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A Decentralized Architecture Based on Cooperative Dynamic Agents for Online Voltage Regulation in Smart Grids

机译:基于协作动态代理的智能电网在线调压分散架构

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The large-scale integration of renewable power generators in power grids may cause complex technical issues, which could hinder their hosting capacity. In this context, the mitigation of the grid voltage fluctuations represents one of the main issues to address. Although different control paradigms, based on both local and global computing, could be deployed for online voltage regulation in active power networks, the identification of the most effective approach, which is influenced by the available computing resources, and the required control performance, is still an open problem. To face this issue, in this paper, the mathematical backbone, the expected performance, and the architectural requirements of a novel decentralized control paradigm based on dynamic agents are analyzed. Detailed simulation results obtained in a realistic case study are presented and discussed to prove the effectiveness and the robustness of the proposed method.
机译:可再生能源发电机在电网中的大规模集成可能会导致复杂的技术问题,从而可能阻碍其托管能力。在这种情况下,减轻电网电压波动是要解决的主要问题之一。尽管可以将基于本地和全局计算的不同控制范例部署到有源电力网络中的在线电压调节中,但仍受可用计算资源和所需控制性能影响的最有效方法的确定仍在进行中一个开放的问题。为了解决这个问题,本文分析了基于动态代理的新型分散控制范式的数学主干,预期性能和体系结构要求。提出并讨论了在实际案例研究中获得的详细仿真结果,以证明所提方法的有效性和鲁棒性。

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