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A control strategy for a multi-terminal HVDC network integrating wind farms to the AC grid

机译:将风电场整合到交流电网的多终端HVDC网络的控制策略

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This paper describes a novel control strategy of voltage source converters (VSC) in large-scale wind farm applications, in order to achieve a constant DC voltage for connecting to the long transmission system based on multi-terminal high voltage direct current (HVDC) technology. The control strategy is based on a multi-loop current and voltage control for tracking the predetermined value of the DC link voltage in the rectifier side station to achieve proper performance in the irregular circumstances of wind farm operation. In addition, the control strategy is able to transmit the maximum input power to the consumption side in different situations in grid side converter. Grid connection of the HVDC system is analysed under two conditions: balanced AC grid, and connection of unbalanced nonlinear load into the AC grid. The control strategy guarantees injection of minimum harmonic current components from the grid to the loads. MATLAB simulation results are presented to demonstrate the effectiveness of the proposed strategy for different types of variations in AC voltage amplitude and frequency of wind turbines output voltage. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文描述了一种新的控制策略,用于大规模风电场应用中的电压源转换器(VSC),以实现基于多端子高压直流(HVDC)技术的恒定直流电压,以连接到长输电系统。该控制策略基于多回路电流和电压控制,用于跟踪整流器侧站中直流母线电压的预定值,以在风电场运行不规则的情况下实现适当的性能。另外,控制策略能够在电网侧变流器中的不同情况下将最大输入功率传输到消耗侧。在以下两个条件下分析了高压直流输电系统的电网连接:平衡的交流电网和不平衡的非线性负载与交流电网的连接。该控制策略可确保从电网向负载注入最小的谐波电流分量。给出了MATLAB仿真结果,以证明所提出的策略对于风力发电机输出电压的交流电压幅度和频率的不同类型变化的有效性。 (C)2017 Elsevier Ltd.保留所有权利。

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