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首页> 外文期刊>IEEE Transactions on Industry Applications >Broadcast Gossip Algorithms for Distributed Peer-to-Peer Control in AC Microgrids
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Broadcast Gossip Algorithms for Distributed Peer-to-Peer Control in AC Microgrids

机译:交流微网中分布式对等控制的广播八卦算法

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This paper focuses on a fully distributed peer-to-peer control scheme for voltage regulation and reactive power sharing of multiple inverter-based distributed energy resources (DERs) in ac microgrids. The proposed peer-to-peer control strategy is fully distributed enabled through broadcast gossip communication, where each DER unit only requires local voltage and current measurement from its own and some (but not all) nearby neighbors for the voltage and reactive power sharing control. Employing the broadcast gossip communication protocol with attractive scalability and reliability properties, the control inputs can be updated to restore the voltage magnitudes at the point of common coupling to a desired value ensuring an accurate reactive power sharing for each DER. Since the proposed distributed controllers are implemented on local DERs, the central controller and hierarchy are no longer required. Accordingly, the microgrid system stability is preserved in the peer-to-peer requirements of line switches, which in turn, enables a plug-and-play operation of DERs and their robustness against microgrid topology change scenarios. Simulation studies in amodified IEEE 34-bus test network demonstrate the effectiveness and applicability of the proposed control strategy.
机译:本文着重于为交流微电网中的多个基于逆变器的分布式能源(DER)的电压调节和无功功率共享提供一种完全分布式的对等控制方案。所提议的对等控制策略是通过广播八卦通信完全分布式启用的,其中每个DER单元仅需要来自其自身和一些(但不是全部)附近邻居的本地电压和电流测量,以进行电压和无功功率共享控制。利用具有吸引力的可扩展性和可靠性的广播八卦通信协议,可以更新控制输入,以将公共耦合点的电压幅度恢复到所需值,从而确保每个DER的准确无功功率分配。由于建议的分布式控制器是在本地DER上实现的,因此不再需要中央控制器和层次结构。因此,微电网系统的稳定性保留在线路交换机的对等需求中,这反过来又使DER的即插即用操作及其对微电网拓扑变化场景的鲁棒性成为可能。在改进的IEEE 34总线测试网络中进行的仿真研究证明了所提出的控制策略的有效性和适用性。

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