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A new robust speed-sensorless control strategy for high-performance brushless DC motor drives with reduced torque ripple

机译:一种新的强大的无速度传感器控制策略,用于高性能无刷直流电动机驱动器,具有减小的转矩脉动

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摘要

This paper presents an analysis, design, and strategy of a high-performance speed-sensorless control scheme for estimating the phase-to-phase trapezoidal back-EMF of BLDC motor drive by means of a novel stochastic deconvolution technique in the H_∞ setting, named robust stochastic H_∞ deconvolution filter. In the proposed method, unlike the conventional observer-based approaches, the back-EMF is considered as an unknown input, and no need is felt for the constancy assumption of the rotor position and speed of machine within a short period of the time in the modeling of the BLDC motor which leads to ignoring the back-EMF dynamic at high and variable speed. In addition, since high-speed operation is vital for the motor, an improved approach has also been proposed to reduce the commutation-torque-ripple at high-speed for direct torque control (DTC) strategy of three-phase BLDC motor with 120° conduction mode in parallel with the proposed method due to the fact that drive performance intensely downgrades in this mode.
机译:本文提出了一种高性能的无速度传感器控制方案的分析,设计和策略,该方案通过一种新颖的H_∞随机反褶积技术来估算BLDC电机驱动的相间梯形反电动势,命名为鲁棒随机H_∞反卷积滤波器。在所提出的方法中,与传统的基于观测器的方法不同,反电动势被视为未知输入,并且不需要在短时间内在电机的转子位置和转速的恒定假设下进行感应。 BLDC电机的建模,导致忽略了高速和可变速度时的反电动势动态。另外,由于高速运转对于电动机至关重要,因此还提出了一种改进的方法来减少高速120°三相BLDC电动机的直接转矩控制(DTC)策略时的换向转矩脉动由于在这种模式下驱动性能会严重降低,因此与建议的方法并行的传导模式。

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