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Drive train dynamics assessment and speed controller design in variable speed wind turbines

机译:变速风力发电机组的传动系统动力学评估和速度控制器设计

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This paper deals with the speed controller design in DFIG based wind turbines, and investigates stability and performance of the drive train dynamics against different control strategies. It is shown that speed controller design based on the single mass drive train model may result in unstable mechanical modes, because it ignores the dynamics of the flexible shaft. Then, another control approach, known as feed forward compensation of the shaft torsional torque, is examined. It is shown that this control method results in poorly damped oscillations of torsional torque and turbine speed during the transient conditions. The open loop transfer function from the electromagnetic torque to the generator speed contains a dual quadratic function representing the dynamics of flexible shaft. The dual quadratic function comprises resonant and anti-resonant frequencies that greatly affect the stability of the drive train dynamics. Next, a step-by-step procedure for designing the speed controller based on the two-mass drive train model is proposed. The proposed speed controller provides stable closed loop system, zero tracking error, low-frequency disturbance rejection, and open-loop gain attenuation at the resonant frequency. At the end, performance of the proposed controller is investigated by the time domain simulations. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文讨论了基于DFIG的风力发电机中的速度控制器设计,并研究了针对不同控制策略的动力传动系统动力学的稳定性和性能。结果表明,基于单质量传动系统模型的速度控制器设计可能会导致机械模式不稳定,因为它忽略了柔性轴的动态特性。然后,检查另一种控制方法,称为轴扭转扭矩的前馈补偿。结果表明,该控制方法在瞬态条件下导致扭矩和涡轮转速的阻尼阻尼不佳。从电磁转矩到发电机转速的开环传递函数包含一个二次方函数,代表了柔性轴的动态特性。双重二次函数包括共振和反共振频率,它们极大地影响传动系统动力学的稳定性。接下来,提出了基于两质量传动系模型的速度控制器设计的分步过程。所提出的速度控制器提供了稳定的闭环系统,零跟踪误差,低频干扰抑制以及在谐振频率下的开环增益衰减。最后,通过时域仿真研究了所提出控制器的性能。 (C)2015 Elsevier Ltd.保留所有权利。

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