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Distributed cooperative control with lower generation cost for DC microgrid

机译:直流微电网分布式发电成本较低的协同控制

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This paper presents a distributed cooperative control that ensures reliable operation of DC Microgrid with lower generation cost without centralized controller. Centralized hierarchical multilevel controller is the commonly used controller in Microgrids, however it requires heavy communication network and present single point of failure. Therefore, the proposed controller is a distributed cooperative control that provide simple communication network infrastructure. The controller of each source exchanges data with only its neighbors on the communication network. The distributed cooperative controller that compare the generation cost of each source with a weighted average of its neighbors in the network. Accordingly, it generates a voltage correction term in order to adjust the local voltage set point and to provide lower generation cost in the microgrid. The performance of the proposed controller has been investigated and tested using MATLAB simulation program. Moreover, the efficacy of the proposed controller to changes in operational conditions and its resiliency against the loss of converters is also investigated.
机译:本文提出了一种分布式协作控制,无需集中控制器即可确保DC Microgrid的可靠运行,并降低发电成本。集中式分层多级控制器是微电网中常用的控制器,但是它需要庞大的通信网络,并且存在单点故障。因此,提出的控制器是一种分布式协作控制,可提供简单的通信网络基础结构。每个源的控制器仅与通信网络上的邻居交换数据。分布式协作控制器,用于将每个源的生成成本与其网络中邻居的加权平均值进行比较。因此,它产生电压校正项,以便调节局部电压设定点并在微电网中提供较低的发电成本。所提出的控制器的性能已使用MATLAB仿真程序进行了研究和测试。此外,还研究了所提出的控制器在操作条件变化方面的功效及其对转换器损耗的抵御能力。

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