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Design synthesis of articulated heavy vehicles with active trailer steering systems.

机译:具有主动挂车转向系统的铰接式重型车辆的设计综合。

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摘要

A new design synthesis method for articulated heavy vehicles (AHVs) with an active trailer steering (ATS) system is examined and evaluated. Due to their heavy weights, large sizes, and complex configurations, AHVs have poor maneuverability at low speeds, and low lateral stability at high speeds. Various passive trailer steering and ATS systems have been developed for improving the low-speed maneuverability. However, they often have detrimental effects on the high-speed stability. To date, no systematic design synthesis method has been developed to coordinate the opposing design goals of AHVs. In this thesis, a new automated design synthesis approach, called a Single Design Loop (SDL) method, is proposed and investigated. The SDL method has the following distinguished features: (1) the optimal active design variables of ATS systems and the optimal passive vehicle design variables are searched in a single design loop (2) in the design process, to evaluate the vehicle performance measures, a driver model is developed and it 'drives' the vehicle model based on the well-defined testing specifications and (3) the ATS controller derived from this method has two operational modes: one for improving the lateral stability at high speeds and the other for enhancing path-following at low speeds. To demonstrate the effectiveness of the new SDL method, it is applied to the design of an ATS system for an AHV with a tractor/full-trailer. In comparison to a conventional design approach, the SDL method can search through solutions in a much larger design space, and consequently it provides a more comprehensive set of optimal designs.
机译:研究并评估了一种新型的主动挂车转向(ATS)系统的铰接式重型车辆(AHV)设计综合方法。由于AHV的重量大,尺寸大和配置复杂,因此在低速时机动性差,在高速时横向稳定性低。已经开发了各种被动式拖车转向和ATS系统,以改善低速机动性。但是,它们通常会对高速稳定性产生不利影响。迄今为止,尚未开发出系统的设计综合方法来协调AHV的相对设计目标。本文提出并研究了一种新的自动设计综合方法,称为单设计循环(SDL)方法。 SDL方法具有以下显着特征:(1)在设计过程中的单个设计循环中搜索ATS系统的最佳主动设计变量和最佳被动车辆设计变量(2),以评估车辆性能指标,开发了驾驶员模型,并根据定义明确的测试规范“驱动”车辆模型,并且(3)从此方法派生的ATS控制器具有两种操作模式:一种用于提高高速时的横向稳定性,另一种用于增强低速跟随路径。为了证明新的SDL方法的有效性,将其应用于带有牵引车/全挂车的AHV的ATS系统设计。与传统的设计方法相比,SDL方法可以在更大的设计空间中搜索解决方案,因此,它提供了更全面的一组最佳设计。

著录项

  • 作者

    Islam, Md. Manjurul.;

  • 作者单位

    University of Ontario Institute of Technology (Canada).;

  • 授予单位 University of Ontario Institute of Technology (Canada).;
  • 学科 Engineering Automotive.
  • 学位 M.A.Sc.
  • 年度 2010
  • 页码 125 p.
  • 总页数 125
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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