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Design and Evaluation of a Structural Analysis-Based Fault Detection and Identification Scheme for a Hydraulic Torque Converter

机译:基于结构分析的液力变矩器故障检测与识别方案的设计与评估

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摘要

A hydraulic torque converter (HTC) is a key component in an automatic transmission. To monitor its operating status and to detect and locate faults, and considering the high-efficiency fault detection and identification (FDI) scheme design by the methodology of structural analysis (SA), this paper presents an SA-based FDI system design and validation for the HTC. By the technique of fault mode and effect analysis (FMEA), eight critical faults are obtained, and then two fault variables are chosen to delegate them. Fault detectability and isolability, coupled with different sensor placements, are analyzed, and as a result, two speed sensors and two torque sensors of pump and turbine are selected to realize the maximal fault detectability and fault isolability: all six faults are detectable, four faults are uniquely isolable, and two faults are isolated from the other faults, but not from each other. Then five minimal structurally overdetermined (MSO) sets are easily acquired by SA to generate five corresponding residuals. The proposed FDI scheme of the HTC by SA is first validated by a theoretical model, then by an offline experiment in a commercial SUV, and the testing results indicate a consistent conclusion with the simulations and theory analysis.
机译:液压变矩器(HTC)是自动变速器中的关键组件。为了监测其运行状态并检测和定位故障,并通过结构分析(SA)方法考虑高效的故障检测与识别(FDI)方案设计,本文提出了一种基于SA的FDI系统设计和验证HTC。通过故障模式和影响分析(FMEA)技术,获得了八个关键故障,然后选择两个故障变量来代表它们。分析了故障可检测性和可隔离性,并结合不同的传感器位置,结果,选择了泵和涡轮的两个速度传感器和两个扭矩传感器以实现最大的故障可检测性和故障可分离性:所有六个故障都是可检测的,四个故障是唯一可隔离的,并且两个故障与其他故障是隔离的,但彼此之间不是隔离的。然后,SA可以轻松获取五个最小的结构超定(MSO)集,以生成五个相应的残差。首先,通过理论模型验证了SA提出的HTC的FDI方案,然后在商用SUV中通过离线实验进行了验证,测试结果与仿真和理论分析表明结论是一致的。

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