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Sensorless Robust Speed Controller Design of Pancake Axial Field PMDC Motor

机译:薄板轴向永磁直流电动机无传感器鲁棒速度控制器设计

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摘要

Due to superior multi-dimensional features (e.g., large torque to inertia ratio, fast response, high power density, negligible maintenance requirement, etc.) the axial-field pancake permanent magnet dc (PMDC) motors are popularly used for many control applications. When driven by pulsewidth modulation (PWM) controllers, due to their negligible electrical time constant, the armature current tends to be discontinuous. When the current disappears the measured armature voltage [i.e., back electromotive force (EMF)] is linearly related to its speed. In this article, the armature voltage at zero current is sampled to be used as feedback for speed control of axial field PMDC motors for wide range applications. Negligible prospect of demagnetization makes these motors ideal candidate to be controlled sensorless. When PWM frequency is large the armature time-constant poses as constraint for the back EMF to be available for sampling. The choice of PWM frequency is an important design parameter for the proposed concept. Further, this article explores, in practical domain, the usability of different control functions for robust speed control of pancake PMDC motors. It also details product design for sensorless PMDC motor speed controller using modified second-order sliding mode control function.
机译:由于具有优越的多维特性(例如,大的惯性比,快速响应,高功率密度,可忽略的维护要求等),轴向磁场煎饼永磁直流(PMDC)电动机广泛用于许多控制应用中。当由脉冲宽度调制(PWM)控制器驱动时,由于它们的电时间常数可忽略不计,因此电枢电流趋于不连续。当电流消失时,测得的电枢电压[即反电动势(EMF)]与速度成线性关系。在本文中,对零电流下的电枢电压进行采样,以用作用于广泛应用的轴向磁场PMDC电动机速度控制的反馈。退磁的可能性微乎其微,这使这些电动机成为无传感器控制的理想选择。当PWM频率较大时,电枢时间常数会限制反电动势可用于采样。 PWM频率的选择是所提出概念的重要设计参数。此外,本文在实际领域中探索了不同控制功能对煎饼PMDC电动机的鲁棒速度控制的可用性。它还详细介绍了采用改进的二阶滑模控制功能的无传感器PMDC电动机速度控制器的产品设计。

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