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A Hybrid Sensorless Controller of an Interior Permanent Magnet Synchronous Machine Using Current Derivative Measurements and a Sliding Mode Observer

机译:使用电流导数测量和滑模观测器的内部永磁同步电机的混合无传感器控制器

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摘要

The ability of current-derivative based speed and position estimation of IPMSMs over a full speed range has recently been demonstrated. However, at high-speeds, the modulation index becomes limited because the extension of the zero-voltage vectors and current waveforms become distorted. This article proposes a hybrid position and speed estimation technique which uses current derivatives at the first active-voltage vector during each pulsewidth modulation (PWM) switching period for enhancing the performance of a sliding mode observer at low and very low speeds. This article presents the theoretical analysis and experimental evaluation of the proposed sensorless method for an IPMSM over a full speed range from zero to rated speed. The experimental results have shown a significant improvement in speed and position estimation accuracy at low speeds and a considerable reduction of the current distortion over the full speed range, compared to the existing fundamental PWM excitation sensorless control methods.
机译:最近已经证明了在全速范围内基于电流导数的IPMSM的速度和位置估计的能力。然而,在高速下,由于零电压矢量的扩展和电流波形变得失真,因此调制指数受到限制。本文提出了一种混合位置和速度估计技术,该技术在每个脉宽调制(PWM)切换周期期间在第一有效电压矢量处使用电流导数,以增强低速和超低速度下滑模观察器的性能。本文介绍了从零到额定速度的全速范围内所提出的IPMSM无传感器方法的理论分析和实验评估。实验结果表明,与现有的基本PWM励磁无传感器控制方法相比,低速时的速度和位置估计精度有了显着提高,并且在整个速度范围内电流失真都大大降低了。

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