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Improving vehicle ride comfort using an active and semi-active controller in a half-car model

机译:在半车模型中使用主动和半主动控制器改善车辆行驶舒适性

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In this paper, fuzzy logic control of a vehicle suspension with magneto rheological damper on a random road is considered. To simulate road roughness height a filtered white noise is employed and a four degree-of-freedom, half-car model is used in the analysis. A sensor mounted in the front of the vehicle is responsible for measuring the road irregularities at some distances in the front of the vehicle. Some other sensors are used to measure relative velocities of the vehicle body with respect to unsprung masses in wheel travel spaces. All measurements are assumed to be conducted in a noisy environment. The state variable of the simulated vehicle are calculated, using a method which is similar to the Kalman filter. To have a tailored estimation of magneto rheological damper performance a model which is known as Bouc-Wen is adopted. In addition, utilization of genetic algorithm (GA) in elicitation of fuzzy rules and tuning membership function is exhibited. This controller is a combination of fuzzy controller as a feed back and preview controller as a feed-forward controller, so as to anticipate irregularities of the road. Furthermore, GA is used to determine the optimized preview time. The typical parameters of fuzzy controller are encoded into a chromosome represented as an integer string. Then, by evaluating a multi objective function using a non dominated sorting GA II the superior chromosomes are elected and as a result, the optimized fuzzy logic controller can be employed. Also, by implementation of the combined controller which is designed by GA, it is possible to obtain better performances for the Fuzzy Interface System or, at the same performances, a less complex structure for the system. The effectiveness of the proposed algorithm has been verified through a series of simulations for a former designed controller.
机译:本文考虑了在随机道路上具有磁流变阻尼器的车辆悬架的模糊逻辑控制。为了模拟道路不平整高度,使用了过滤后的白噪声,并在分析中使用了四自由度半车模型。安装在车辆前部的传感器负责测量车辆前部一定距离处的道路不平整度。一些其他的传感器用于测量相对于车轮行进空间中未悬挂的质量的车身的相对速度。假定所有测量均在嘈杂的环境中进行。使用类似于卡尔曼滤波器的方法来计算模拟车辆的状态变量。为了对磁流变阻尼器性能进行量身定制的估算,采用了称为Bouc-Wen的模型。此外,还展示了遗传算法(GA)在模糊规则和调节隶属度函数中的应用。该控制器是模糊控制器(作为反馈)和预览控制器(作为前馈控制器)的组合,以便预测道路的不规则性。此外,GA用于确定优化的预览时间。模糊控制器的典型参数被编码成代表整数字符串的染色体。然后,通过使用非支配的排序GA II评估多目标函数,可以选择上等染色体,从而可以使用优化的模糊逻辑控制器。而且,通过实施由GA设计的组合控制器,可以为模糊接口系统获得更好的性能,或者以相同的性能获得系统的更简单的结构。对于以前设计的控制器,通过一系列仿真验证了所提出算法的有效性。

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