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Control of the Torque and Rotor Power in a Five-Phase Wound-Rotor Induction Motor Drive for Rotary Assembly Platforms

机译:用于旋转组装平台的五相伤口转子感应电动机驱动中的扭矩和转子功率的控制

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This paper illustrates the control system of a five-phase wound-rotor induction machine that can be used in applications where, besides the torque generation, a certain amount of active power must be transferred to loads collocated on the rotor frame. This requirement is common in rotary assembly platforms, bottle filling and capping systems, that embed electric actuators, sensors and process controllers on a rotating disk. The use of a five-phase machine avoids the slipring contacts to feed the rotor load. However, the choice of the set-point values for the motor currents involves magnetic, electric and thermal constraints. The paper illustrates a methodology of analysis, and develops a technique to deliver power to the rotor loads through the third-order spatial component of the magnetic field, while keeping the motor torque under control and reducing the rotor current as much as possible to minimize the rotor Joule losses. The experimental tests on a scaled prototype demonstrate the practical potential of the machine.
机译:本文说明了五相伤口转子感应机的控制系统,其可以用于除了扭矩产生之外,必须将一定量的有功功率转移到转子框架上均匀的负载。该要求在旋转装配平台,瓶填充和封盖系统中是常见的,该旋转磁盘嵌入电动致动器,传感器和工艺控制器。使用五相机器避免了滚动触点以供给转子负载。然而,电机电流的设定点值的选择涉及磁,电动和热约束。本文说明了分析的方法,并开发一种技术来通过磁场的三阶空间分量向转子负载提供电力的技术,同时保持电动机扭矩和减小转子电流尽可能地减少转子电流以最小化转子焦耳损失。缩放原型的实验测试证明了机器的实际潜力。

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