A novel doubly-fed induction wind generator control scheme for reactive power control and torque pulsation compensation under unbalanced grid voltage conditions

T. Brekken, N. Mohan
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引用次数: 118

Abstract

Wind energy is often installed in rural, remote areas characterized by weak, unbalanced power transmission grids. In induction wind generators, unbalanced three phase stator voltages cause a number of problems, including overheating and stress on the mechanical components from torque pulsations. Therefore, beyond a certain amount of unbalance (for example 6%), induction wind generators are switched out of the network. In doubly-fed induction generators, control of rotor currents allows for adjustable speed operation and reactive power control. In addition, it is possible to control the rotor currents to correct for the problems caused by unbalanced stator voltages. This paper presents a novel controller design for a doubly-fed induction generator that provides adjustable speed and reactive power control while greatly reducing torque pulsations.
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针对电网电压不平衡条件下的无功控制和转矩脉动补偿,提出了一种新的双馈感应风力发电机控制方案
风能通常安装在农村、偏远地区,这些地区的特点是输电网络薄弱、不平衡。在感应式风力发电机中,不平衡的三相定子电压会导致许多问题,包括过热和扭矩脉动对机械部件的应力。因此,超过一定的不平衡量(例如6%),感应式风力发电机将被切换出电网。在双馈感应发电机,控制转子电流允许可调速度运行和无功功率控制。此外,还可以控制转子电流,以纠正由定子电压不平衡引起的问题。本文提出了一种新的双馈感应发电机控制器设计,该控制器既可调速又可无功控制,同时大大降低了转矩脉动。
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