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Fault diagnosis of Electronic Fuel Control (EFC) valves via dynamic performance test method.

机译:通过动态性能测试方法对电子燃油控制(EFC)阀进行故障诊断。

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摘要

Electronic Fuel Control (EFC) valve regulates fuel flow to the injector fuel supply line in the Cummins Pressure Time (PT) fuel system. The EFC system controls the fuel flow by means of a variable orifice that is electrically actuated. The supplier of the EFC valves inspects all parts before they are sent out. Their inspection test results provide a characteristic curve which shows the relationship between pressure and current provided to the EFC valve. This curve documents the steady state characteristics of the valve but does not adequately capture its dynamic response. A dynamic test procedure is developed in order to evaluate the performance of the EFC valves. The test itself helps to understand the effects that proposed design changes will have on the stability of the overall engine system. A by product of this test is the ability to evaluate returned EFC valves that have experienced stability issues. The test determines whether an EFC valve is faulted or not before it goes out to prime time use. The characteristics of a good valve and bad valve can be observed after the dynamic test.;In this thesis, a mathematical model has been combined with experimental research to investigate and understand the behavior of the characteristics of different types of EFC valves. The model takes into account the dynamics of the electrical and mechanical portions of the EFC valves. System Identification has been addressed to determine the transfer functions of the different types of EFC valves that were experimented. Methods have been used both in frequency domain as well as time domain. Also, based on the characteristic patterns exhibited by the EFC valves, fuzzy logic has been implemented for the use of pattern classification.
机译:电子燃油控制(EFC)阀调节康明斯压力时间(PT)燃油系统中流向喷油器燃油供应管线的燃油。 EFC系统通过电驱动的可变节流孔控制燃油流量。 EFC阀门的供应商会在将所有零件送出之前对其进行检查。他们的检查测试结果提供了一条特性曲线,该曲线显示了提供给EFC阀的压力和电流之间的关系。该曲线记录了阀的稳态特性,但未充分反映其动态响应。为了评估EFC阀门的性能,开发了动态测试程序。测试本身有助于理解拟议的设计变更将对整个发动机系统的稳定性产生的影响。该测试的副产品是评估返回的EFC阀门遇到稳定性问题的能力。该测试可确定EFC阀门在开始使用黄金时间之前是否有故障。动态测试后可以观察到好气门和坏气门的特性。本文将数学模型与实验研究相结合,以研究和理解不同类型的EFC气门的特性。该模型考虑了EFC阀的电气和机械部分的动力学。解决了系统识别问题,以确定了各种实验类型的EFC阀门的传递函数。已经在频域和时域中使用了方法。而且,基于EFC阀显示的特征模式,已经为模式分类的使用实现了模糊逻辑。

著录项

  • 作者

    Tugsal, Umut.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.S.E.C.E.
  • 年度 2009
  • 页码 101 p.
  • 总页数 101
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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