永磁驱动器的直接转矩控制

C. French, P. Acarnley
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引用次数: 253

摘要

许多永磁电机驱动器使用开环形式的转矩控制,基于输出转矩与施加电流成正比的假设。在实际的电机中,由于磁体的次优对准、磁性材料的不均匀性、电流传感器的非线性和电流控制器的限制,这种假设可能并不总是正确的。这些因素,加上未优化的参考电流,可能导致高扭矩纹波值和铜损耗。本文介绍了一种从共能随位置的变化率估计电磁转矩的方法,同时考虑了互转矩、磁阻转矩和饱和效应。本文给出了该估计器在直接转矩控制方案中的应用。直接转矩控制器最大限度地提高了转矩/铜损耗比。描述了直接转矩控制器在基于DSP的驱动系统中的实现,稳态和瞬态实验结果表明了直接转矩控制方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Direct torque control of permanent magnet drives
Many permanent magnet motor drives use an open loop form of torque control, based on the assumption that output torque is proportional to applied current. In a practical motor this assumption may not always be correct, due to sub-optimal alignment of magnets, nonuniformity of magnetic material, current sensor nonlinearities and current controller limitations. These factors, together with nonoptimised current references, can lead to high values of torque ripple and copper loss. This paper describes a method of estimating the electromagnetic torque from the rate of change of co-energy with respect to position, thus taking account of mutual torque, reluctance torque and saturation effects. The paper shows how the estimator can be used in a direct torque control scheme. The direct torque controller maximises the torque/copper loss ratio. Implementation of the direct torque controller in a DSP based drive system is described, with steady-state and transient experimental results illustrating the effectiveness of the direct torque control scheme.
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