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Adaptive Droop Control of Multi-Terminal HVDC Network for Frequency Regulation and Power Sharing

机译:多终端HVDC网络进行频率调节和电力共享的自适应下垂控制

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This paper proposes a novel adaptive droop control strategy for multi-terminal HVDC (MTHVDC) network to provide frequency support and power sharing via a distributed consensus algorithm. The droop coefficient is adaptively tuned by an effective integration of optimization algorithms and frequency consensus method. The optimization control aims to minimize generation cost, frequency deviation cost, and converter losses. Furthermore, the coordination between the consensus-based droop controller and the optimization technique is established by a feedback loop of coupling gain solution method, which is based on coupling gain matrix. The proposed control is successfully applied to a four-terminal MTHVDC system and modified New England 39-bus system on PSCAD. Power sharing is further improved by adding an adjustment factor based on frequency deviation with coupling gain matrix, which redirects power flow in ac and dc sub-grids. In addition, the loss reduction of voltage source converters is presented to demonstrate the proposed control performance.
机译:本文提出了一种用于多终端HVDC(MTHVDC)网络的新型自适应下垂控制策略,通过分布式共识算法提供频率支持和功率共享。通过优化算法和频率共识方法的有效集成,自适应地调整下垂系数。优化控制旨在最大限度地减少生成成本,频率偏差成本和转换器损耗。此外,通过耦合增益解决方法的反馈回路建立了基于共识的下垂控制器和优化技术的协调,其基于耦合增益矩阵。建议的控制成功应用于四端MTHVDC系统,并在PSCAD上修改了新英格兰39总线系统。通过基于耦合增益矩阵的频率偏差添加调整因子,进一步改善了电力共享,其重定向AC和DC子网格中的功率流。此外,提出了电压源转换器的损耗减小以展示所提出的控制性能。

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