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Dual Phase-Locked Loop-Based Speed Estimation Scheme for Sensorless Vector Control of Linear Induction Motor Drives

机译:线性感应电动机驱动器无传感器矢量控制的基于双锁相环的速度估计方案

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摘要

In power electronics and power systems, the dual-phase-locked loop (DPLL) is a well-accepted approach to maintain zero steady-state errors when subjecting to a frequency ramp input. This distinctive characteristic of the DPLL may make it as a promising candidate for speed estimation in speed-sensorless drive systems. Considering this issue, a DPLL-based speed estimation scheme for linear induction motor speed-sensorless drive systems is presented in this article to achieve accurate speed estimation. The basics of the DPLL and the direct application of the DPLL scheme are provided. However, in practice, the direct application of the DPLL scheme may degrade the performance of the entire system, which includes the nonidealities in the secondary electromotive force (EMF) signals, such as harmonics and parameter variations. Accordingly, the prefilter and the amplitude normalization scheme are employed to mitigate the effect of nonidealities. Meanwhile, the small-signal model of the proposed DPLL scheme is presented, enabling the analysis of the dynamic performance and the comparison of the synchronous reference frame phase locked-loop scheme. In addition, a parameter tuning guideline of the proposed DPLL scheme is detailed by using the derived small signal model. The performance of the proposed DPLL scheme is investigated by experimental tests.
机译:在电力电子和电力系统中,双相锁定环(DPLL)是在经过频率斜坡输入时保持零稳态误差的良好接受的方法。 DPLL的这种独特特征可以使其成为速度无传感器驱动系统中的速度估计的有希望的候选者。考虑到这一问题,本文提出了一种用于线性感应电动机无传感器驱动系统的基于DPLL的速度估计方案,以实现精确的速度估计。提供了DPLL的基础和DPLL方案的直接应用。然而,在实践中,DPLL方案的直接应用可能降低整个系统的性能,其包括二次电动势(EMF)信号中的非前沿,例如谐波和参数变化。因此,采用预滤波和幅度归一化方案来减轻非前熟的效果。同时,提出了所提出的DPLL方案的小信号模型,从而实现了动态性能和同步参考帧锁相环方案的比较。此外,通过使用衍生的小信号模型详细描述了所提出的DPLL方案的参数调整指南。通过实验测试研究了所提出的DPLL方案的性能。

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