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A diagnostic system for air brakes in commercial vehicles.

机译:商用车空气制动器的诊断系统。

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摘要

This dissertation deals with the development of a model-based diagnostic system for air brake systems that are widely used in commercial vehicles, such as trucks, tractor-trailers, buses, etc. The performance of these brake systems is sensitive to maintenance and hence they require frequent inspections. Current inspection techniques require an inspector to go underneath a vehicle to check the brake system for possible faults, such as leaks, worn brake pads, out-of-adjustment of push rods, etc. Such inspections are time consuming, labor intensive and difficult to perform on vehicles with a low ground clearance. In this context, the development of an onboard/handheld diagnostic tool for air brakes would be of significant value. Such a tool would automate the brake inspection process, thereby reducing the inspection time and improving the safety of operation of commercial vehicles. In this dissertation, diagnostic schemes are developed to automatically detect two important and prevalent faults that can occur in air brake systems---leaks and out-of-adjustment of push rods.; These diagnostic schemes are developed based on a nonlinear model for the pneumatic subsystem of the air brake system that correlates the pressure transients in the brake chamber with the supply pressure to the treadle valve and the displacement of the treadle valve plunger. These diagnostic schemes have been corroborated with data obtained from the experimental facility at Texas A&M University and the results are presented.; The response of the pneumatic subsystem of the air brake system is such that it can be classified as what is known as a "Sequential Hybrid System". In this dissertation, the term "hybrid systems" is used to denote those systems whose mathematical representation involves a finite set of governing ordinary differential equations corresponding to a finite set of modes of operation. The problem of estimating the push rod stroke is posed as a parameter estimation problem and a transition detection problem involving the hybrid model of the pneumatic subsystem of the air brake system. Also, parameter estimation schemes for a class of sequential hybrid systems are developed. The efficacy of these schemes is illustrated with some examples.
机译:本文致力于开发一种基于模型的空气制动系统诊断系统,该系统广泛用于商用车辆,例如卡车,牵引拖车,公共汽车等。这些制动系统的性能对维护敏感,因此它们易于维护。需要经常检查。当前的检查技术要求检查员进入车辆下方以检查制动系统是否存在可能的故障,例如泄漏,刹车片磨损,推杆调整不正确等。此类检查费时,费力且难以检查。在低离地间隙的车辆上行驶。在这种情况下,开发用于空气制动器的车载/手持式诊断工具将具有重要价值。这样的工具将使制动检查过程自动化,从而减少检查时间并提高商用车辆的操作安全性。本文提出了一种诊断方案,以自动检测空气制动系统中可能发生的两个重要且普遍的故障:泄漏和推杆调整不正确。这些诊断方案是基于用于空气制动系统气动子系统的非线性模型开发的,该模型将制动腔中的压力瞬变与踏板阀的供应压力和踏板阀柱塞的位移相关联。从德州农工大学的实验设施获得的数据证实了这些诊断方案,并给出了结果。空气制动系统的气动子系统的响应使得可以将其分类为所谓的“顺序混合系统”。在本文中,术语“混合系统”用于表示那些系统的数学表示涉及与有限运行模式相对应的有限的一组控制常微分方程组的系统。推杆冲程的估计问题被提出为参数估计问题和涉及空气制动系统的气动子系统的混合模型的过渡检测问题。而且,开发了用于一类顺序混合系统的参数估计方案。通过一些示例说明了这些方案的有效性。

著录项

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 153 p.
  • 总页数 153
  • 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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