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Double anti-roll bar hardware-in-loop experiment for active anti-roll control system

机译:双防辊杆硬件环路实验,用于主动防滴控制系统

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摘要

Active anti-roll bar (AARB) is a cheaper alternative for a fully active suspension system, which can be adapted into passenger cars, made possible by today’s technology. AARB minimizes body roll and improve ride comfort. In this paper, the design of a Hardware-in-loop (HIL) test bench is presented. The HIL test bench is able to test dual AARB system, each for front and rear of a car respectively. HIL testing will allow designer to analyze and validate the performance of the proposed AARB system before it could be implemented in a real car. This paper focuses on the practicality and adaptability of implementing Fuzzy based PID controllers into the AARB system. HIL experiment compares the performance of proposed Self-Tuning Fuzzy PI-PD (STF PI-PD) controller against the PI-PD Type Fuzzy Logic Controller (PI-PD Type FLC) and Self-Tuning Fuzzy PID (STF PID) controllers. STF PID controller was proposed by previous researchers for an AARB system. Experimental results suggest that the proposed AARB system, which incorporates STF PI-PD controller is able to reduce 87.68 % of roll angle and 50.04 % in roll rate in average, thus improving the vehicle dynamics. STF PI-PD controller significantly outperforms both STF PID and PI-PD Type FLC controllers in various handling tests.
机译:主动防辊杆(AARB)是一种更便宜的替代方案,适用于完全活跃的悬架系统,该系统可以调整到乘用车,由今天的技术实现。 AARB可最大限度地减少身体卷,提高速度舒适。本文介绍了硬件循环(HIL)测试台的设计。 HIL测试台能够测试双AARB系统,分别为一辆汽车的前后。 HIL测试将允许设计人员分析和验证所提出的AARB系统的性能,然后才能在真实的汽车中实施。本文侧重于将基于模糊的PID控制器实施到AARB系统中的实用性和适应性。 HIL实验比较了提出的自调谐模糊PI-PD(STF PI-PD)控制器对PI-PD型模糊逻辑控制器(PI-PD型FLC)和自调谐模糊PID(STF PID)控制器的性能。 STF PID控制器由以前的AARB系统研究人员提出。实验结果表明,所提出的AARB系统,其包括STF PI-PD控制器的辊角度平均能够降低87.68%的卷角和50.04%,从而改善车辆动力学。 STF PI-PD控制器在各种处理测试中显着优于STF PID和PI-PD型FLC控制器。

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