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Vibration Control of an Active Seat Suspension System Integrated Pregnant Woman Body Model

机译:有源座椅悬架系统综合孕妇机身模型的振动控制

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Proportional-integral-derivative (PID) controller is effective, popular and cost effective for a lot of scientific and engineering applications. In this paper, PID and fuzzy-self-tuning PID (FSTPID) controllers are applied to improve the performance of an active seat suspension system to enhance the pregnant woman comfort. The equations of motion of thirteen-degrees-of-freedom (13-DOF) active seat suspension system incorporating pregnant woman body model are derived and simulated. PID gains are tuned and estimated using genetic algorithm (GA) to formulate GA PID controller. In FSTPID, fuzzy logic technique is used to tune PID controller gains by selecting appropriate fuzzy rules using Matlab/Simulink software. Both controlled active seat suspension systems are compared with a passive seat suspension. Suspension performance is evaluated under bump and random road excitations in order to verify the success of the proposed controllers. Theoretical results reveal that the proposed controllers using GA PID and FSTPID grant a significant enhancement of the pregnant woman comfort and her fetus.
机译:比例积分 - 衍生物(PID)控制器对于许多科学和工程应用有效,流行且成本效益。在本文中,PID和模糊自调光PID(FSTPID)控制器应用于提高有源座椅悬架系统的性能,以增强孕妇舒适性。推导和模拟了包含孕妇体模型的十三自由度(13-DOF)有源座椅悬架系统的十三度自由度(13-DOF)有源座椅悬架系统的运动方程。使用遗传算法(GA)调整和估计PID增益以制定GA PID控制器。在FSTPID中,模糊逻辑技术用于通过使用Matlab / Simulink软件选择适当的模糊规则来调谐PID控制器。将控制的有源座椅悬架系统与被动座椅悬浮液进行比较。在凹凸和随机道路激发下评估悬架性能,以验证所提出的控制器的成功。理论结果表明,建议的控制器使用GA PID和FSTPID授予孕妇舒适和胎儿的显着增强。

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