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A distributed gossip-based voltage control algorithm for peer-to-peer microgrids

机译:基于分布式的基于Gossip的对等微电网的电压控制算法

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As more distributed energy resources (DERs) such as PV generation, batteries and electrical vehicles are installed in the distribution grid, controlling the voltage to be within allowed limits is becoming a major challenge. A possible solution is to actively use the active and reactive power control capabilities of these DERs to keep the voltage within limits. For this purpose, new control algorithms have to be developed that are able to coordinate the DERs and allow them to participate in voltage control. In this perspective, this paper presents a novel voltage control algorithm, based on peer-to-peer control and gossiping communication. The proposed algorithm is able to operate in a distributed manner, with no central coordinator, thereby keeping all control local and eliminating any single point of failure. The algorithm can be executed asynchronously, with limited data exchange between the agents. A case study is presented, showing the ability of the proposed control algorithm to follow rapidly changing load profiles as encountered in the distribution grid, thereby keeping the voltage within tight limits.
机译:随着诸如光伏生成,电池和电动车辆的更多分布式能源(DER)安装在分配网格中,控制允许限制范围内的电压正成为一项重大挑战。可能的解决方案是主动使用这些DER的主动和无功功率控制能力来保持限制内的电压。为此目的,必须开发新的控制算法,其能够协调DER并允许它们参与电压控制。在这种观点中,本文提出了一种基于对等控制和闲话通信的新型电压控制算法。所提出的算法能够以分布式方式操作,没有中央协调器,从而保持所有控制局部并消除任何单个故障点。该算法可以异步地执行,代理之间的数据交换有限。提出了一个案例研究,显示了所提出的控制算法遵循在分配网格中遇到的快速改变负载曲线的能力,从而将电压保持在紧密限制内。

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