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A Secondary Voltage Control Method for an AC/DC Coupled Transmission System Based on Model Predictive Control

机译:基于模型预测控制的交直流耦合输电系统二次电压控制方法

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摘要

For an AC/DC coupled transmission system, the change of transmission power on the DC lines will significantly influence the AC systems’ voltage. This paper describes a method to coordinated control the reactive power of power plants and shunt capacitors at DC converter stations nearby, in order to keep the voltage of the pilot bus tracking its set point considering the DC system’s transmission schedule change. The approach is inspired by model predictive control (MPC) to compensate for predictable voltage change affected by DC side transmission power flow and the potential capacitor switching at DC converter stations. The control strategies are calculated from a multi-step dynamic optimization problem that is solved by mixed integer quadratic programming method. Time-domain simulations showed positive results of the proposed voltage controller.
机译:对于AC / DC耦合传输系统,DC线路上传输功率的变化将显着影响AC系统的电压。本文介绍了一种协调控制附近直流换流站的发电厂和并联电容器无功功率的方法,以便在考虑直流系统的传输时间表变化的情况下,使引航母线的电压跟踪其设定点。该方法受到模型预测控制(MPC)的启发,以补偿受DC侧传输功率流和DC转换器站处的潜在电容器切换影响的可预测电压变化。控制策略是从一个多步动态优化问题中计算出来的,该问题通过混合整数二次规划方法得以解决。时域仿真显示了所提出的电压控制器的积极成果。

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