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Effect of Multi-Objective Control on Ride Quality in High Speed Railway Vehicle

机译:多目标控制对高速铁路车辆乘坐质量的影响

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The railway transportation has a significant impact on both the freight and passenger carriage, therefore it should provide a comfortable, safe, fast and inexpensive riding. In this paper, a six-degree-of-freedom half-car model for a typical high speed passenger vehicle is derived to study the ride motions of the vehicle under the random rail inputs. The random rail excitation is considered as an output of a second-order linear filter to white noise excitation and the temporal correlation between the front and the rear wheels is predicted by a second-order Pade filter. The unified "track-vehicle-human" model is formulated and an active suspension based on a Linear-Quadratic-Gaussian (LQG) control is designed to minimize the performance index which is a weighted sum of vehicle performance measures such as carbody vertical and pitch accelerations, front and rear suspension strokes, rail holding and control forces.
机译:铁路运输对货运和客运有重大影响,因此它应该提供舒适,安全,快捷,廉价的骑行。在本文中,推导出用于典型高速乘用车的六程度的半汽车模型,以研究车辆在随机轨道输入下的车辆的乘坐运动。随机轨激励被认为是二阶线性滤波器的输出到白噪声激励,并且通过二阶曲线滤波器预测前轮和后轮之间的时间相关性。制定了统一的“轨道车辆 - 人”模型,并且设计了基于线性 - 二态-Gaussian(LQG)控制的有源悬架,以最大限度地减少作为车辆垂直和俯仰等车辆性能测量措施的加权和的性能指标加速,前后悬架冲程,轨道保持和控制力。

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