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首页> 外文期刊>International Journal of Vehicle Noise and Vibration >A mixed control system for active suspension for off-road vehicles
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A mixed control system for active suspension for off-road vehicles

机译:越野车辆主动悬架的混合控制系统

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摘要

Since the passive suspension system is not enough for creating good compromise between road handling and ride comfort for off-road vehicles, this paper presents a study on the application of an active suspension system. In this work, a neuro-fuzzy controller (NFC) is developed for two and three-axle half-car off-road vehicle models. A fuzzy logic controller (FLC) is employed as a benchmark for the NFC. The system designed for this study takes in two types of road disturbances as inputs, namely pothole and random road inputs. The sprung mass vertical and pitch accelerations are the criteria employed for the evaluation of the ride comfort, while the tyre deflection is used for the road handling. The results demonstrate that the NFC has a superior performance over the FLC in creating excellent ride comfort and good road handling without compromising the rattle-space requirement. On the other hand, the NFC requires higher actuation forces than the FLC as it gives a better performance that requires more control effort.
机译:由于被动悬架系统不足以在越野驾驶的道路操纵和乘坐舒适性之间做出良好的折衷,因此本文对主动悬架系统的应用进行了研究。在这项工作中,为两轴和三轴半车越野车模型开发了神经模糊控制器(NFC)。模糊逻辑控制器(FLC)被用作NFC的基准。本研究设计的系统将两种类型的道路干扰作为输入,即坑洼和随机道路输入。簧上质量的垂直加速度和俯仰加速度是评估乘坐舒适性的标准,而轮胎的挠度则用于道路操纵。结果表明,NFC在不损害拨浪鼓空间要求的情况下,在提供出色的乘坐舒适性和良好的路面操纵性能方面,比FLC优越。另一方面,NFC比FLC需要更高的致动力,因为它具有更好的性能,需要更多的控制工作。

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