每安培转矩比最大化的饱和感应电动机动态输出反馈线性化控制

S. Peresada, S. Kovbasa, S. Dymko, S. Bozhko
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引用次数: 1

摘要

提出了一种新型的感应电机驱动最大转矩/安培(MTA)控制器。该控制器利用了直接(基于观测器的)磁场定向的概念,保证了平滑参考轨迹的渐近转矩跟踪,并在转矩恒定或缓慢变化时使每安培转矩比最大化。转矩子系统设计采用动态输出反馈线性化技术。为了提高转矩跟踪精度,在MTA优化和控制器设计中考虑了电机磁化曲线。实验比较了三种控制器的稳态系统效率,即恒定磁链运行的标准矢量控制、线性磁路基于经典转矩/安培比最大化的控制器和饱和感应电动机基于MTA策略的控制器。实验表明,设计的饱和感应电动机控制器不仅能提高转矩/安培比,还能提高功率因数,降低有功功耗,从而提高驱动效率。本文还对慢变转矩工况进行了分析。结果表明,所提出的控制器适用于不需要极快动态响应的应用,例如电动汽车驱动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic output feedback linearizing control of saturated induction motors with torque per Ampere ratio maximization
The paper presents a novel maximum torque per Ampere (MTA) controller for induction motor (IM) drives. The proposed controller exploits the concept of direct (observer based) field orientation and guarantees asymptotic torque tracking of smooth reference trajectories and maximizes the torque per Ampere ratio when the developed torque is constant or slowly varying. A dynamic output-feedback linearizing technique is employed for the torque subsystem design. In order to improve torque tracking accuracy a motor magnetizing curve is taken into account during MTA optimization and controller design. The achieved steady-state system efficiency have been compared experimentally for three types of controllers, namely: standard vector control with constant flux operation, controller based on classic maximization of torque per Ampere ratio for linear magnetic circuit and controller based on MTA strategy for saturated induction motor. It is shown experimentally that the controller designed for saturated induction motor provides not only higher torque per Ampere ratio but also increases power factor and reduces active power consumption hence improving the drive efficiency. Operation with slowly varying torque references has also been analysed. It is shown that the proposed controller is suitable for applications that do not demand an extremely fast dynamic response, for example for electric vehicle drives.
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