Control Rapidity Optimization Technique of DC-Motor Driven by Quasi-Resonant Converter Using Pontryagin's Maximum Principle

Anatoliy S. Revko, Roman D. Yershov
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引用次数: 5

Abstract

The control optimization technique by the rapidity criterion, based on the maximum principle proposed by L.S. Pontryagin, was applied to the differential equations system, which is describes the DC-motor in time domain, and is constructed based on its dynamic model. A quasi-resonant pulsed converter keeps the DC-motor armature voltage stable. An optimal duration of each pulse in control sequence was calculated. Proposed approach allows calculating both the precision motions and rotations of DC-motor, and at the same time, with the highest possible rapidity. Analytical research was confirmed by simulation and experimental results that are agree each other accurate to a few percent. Proposed method allows calculation the optimal motion trajectories for precise magnetic recorders and robotic arms.
基于庞特里亚金极大值原理的准谐振变换器驱动直流电机控制速度优化技术
将基于庞特里亚金(L.S. Pontryagin)提出的极大值原理的速度准则控制优化技术应用于在时域上描述直流电机的微分方程组,并在此基础上建立直流电机的动力学模型。准谐振脉冲变换器保持直流电机电枢电压稳定。计算了控制序列中各脉冲的最优持续时间。所提出的方法可以同时计算直流电机的精确运动和旋转,同时具有尽可能高的速度。分析研究结果与实验结果吻合,精度在百分之几以内。该方法可用于计算精密磁记录仪和机械臂的最优运动轨迹。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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