首页> 外文期刊>SAE International Journal of Passenger Cars - Mechanical Systems >Vibration Control of MR-Damped Vehicle Suspension System Using PID Controller Tuned by Particle Swarm Optimization
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Vibration Control of MR-Damped Vehicle Suspension System Using PID Controller Tuned by Particle Swarm Optimization

机译:基于微粒群优化的PID控制器的MR阻尼汽车悬架振动控制

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摘要

Proportional integral derivative (PID) control technique is the most common control algorithm applied in various engineering applications. Also, particle swarm optimization (PSO) is extensively applied in various optimization problems. This paper introduces an investigation into the use of a PSO algorithm to tune the PID controller for a semi-active vehicle suspension system incorporating magnetorheological (MR) damper to improve the ride comfort and vehicle stability. The proposed suspension system consists of a system controller that determine the desired damping force using a PID controller tuned using PSO, and a continuous state damper controller that estimate the command voltage that is required to track the desired damping force. The PSO technique is applied to solve the nonlinear optimization problem to find the PID controller gains by identifying the optimal problem solution through cooperation and competition among the individuals of a swarm. A mathematical model of a two degree-of-freedom MR-damped vehicle suspension system is derived and simulated using Matlab/Simulink software. The proposed PSO PID controlled suspension is compared to both the conventional PID controller and the passive suspension systems. System performance criteria are evaluated in both time and frequency domains, in order to quantify the success of the proposed suspension system. The simulated results reflect that the proposed PSO PID controller of the MR-damped vehicle suspension offers a significant improvement in ride comfort and vehicle stability.
机译:比例积分微分(PID)控制技术是在各种工程应用中最常用的控制算法。而且,粒子群优化(PSO)广泛应用于各种优化问题。本文介绍了使用PSO算法对装有磁流变(MR)阻尼器的半主动车辆悬架系统的PID控制器进行调节的研究,以提高乘坐舒适性和车辆稳定性。提出的悬架系统包括一个系统控制器和一个连续状态阻尼器控制器,该系统控制器使用PSO调整后的PID控制器确定所需的阻尼力,该状态控制器估算出跟踪所需阻尼力所需的指令电压。 PSO技术被用于解决非线性优化问题,以通过群体个体之间的协作和竞争来识别最优问题解决方案,从而找到PID控制器增益。利用Matlab / Simulink软件推导并仿真了两自由度MR阻尼车辆悬架系统的数学模型。提出的PSO PID控制的悬架与常规PID控制器和被动悬架系统都进行了比较。在时域和频域都对系统性能标准进行了评估,以量化所提出的悬架系统的成功程度。仿真结果表明,拟议的MR阻尼车辆悬架的PSO PID控制器在乘坐舒适性和车辆稳定性方面有显着改善。

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