首页> 外文会议>American Society of Mechanical Engineers International Design Engineering Technical Conference >DESIGN OF CAR ACTIVE SUSPENSION SYSTEMS TO OBTAIN DESIRED PERFORMANCE ON REDUCING EFFECT OF ROAD EXCITATION ON HUMAN HEALTH
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DESIGN OF CAR ACTIVE SUSPENSION SYSTEMS TO OBTAIN DESIRED PERFORMANCE ON REDUCING EFFECT OF ROAD EXCITATION ON HUMAN HEALTH

机译:汽车主动悬架系统的设计,以获得所需性能,降低道路刺激对人体健康的影响

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Advent of passenger cars has caused people to use them for more efficiency in their performance and wasting less time. Problems, however, still exist in them. For instance, since people travel with cars, their human bodies undergo in fatigue, restlessness, and sometimes health problems. Human body reaction under external vibration depends on the amplitude, frequency, and acceleration of the applied external excitation. These limitations which are usually announced by the bureau of standards imply the necessity of control of amplitude, vibration, frequency, and acceleration received by human body due to cars passing humps and bumps. In this paper, a quarter car model with active suspension system is considered and three control approaches namely optimal control, fuzzy control, and adaptive fuzzy optimal control (AFOC) are applied. Moreover, the performance of different controllers is compared. Application of three different methods indicate that adaptive fuzzy optimal control results in a higher performance in time, acceleration, amplitude, and consequently lower hazards to human body.
机译:乘用车的到来使人们在他们的表现中使用它们的效率,并浪费时间更少。然而,问题仍然存在。例如,由于人们用汽车旅行,他们的人体经历了疲劳,躁动,有时会有健康问题。外部振动下的人体反应取决于应用的外部激励的幅度,频率和加速度。标准局通常宣布的这些限制意味着由于汽车通过驼峰和凸块,人体收到的振幅,振动,频率和加速度的必要性。在本文中,考虑了具有主动悬架系统的四分之一汽车模型,并进行了三种控制方法即最佳控制,模糊控制和自适应模糊最优控制(AFOC)。而且,比较了不同控制器的性能。三种不同方法的应用表明,自适应模糊最佳控制在更高的时间,加速,振幅和对人体的危害下降得更高。

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