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Optimal power tracking of PMSG based wind energy conversion systems by constrained direct control with fast convergence rates

机译:通过具有快速收敛速率的受约束直接控制,对基于PMSG的风能转换系统进行最优功率跟踪

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摘要

This paper proposes a simple direct control with fast convergence rates under constraints for tracking optimal power of permanent magnet synchronous generator (PMSG) based wind energy conversion system (WECS). The simplicity features are on neglecting the following: predicted control performances, measurement of aerodynamic torque/wind speed and stator currents. The superior features are on very fast and accurate tracking performances with asymptotic convergence and well-regulated stator currents. First, a nonlinear observer is designed to observe both aerodynamic torque and stator currents. The wind speed is then inferred from the estimated aerodynamic torque and consequently, the optimal speed reference is identified. Next, the conditions of asymptotic stability for the closed-loop dynamics are formulated. Finally, a simple direct control is proposed to maximize the convergence rates in transient states and reduce switching frequency in steady states. Comparative studies with finite set model predictive control are presented to validate the advantageous features of the proposed method. The comparative results show that the superiority of the proposed method is proved by better controlled outputs with lower ripples, smaller steady-state tracking errors, faster response in transientstates, good tracking performance even for fast-varying aerodynamic torque, and lower average switching-frequency.
机译:为了跟踪基于永磁同步发电机(PMSG)的风能转换系统(WECS)的最佳功率,本文提出了一种在约束条件下具有快速收敛速度的简单直接控制。简化功能忽略了以下内容:预测的控制性能,空气动力学扭矩/风速和定子电流的测量。优良的特性是具有非常快和精确的跟踪性能,具有渐近收敛性和良好调节的定子电流。首先,设计了一个非线性观测器来观测空气动力学转矩和定子电流。然后从估算的空气动力学扭矩推断出风速,从而确定最佳速度参考。接下来,为闭环动力学制定渐近稳定性的条件。最后,提出了一种简单的直接控制方法,以最大化瞬态下的收敛速度并降低稳态下的开关频率。提出了与有限集模型预测控制的比较研究,以验证所提出方法的优势。比较结果表明,该方法的优越性得到了更好的控制输出,具有较低的纹波,较小的稳态跟踪误差,瞬态响应更快,即使在气动扭矩快速变化的情况下仍具有良好的跟踪性能以及较低的平均开关频率,证明了该方法的优越性。 。

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