动器约束下时变长控制周期的动力传动系统振动补偿主动阻尼

Heisei Yonezawa, I. Kajiwara, C. Nishidome, Takashi Hatano, Masato Sakata, Shigeki Hiramatsu
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引用次数: 0

摘要

研究了一种具有间隙和控制周期限制的汽车动力传动系统主动阻尼控制系统。首先,描述了一个简化了真实车辆传动系统的基本实验装置。由于发动机机构的控制周期限制,使得控制周期变长且时变。在我们的实验系统中,只有它对控制系统的基本负面影响是由电机和数字信号处理器再现的。作为长周期的对策,采用不进行离散化的采样数据控制器来处理离散逼近误差。时变效应导致控制输入的相位延迟。因此,使用采样数据控制器和无气味卡尔曼滤波器的预测处理可以补偿相位延迟。最后,通过控制实验和对比验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Active damping of drivetrain vibrations with compensation for time-varying long control cycle due to actuator constraint
This research presents an active damping control system for automobile drivetrains with backlash and limitation on the control cycle. First, a basic experimental apparatus, which simplifies a real vehicle drivetrain, is described. The control cycle limitation due to an engine mechanism makes the control cycle longer and time-varying. In our experimental system, only its essential negative effects on control systems are reproduced by a motor and a digital signal processor. As a countermeasure for the long cycle, the sampled-data controller, which is implemented without discretization, is employed to cope with discrete approximation errors. The time-varying effect causes the phase delay of the control input. Hence, predictive processing using the sampled-data controller and the unscented Kalman filter compensates for the phase delay. Finally, control experiments with some comparison verifications prove the effectiveness of the proposed technique.
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