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Inertia compensation scheme for wind turbine simulator based on deviation mitigation

机译:基于偏差缓和的风电机组惯性补偿方案

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摘要

Wind turbine simulator (WTS) is an important test rig for validating the control strategies of wind turbines (WT). Since the inertia of WTSs is much smaller than that of WTs, the inertia compensation scheme is usually employed in WTSs for replicating the slow mechanical behavior of WTs. In this paper, it is found that the instability of WTSs applying the inertia compensation scheme, characterized by the oscillation of compensation torque, is caused by the one-step time delay produced in the acceleration observation. Hence, a linear discrete model of WTS considering the time delay of acceleration observation is developed and its stability is analyzed. Moreover, in order to stably simulate WTs with large inertia, an improved inertia compensation scheme, applying a first-order digital filter to mitigate deviation response induced by the time delay, is proposed. And, the criterion for selecting the filter coefficients is established based on the stability condition analysis. Finally, the WTS with the proposed scheme is validated by simulations and experiments.
机译:风力发电机模拟器(WTS)是验证风力发电机(WT)控制策略的重要测试设备。由于WTS的惯性远小于WT的惯性,因此惯性补偿方案通常用于WTS中以复制WT的慢速机械性能。在本文中,发现采用惯性补偿方案的WTS的不稳定性,其特征在于补偿转矩的振荡,是由加速度观测中产生的一步时间延迟引起的。因此,建立了考虑加速观测时间延迟的WTS线性离散模型,并对其稳定性进行了分析。此外,为了稳定地仿真具有较大惯性的WT,提出了一种改进的惯性补偿方案,该方案应用一阶数字滤波器来减轻由时延引起的偏差响应。并且,基于稳定性条件分析,建立了选择滤波器系数的标准。最后,通过仿真和实验验证了所提出方案的WTS。

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