrids (MGs) is proposed using multiagent system for both normal and emergency operation modes. In normal operation, the MG system is operated by a central controller instead of the distributed controller to minimize the operation cost. If any event (fault) occurs in the system, MG system can be divided into two parts to isolate the faulty region. In this case, the MG system is changed to emergency operation mode. The normal part is rescheduled by the central controller while the isolated part schedules its resources in a distributed manner. The isolated part carries out distributed communication using diffusion between neighboring agents for optimal operation of this part. The proposed method enables peer-to-peer communication among the agents without the necessity of a centralized controller, and simultaneously performs resource optimization. Simulation results show that the system can be operated in an economic way in both normal operation and emergency operation modes.
机译:在分布式操作中,每个单元都由其本地控制器操作,而不是使用集中式控制器,这使操作基于本地信息而不是全局信息。大多数分布式解决方案都实现了共识方法,但是,共识方法的收敛时间很长,而扩散策略包含一个随机梯度项,与共识方法相比,可以更快地达到收敛。因此,在本文中,针对正常和紧急运行模式,提出了使用多代理系统的基于扩散策略的微电网分布式运行。在正常操作中,MG系统由中央控制器而不是分布式控制器操作,以最大程度地降低操作成本。如果系统中发生任何事件(故障),则可以将MG系统分为两部分以隔离故障区域。在这种情况下,MG系统将更改为紧急操作模式。正常部分由中央控制器重新安排,而隔离部分以分布式方式安排其资源。隔离的部分使用相邻代理之间的扩散来执行分布式通信,以使该部分最佳运行。所提出的方法使代理之间的对等通信成为可能,而无需集中控制器,并且同时执行资源优化。仿真结果表明,该系统可以在正常运行和紧急运行两种模式下经济运行。

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