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Coordinated Voltage Control Scheme for VSC-HVDC Connected Wind Power Plants

机译:VsC-HVDC联络风电场协调电压控制方案

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摘要

This paper proposes a coordinated voltage control scheme based on model predictive control (MPC) for voltage source converter‐based high voltage direct current (VSC‐HVDC) connected wind power plants (WPPs). In the proposed scheme, voltage regulation capabilities of VSC and WTGs are fully utilized and optimally coordinated. Two control modes, namely operation optimization mode and corrective mode, are designed to coordinate voltage control and economic operation of the system. In the first mode, the control objective includes the bus voltages, power losses and dynamic Var reserves of wind turbine generators (WTGs). Only the terminal voltages of WTGs are taken into account in the second mode. The predictive model of the system including VSC and WTGs is developed firstly. The calculation of sensitivity coefficients is done by an analytical method to improve the computational efficiency. Simulation results are presented to demonstrate the effectiveness of the proposed controller and the control performance is compared with conventional optimal control and loss minimization control. Besides, the robustness of the proposed controller to communication time delay and measurement errors is investigated in the last.
机译:本文针对基于电压源变流器的高压直流电(VSC-HVDC)连接的风电厂(WPP),提出了一种基于模型预测控制(MPC)的协调电压控制方案。在提出的方案中,VSC和WTG的电压调节能力得到了充分利用并得到了最佳协调。设计了两种控制模式,即运行优化模式和校正模式,以协调电压控制和系统的经济运行。在第一模式中,控制目标包括风力发电机的母线电压,功率损耗和动态无功功率储备。在第二种模式下,仅考虑了WTG的端电压。首先建立了包括VSC和WTG的系统的预测模型。灵敏度系数的计算是通过分析方法来完成的,以提高计算效率。仿真结果表明了所提出控制器的有效性,并将控制性能与常规最优控制和损耗最小化控制进行了比较。此外,最后研究了所提出的控制器对通信时间延迟和测量误差的鲁棒性。

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