首页> 外文会议>2014 Annual International Conference on Emerging Research Areas: Magnetics, Machines and Drives >PWM based control electronics of a PMBLDC motor for hip yaw joint of a space rover application
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PWM based control electronics of a PMBLDC motor for hip yaw joint of a space rover application

机译:基于PWM的PMBLDC电机控制电子器件,用于空间漫游者应用中的偏航关节

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Space rovers demands for the choice of a drive system with high performance characteristics like low inertia, high power to weight ratio, capacity to develop high acceleration, wide velocity range and high positioning accuracy. This paper focuses on the development of controller for a precision actuator as per the requirements of space environment. The design uses slotless, coreless PMBLDC motor with non axial winding topology that not only gives high torque to weight ratio and less cogging torque but also limit weight to a few hundred grams. A mathematical modeling of PMBLDC motor is included in this paper. A Triangle Pulse Width Modulation technique for Brushless Direct Current (BLDC) motor drives, with a view to attain high positioning accuracy is proposed. MATLAB/Simulink results verify that PWM control strategy with position and velocity control functionality allows sophisticated positioning applications.
机译:太空漫游者要求选择具有高性能特性的驱动系统,例如低惯性,高功率重量比,产生高加速度的能力,宽速度范围和高定位精度。根据空间环境的要求,本文着重于精密致动器控制器的开发。该设计使用具有无轴向绕组拓扑结构的无槽,无铁芯PMBLDC电动机,该电动机不仅提供高转矩重量比和较小的齿槽转矩,而且将重量限制在几百克。本文包括PMBLDC电机的数学模型。为了获得较高的定位精度,提出了一种用于无刷直流(BLDC)电动机驱动器的三角脉宽调制技术。 MATLAB / Simulink结果证明,具有位置和速度控制功能的PWM控制策略可用于复杂的定位应用。

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