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Coordinated scheduling model of power system with active distribution networks based on multi-agent system

机译:基于多Agent系统的配电网与电力系统协调调度模型

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摘要

With the large-scale development of distributed generations(DGs) and the connection into the main grid of active distribution networks(ADNs), traditional centralized dispatch of power system has encountered enormous challenge. In a bilateral electricity market, introducing ADN resources in the day-ahead generation schedule will not only enrich the dispatch patterns to the power system,but also reflect the initiative of ADNs. This paper proposes a coordinated scheduling model of power system with a plurality of ADNs based on multi-agent system where ADN agents are brought in the day-ahead market clearing.The process of market clearing and the dispatch of DGs in ADNs are independent with each other but linked together through the market clearing price(MCP) and bid volume.The optimal operating point of the whole system is achieved through multiple information exchange. In comparison with the dispatch without interaction between ADNs and the market operator(MO), the coordinated scheduling model is applied in a system with four ADNs to verify that the proposed method can improve the overall interests of ADNs. Finally, the effects of storage device and tie-line power limit are analyzed.
机译:随着分布式发电(DG)的大规模发展以及与有源配电网(ADN)主电网的连接,传统的电力系统集中式调度面临着巨大的挑战。在双边电力市场中,在日间提前发电计划中引入ADN资源不仅将丰富电力系统的调度模式,而且还反映了ADN的主动性。本文提出了一种基于多Agent系统的电力系统协调调度模型,该系统基于多Agent系统,将ADN代理引入日间市场清算中.ADN中的市场清算过程和DG的调度是相互独立的另一个是通过市场清算价格(MCP)和投标量联系在一起的。整个系统的最佳运行点是通过多次信息交换来实现的。与没有ADN和市场运营商之间的交互的调度相比,在具有四个ADN的系统中应用协调调度模型来验证所提出的方法可以提高ADN的整体利益。最后,分析了存储设备和联络线功率限制的影响。

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