A closed-loop control based braking resistor for stabilization of wind generator system

M. Ali, R. Dougal
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引用次数: 9

Abstract

Conventional braking resistor (BR) method employing a fixed insertion period does not work well to stabilize the wind generator system for different types of faults. This paper proposes a closed-loop control strategy of the braking resistor based on thyristor technology to stabilize the wind generator system. The performance of the proposed braking resistor is evaluated in detail considering both balanced and unbalanced types of temporary and permanent faults in the system. A comparison is made between the performance of the proposed braking resistor and that of the conventional braking resistor employing a fixed insertion period. Simulation results show that the proposed braking resistor is very effective to stabilize the wind generator system in case of both balanced and unbalanced types of transient and permanent faults. Also, the performance of the proposed braking resistor method is much better than that of the conventional method.
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基于闭环控制的风力发电系统稳定制动电阻器
针对不同类型的故障,采用固定插入周期的传统制动电阻(BR)方法不能很好地稳定风力发电系统。本文提出了一种基于晶闸管技术的制动电阻闭环控制策略,以稳定风力发电系统。考虑到系统中临时和永久故障的平衡和不平衡类型,对所提出的制动电阻的性能进行了详细评估。比较了所提出的制动电阻器的性能和采用固定插入周期的传统制动电阻器的性能。仿真结果表明,所提出的制动电阻器对于风力发电系统的暂态故障和永久故障都是非常有效的。同时,所提出的制动电阻器方法的性能也大大优于常规方法。
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