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首页> 外文期刊>International Journal of Performability Engineering >Improved Pseudo-Random Excitation Method for Passive Suspension of Half Vehicle System
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Improved Pseudo-Random Excitation Method for Passive Suspension of Half Vehicle System

机译:半车辆系统被动悬架的改进伪随机励磁方法

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摘要

This paper investigates the dynamic behavior of half vehicles with a passive suspension system. The study uses an improved pseudorandom road excitation method that has been proposed as a type of road input excitation for vehicles in shock mitigation. For this, five motion equations of the half vehicle model are established, which are derived in terms of four displacements and a pitch angle. Based on the principle of analog equation, the new direct time integration method is used for numerical integration. Both the power spectrum density (PSD) in frequency-domain and the vehicle dynamic response in time-domain against two types of road inputs are investigated and simulated. This includes the PSD of driver vertical acceleration, chassis (vehicle body) vertical acceleration, front (rear) suspension dynamic deflection, front (rear) dynamic tire load, and response of displacement and velocity. The simulation results are achieved for different type of initial inputs. Finally, the value of the specific frequency point of power spectrum density and the time-domain dynamic response of the model are obtained, and the reasons are analyzed.
机译:本文调查了半辆与无源悬架系统的动态行为。该研究采用了一种改进的伪随机道路激发方法,该方法已被提出为减缓车辆的道路输入励磁。为此,建立了半车辆模型的五个运动方程,其以四个位移和桨距角衍生。基于模拟方程的原理,新的直接时间集成方法用于数值集成。调查和模拟频域中的功率谱密度(PSD)和时域中的车辆动态响应,并模拟。这包括驾驶员垂直加速度的PSD,底盘(车身)垂直加速度,前(后)悬架动态偏转,前(后)动态轮胎载荷和位移和速度的响应。为不同类型的初始输入实现了仿真结果。最后,获得了功率谱密度的特定频率点的值和模型的时域动态响应,并分析了原因。

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