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AUTOMATED TROUBLESHOOTING TOOLS FOR MINIMIZING DOWNTIME AND REDUCING THE LABOR AND MATERIAL COSTS OF C-5 AIRCRAFT

机译:自动化故障排除工具,可最大限度地减少停机时间并降低C-5飞机的劳动力和材料成本

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Based on recent reports [1,2], a large percentage of C-5 Aircraft were found not mission capable due to maintenance problems. For example, in one location, no more than eight out of 22 C-5's were mission capable. These maintenance problems reveal the need to improve the utilization of current diagnostic systems. This paper emphasizes such a system, known as the Malfunction Detection Analysis and Recording System (MADARS). When fully utilized, the improved MADARS III together with the ground maintenance diagnostics systems greatly enhances the accuracy in identifying faulty components. MADARS uses a digital computer to gather and record data from hundreds of test points during aircraft operations. Some of these test points automatically trigger fault codes to identify faulty components. Many component failures may require further fault isolation where additional test points may be utilized in the troubleshooting process with MADARS III. Data recorded by MADARS is downloaded to a Ground Processing Interface System (GPIS), which makes the data available for local analysis. GPIS also transmits the data to a database server called Quick Look Database (OLD). OLD was developed as a tool for aircraft maintainers to prepare reports based on C-5 flight data files. Test point data may be accessed through the OLD and graphed for visual abnormalities and for comparison with other related test points. This paper discusses the benefits of using these maintenance data reporting tools. These tools can help maintainers identify potentially faulty components early. Some examples of how these tools can be used are provided in this paper. This paper also discusses how troubleshooting efforts on a C-5 may be further improved by including field experience in the decision making process.
机译:基于最近的报告[1,2],发现了大量的C-5飞机而不是由于维持问题而能够。例如,在一个位置,22 C-5的不超过八个是能够的使命。这些维护问题揭示了改善当前诊断系统的利用的需要。本文强调了这种系统,称为故障检测分析和记录系统(Madars)。在充分利用时,将改进的Madars III与地面维护诊断系统一起大大提高了识别故障组件的准确性。马德斯在飞机运营期间使用数字计算机收集和记录来自数百个测试点的数据。其中一些测试点自动触发故障码以识别故障组件。许多组件故障可能需要进一步的故障隔离,其中可以在与Madars III进行故障排除过程中使用其他测试点。 Madars记录的数据将下载到地面处理接口系统(GPI),这使得可用于本地分析的数据。 GPI还将数据传输到名为Cash Wook数据库(旧)的数据库服务器。旧的被开发为飞机维护者的工具,以根据C-5飞行数据文件准备报告。可以通过旧的测试点数据并为视觉异常进行绘制,并与其他相关测试点进行比较。本文讨论了使用这些维护数据报告工具的好处。这些工具可以帮助维护人员提前识别潜在的故障组件。本文提供了如何使用这些工具的一些示例。本文还讨论了通过决策过程中的现场经验,可以进一步提高C-5在C-5上的故障排除问题。

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