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Evaluation of a Decoupling-Based Fault Detection and Diagnostic Technique -Part II: Field Evaluation and Application

机译:基于解耦的故障检测与诊断技术的评估-第二部分:现场评估与应用

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Existing methods addressing automated fault detection and diagnosis (FDD) for vapor compression air conditioning system have good performance for faults that occur individually, but they have difficulty in handling multiple-simultaneous faults. The decoupling-based (DB) FDD method explicitly addresses diagnostics for multiple-simultaneous faults for the first time. This paper is the second part of a two-part evaluation of the decoupling-based (DB) fault detection and diagnosis (FDD) technique whose intent is to validate the DB FDD performance and demonstrate its applications. The first part focuses on sensitivity and robustness evaluation through controlled field emulation testing, In this paper, the technique is applied to a number of field sites in California. Detailed results are given for a single site and summary results are given for the other sites. In sum, about 70% of the investigated systems are impacted by faults and about 40% have more than one fault. Service is justified for about 40% of the units. Most of the diagnosed faults are verified through field visits.
机译:解决蒸气压缩式空调系统的自动故障检测和诊断(FDD)的现有方法对于单独发生的故障具有良好的性能,但是它们在处理多个同时发生的故障方面存在困难。基于解耦(DB)的FDD方法首次明确解决了多个同时故障的诊断问题。本文是对基于去耦(DB)的故障检测和诊断(FDD)技术进行两部分评估的第二部分,该技术旨在验证DB FDD性能并演示其应用。第一部分着重于通过受控的现场仿真测试进行灵敏度和鲁棒性评估,在本文中,该技术已应用于加利福尼亚的许多现场。给出了单个站点的详细结果,并给出了其他站点的概要结果。总而言之,大约70%的被调查系统受故障影响,而大约40%的系统有多个故障。大约40%的设备可以提供服务。大多数诊断出的故障都通过现场检查得到了验证。

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