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An analytical investigation of passive and active suspension systems for articulated freight vehicles.

机译:铰接式货运车辆的被动和主动悬架系统的分析研究。

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摘要

Articulated freight vehicles transmit high levels of whole-body ride vibration to the driver and high magnitudes of dynamic tire forces to the pavements. The high levels of ride vibration and tire forces are attributed to the excessive sizes and weights of these vehicles. The driver health and safety risks posed by ride vibrations, and the significant tire induced road damage caused by heavy vehicles have prompted a growing demand for design of driver- and road-friendly vehicles. Different active and passive suspension systems are thus analyzed to enhance the performance characteristics of articulated freight vehicles. The investigation is carried out in five phases: (i) development of a representative dynamic model of the vehicle; (ii) passive suspension design and optimization; (iii) ideal active suspension design; (iv) limited-state active suspension design; and (v) assesment of tire dynamic forces transmitted to the pavement. An articulated freight vehicle is characterized by an inplane nine degrees-of-freedom (DOF) dynamic system model. An analytical characterization of the randomly irregular road surface is presented and the time delays between the consecutive wheel inputs are incorporated using Pade approximation. The validity of the analytical vehicle model is asserted by comparing its response characteristics with the road measured data. A technique, based on covariance analysis, is employed to perform the multi-parameter sensitivity analysis and to design an "optimum" passive suspension. A performance index comprising ride quality, cargo safety, suspension rattle space and dynamic tire forces is formulated to derive the "optimum" suspension design. The effects of varying the suspension properties on the frequency response characteristics are investigated to further verify the conclusions drawn from the covariance analysis. Linear Quadratic Gaussian (LQG) control technique is employed to design an ideal fail-safe active suspension scheme based on full-state feedback. Passive damping and stiffness elements are incorporated in the active suspension system to yield a fail-safe configuration with minimal power requirement. The performance characteristics of the ideal active suspension are compared to those of the "optimum" passive suspension to determine their potential performance benefits. In view of the excessive hardware and signal processing requirements, high cost and poor reliability of a full-state feedback active suspension design, a thorough analysis of a more realistic active suspension scheme, based on H{dollar}sb2{dollar} synthesis, is undertaken. Two suspension schemes based upon limited-state measurements are investigated. The performance characteristics of the propose suspension designs are compared to those of the full-state active suspension and the "optimum" passive suspension systems. Finally, a comprehensive analysis is undertaken to assess the effects of the passive and various active suspension schemes on the dynamic tire forces. It is concluded that the reduced state active suspension systems yield performance characteristics comparable to those of an ideal active suspension.
机译:铰接式货车将高水平的全身行驶振动传递给驾驶员,并传递很大的动态轮胎力传递给人行道。高水平的行驶振动和轮胎力归因于这些车辆的尺寸和重量过大。行驶振动带来的驾驶员健康和安全风险,以及重型车辆对轮胎造成的重大道路损坏,促使人们对驾驶员和道路友好型车辆的设计需求不断增长。因此,对不同的主动和被动悬架系统进行了分析,以增强铰接式货运车辆的性能。该调查分五个阶段进行:(i)开发具有代表性的车辆动力学模型; (ii)被动悬架的设计和优化; (iii)理想的主动悬架设计; (iv)有限状态主动悬挂设计; (v)评估传递到人行道的轮胎动力。铰接式货运车辆的特点是具有面内九自由度(DOF)动态系统模型。给出了随机不规则路面的分析特征,并使用帕德近似法计算了连续车轮输入之间的时间延迟。通过将分析车辆模型的响应特性与道路测量数据进行比较,可以断定分析车辆模型的有效性。采用基于协方差分析的技术来执行多参数灵敏度分析并设计“最佳”被动悬架。制定了包括乘坐质量,货物安全,悬架嘎嘎声空间和动态轮胎力的性能指标,以得出“最佳”悬架设计。研究了改变悬架特性对频率响应特性的影响,以进一步验证协方差分析得出的结论。线性二次高斯(LQG)控制技术用于基于全状态反馈设计理想的故障安全主动悬架方案。被动减震和刚度元件结合在主动悬架系统中,以产生具有最小功率需求的故障安全配置。将理想主动悬挂的性能特征与“最佳”被动悬挂的性能特征进行比较,以确定其潜在的性能优势。考虑到过多的硬件和信号处理要求,全状态反馈有源悬挂设计的高成本和较差的可靠性,基于H {dollar} sb2 {dollar}合成对更现实的有源悬挂方案进行了全面分析。承担。研究了基于有限状态测量的两种悬挂方案。将建议的悬架设计的性能特征与全状态主动悬架和“最佳”被动悬架系统的性能特征进行了比较。最后,进行了综合分析,以评估被动和各种主动悬架方案对动态轮胎力的影响。结论是,还原态主动悬架系统产生的性能特性可与理想主动悬架相比。

著录项

  • 作者

    Oueslati, Faisal.;

  • 作者单位

    Concordia University (Canada).;

  • 授予单位 Concordia University (Canada).;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1995
  • 页码 322 p.
  • 总页数 322
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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