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Stabilization of large power systems using VSC-HVDC and model predictive control

机译:使用VSC-HVDC和模型预测控制来稳定大型电力系统

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Summary form only given. This paper demonstrates the stabilization of large power systems using voltage source converter based high voltage direct current (VSC-HVDC) links. Based on global power system measurements, a model predictive controller (MPC) manipulates the power injections of the HVDC links to keep the AC system in synchronism. The grid controller explicitly accounts for constraints and the future behavior of the system. Different scenarios like the loss of production, the loss of consumption and changes to the grid topology are studied in the continental European Network of Transmission System Operators for Electricity (ENTSO-E) system. The simulations illustrate the performance enhancement obtained with a global MPC-based grid controller, compared to a local damping controller and HVDC links with constant reference values.
机译:仅提供摘要表格。本文演示了使用基于电压源转换器的高压直流(VSC-HVDC)链路的大型电力系统的稳定度。基于全球电力系统的测量,模型预测控制器(MPC)操纵HVDC链路的电力注入,以保持AC系统同步。网格控制器明确考虑了约束和系统的未来行为。在欧洲大陆输电系统运营商网络(ENTSO-E)系统中研究了不同的情况,例如生产损失,能耗损失和电网拓扑变化。该仿真说明了与基于局部阻尼控制器和具有恒定参考值的HVDC链路相比,使用基于MPC的全局电网控制器所获得的性能增强。

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