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On the rejection of internal and external disturbances in a wind energy conversion system with direct-driven PMSG

机译:关于直接驱动PMSG的风能转换系统中内部和外部干扰的抑制

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This paper deals with the critical issue in a wind energy conversion system (WECS) based on a direct driven permanent magnet synchronous generator (PMSG): the rejection of lumped disturbance, including the system uncertainties in the internal dynamics and unknown external forces. To simultaneously track the motor speed in real time and capture the maximum power, a maximum power point tracking strategy is proposed based on active disturbance rejection control (ADRC) theory. In real application, system inertia, drive torque and some other parameters change in a wide range with the variations of disturbances and wind speeds, which substantially degrade the performance of WECS. The ADRC design must incorporate the available model information into an extended state observer (ESO) to compensate the lumped disturbance efficiently. Based on this principle, a model-compensation ADRC is proposed in this paper. Simulation study is conducted to evaluate the performance of the proposed control strategy. It is shown that the effect of lumped disturbance is compensated in a more effective way compared with the traditional ADRC approach. (C) 2015 ISA. Published by Elsevier Ltd. All rights reserved.
机译:本文针对基于直接驱动的永磁同步发电机(PMSG)的风能转换系统(WECS)中的关键问题:集总扰动的抑制,包括内部动力学和未知外力方面的系统不确定性。为了同时实时跟踪电动机速度并捕获最大功率,基于主动抗扰控制(ADRC)理论提出了最大功率点跟踪策略。在实际应用中,系统惯性,驱动转矩和其他一些参数会随着干扰和风速的变化而在很宽的范围内变化,从而大大降低了WECS的性能。 ADRC设计必须将可用的模型信息合并到扩展状态观察器(ESO)中,以有效地补偿集总干扰。基于此原理,提出了一种模型补偿ADRC。进行仿真研究以评估所提出的控制策略的性能。结果表明,与传统的ADRC方法相比,集总干扰的影响得到了更有效的补偿。 (C)2015 ISA。由Elsevier Ltd.出版。保留所有权利。

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