Blade-Shaft Torsional Oscillation Minimization of Wind Turbine Generator System by Using STATCOM/ESS

S. Muyeen, M. Ali, R. Takahashi, T. Murata, J. Tamura, Y. Tomaki, A. Sakahara, E. Sasano
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引用次数: 24

Abstract

In this paper, blade and shaft torsional oscillations of wind turbine generator system (WTGS) are analyzed when a network disturbance occurs in the power system. Many studies have been reported so far about the shaft torsional oscillations of synchronous generators. Though a large number of wind generators are going to be connected with the existing network, the blade-shaft torsional oscillations of WTGS have not been reported so far sufficiently. In this paper, damping control of blade-shaft torsional oscillations of WTGS by using a voltage source converter (VSC) based STATCOM/BESS (battery energy storage system) topology is proposed. The six-mass drive train model of WTGS is used in the simulation analyses for the sake of precise analysis. Both symmetrical and unsymmetrical faults are considered as a network disturbance in the analyses. Simulation results clearly show that the proposed STATCOM/BESS can significantly decrease the blade and shaft torsional oscillations of WTGS. The simulations have been done by PSCAD/EMTDC.
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基于STATCOM/ESS的风力发电系统叶片-轴扭振最小化
本文分析了电网扰动下风力发电系统叶片和轴的扭振问题。目前对同步发电机轴系扭振的研究较多。虽然将有大量的风力发电机接入现有的电网,但目前对WTGS叶片轴扭振的报道还不够充分。本文提出了一种基于STATCOM/BESS(电池储能系统)拓扑的电压源变换器(VSC)对WTGS叶片-轴扭振的阻尼控制方法。仿真分析采用了WTGS的六质量传动系模型,以便进行精确分析。在分析中,对称故障和非对称故障都被视为网络扰动。仿真结果清楚地表明,所提出的STATCOM/BESS可以显著降低WTGS叶片和轴的扭振。采用PSCAD/EMTDC进行了仿真。
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