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Hybrid sensorless permanent magnet synchronous machine four quadrant drive based on direct matrix converter

机译:基于直接矩阵变换器的混合无传感器永磁同步电机四象限驱动

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摘要

Permanent Magnet Synchronous Machines (PMSMs) have several advantages, such as high efficiency and low volume and weight, which make them attractive for aerospace applications and high performance servo drives. Matrix Converters (MCs) are an all-silicon alternative, with no bulky reactive elements, to the standard voltage source inverter. The most common control technique for such PMSM MC-fed drives is the so-called Fieid-Oriented Control (FOC), which requires the permanent magnet flux position to achieve high dynamic performance. Encoders or resolvers are the most common sensing devices used for such a purpose, which not only increases the total cost of the PMSM drive but also adds extra electronics and cabling that may cause fail-ures. This paper investigates and proposes an all range (from zero to full) speed hybrid sensoriess FOC. The novelty of this paper relies on the use of a hybrid sensorless four quadrant FOC that averages the needed angle estimation from a model based angle estimator and a voltage pulse test injection angle estimator when feeding the PMSM with an MC instead of a standard voltage source inverter. Speed reversal and load impact simulation results are included, fully supporting the claims made in this paper.
机译:永磁同步电机(PMSM)具有许多优势,例如效率高,体积小,重量轻,这使其在航空航天应用和高性能伺服驱动器中具有吸引力。矩阵转换器(MC)是标准电压源逆变器的全硅替代品,没有笨重的电抗元件。用于此类PMSM MC馈送驱动器的最常见控制技术是所谓的磁场定向控制(FOC),它需要永磁体磁通位置来实现高动态性能。编码器或分解器是用于此目的的最常见的传感设备,它不仅增加了PMSM驱动器的总成本,而且增加了可能导致故障的额外电子设备和电缆。本文研究并提出了全范围(从零到全速)混合感官FOC。本文的新颖性在于使用混合无传感器四象限FOC,该模型在将PMSM馈入MC而不是标准电压源逆变器时,对基于模型的角度估计器和电压脉冲测试注入角度估计器所需的角度估计求平均值。包括速度反转和负载冲击仿真结果,完全支持本文提出的主张。

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