小型车辆主动座椅悬架:对包括观测器在内的控制系统的考虑

Hiroyuki Katsumata, Hiroshi Shiino, Y. Oshinoya, K. Ishibashi, K. Ozaki, Hirohiko Ogino
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引用次数: 2

摘要

我们研究了单座电动汽车等小型车辆主动控制座椅悬架所带来的乘坐质量的改善和乘坐疲劳的减少。为单座电动汽车设计制造了一种易于安装的小型主动座椅悬架。执行器采用免维护音圈电机作为直接驱动。出于基本考虑,我们设计了主动座椅悬架系统的单自由度模型。然后,针对二自由度模型,设计了包含观测器的扰动抵消控制系统。在实际驾驶试验中,制备了用硬质橡胶模拟实际路面凹凸度的试验路面,考察了驾驶过程中座椅表面垂直振动的控制性能。结果表明,与单自由度控制系统相比,包含观测器的二自由度控制系统的控制性能得到了改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Active seat suspension for a small vehicle: considerations for control system including observer
We have examined the improvement of ride quality and the reduction of riding fatigue brought about by the active control of the seat suspension of small vehicles such as one-seater electric automobiles. A small active seat suspension, which is easy to install, was designed and manufactured for one-seater electric automobiles. For the actuator, a maintenance-free voice coil motor used as a direct drive was adopted. For fundamental considerations, we designed a one-degree-of-freedom model for the active seat suspension system. Then, we designed a disturbance cancellation control system that includes the observer for a two-degree-of-freedom model. In an actual driving test, a test road, in which the concavity and convexity of an actual road surface were simulated using hard rubber, was prepared and the control performance of vertical vibrations of the seat surface during driving was examined. As a result, in comparison with the one-degree-of-freedom control system, it was confirmed that the control performance was improved by the two-degree-of-freedom control system that includes the observer.
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