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Inertia Emulation Based Sliding Mode Control of VSC HVDC System for Transmission of Power from Onshore Wind Farms to AC Grids

机译:基于惯性仿真的VSC HVDC系统的滑动模式控制,从陆上风电场传输到AC网格

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This paper proposes a novel control method for controlling voltage source converter (VSC) based high voltage direct current (HVDC) converters present in a network consisting of a Doubly Fed induction generator (DFIG) - wind farm (WF) connected to infinite bus via an HVDC line and a parallel tie line. A new idea has been presented where inertia emulation capability of capacitors present in HVDC network has been utilized with a nonlinear control such as sliding mode control method. In this method the DC voltage reference for the control is allowed to vary with the frequency deviations in the system for emulating the inertia characteristics of the DC link capacitance and thus controlling the power oscillations. The results of the proposed method are then compared with that of conventional PI control. The simulations results obtained in MATLAB proved the effectiveness in stabilizing the oscillations in case of various transient events such as fault and power reference variations of the DC link.
机译:本文提出了一种用于控制基于电压源转换器(VSC)的高压直流(HVDC)转换器的新型控制方法,该方法包括双馈电流发电机(DFIG) - 风电场(WF),通过A通过AN连接到无限总线。 HVDC线和平行系列。已经介绍了HVDC网络中的电容器的惯性仿真能力,其中包括滑模控制方法的非线性控制。在该方法中,允许对控制的DC电压参考随系统中的频率偏差而变化,用于模拟DC链路电容的惯性特性,从而控制功率振荡。然后将所提出的方法的结果与常规PI控制的结果进行比较。在MATLAB中获得的模拟结果证明了在各种瞬态事件的情况下稳定振荡的有效性,例如DC链路的故障和功率参考变体。

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