重新设计测试开发过程

P. Giordano, F. Levy
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引用次数: 13

摘要

测试程序的诊断部分的传统开发需要一个高度劳动密集型的过程,即浏览原理图和电路图的页面,假设所有潜在的故障模式,并开发离散的测试路径以确保故障传播。在重构测试过程中,将基于模型的诊断软件与测试软件分离。在运行时,诊断软件提供动态故障隔离,无需复杂的诊断测试程序。在重新设计的测试过程中,测试过程的基本性质和结构已经改变。测试的解释是通过产品或过程知识库与人工智能推理引擎的动态交互来完成的,该引擎基于它接收到的所有信息(以任何顺序)实时解释测试信息。在这种类型的测试程序结构中,没有代码是重复的。第一个故障被清晰地识别,每个故障的诊断数据被保存在一个位置。基于模型的推理使得诊断对有限的生产测试负担得起,对复杂的系统测试有效。重新设计的测试过程还支持嵌入式故障管理系统的设计,在线和离线测试之间的权衡,以及自动生产和现场服务诊断。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Re-engineering the test development process
Traditional development of the diagnostic portion of test programs required a highly labor-intensive process of going through pages of schematics and circuit diagrams, hypothesizing all potential failure modes, and developing discrete test paths to ensure fault propagation. In the re-engineered test process, model-based diagnostic software is separated from test software. In run-time, the diagnostic software provides dynamic fault isolation without complex diagnostic test programs. In the re-engineered test process, the fundamental nature and structure of the test process has been changed. The interpretation of the tests is done by dynamic interaction of the product or process knowledge base with an Al Inference Engine that on-the-fly interprets test information based upon all information it receives-in any order. In this type of test program structure, no code is duplicated. The fist of faults is clearly identified and diagnostic data for each fault is kept in one location. Model-based reasoning makes diagnostics affordable for limited production testing and effective for complex system test. The re-engineered test process also supports design of embedded fault management systems, trade-offs between on-line and off-line test, as well as automatic production and field service diagnostics.<>
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