基于COTS嵌入式计算设备的车辆快速、准确和在线诊断的FMEA和数字孪生的结合

Mohammad Amin Moloudi, Amin Foshati, Hossein Kalantari, A. Ejlali
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引用次数: 1

摘要

车辆变得越来越复杂,同时它们也是安全关键系统,这意味着它们的故障可能导致灾难性的后果。这意味着车辆需要更复杂的诊断技术,而这些技术也不能太贵,因为它们必须广泛可用,以服务于公众的安全。为此,本文展示了一种名为故障模式和影响分析(FMEA)的过程和一种名为数字孪生(DT)的技术如何以一种新颖的方式结合起来,为车辆提供廉价而有效的在线诊断。该方法可以通过商用货架(COTS)嵌入式计算设备实现,这解释了为什么它不昂贵。它也是在线的,这意味着当车辆在运行和运动时,它是活跃的和可操作的。为了定量评价车辆诊断方法,本文定义了两个度量诊断对维修过程容易程度的影响的指标。以现代汽车常用的电子节气门控制系统(ETC)为例进行了实验研究。结果表明,该方法的诊断准确率比传统的硬件在环(HiL)技术提高了两倍以上。必须强调的是,这种准确性是通过在线实时操作和低成本实施来实现的。
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A Combination of FMEA and Digital Twinning for Rapid, Accurate, and Online Diagnosis in Vehicles Using COTS Embedded Computing Devices
Vehicles are getting more and more complicated while at the same time they are safety-critical systems which mean their failures can lead to catastrophic consequences. This implies that more sophisticated diagnostic techniques are required for vehicles that also cannot be expensive as they must be widely available to serve the general public’s safety. To this end, this paper shows how a process called Failure Mode and Effect Analysis (FMEA) and a technology called Digital Twinning (DT) can be combined in a novel way to provide an inexpensive and yet effective online diagnosis for vehicles. The approach can be implemented by Commercial-Of-The-Shelf (COTS) embedded computing devices which explains why it is not expensive. It is also online, which means it is active and operational while the vehicle is in operation and motion. In order to quantitatively evaluate vehicle diagnostic approaches, this paper provides definitions for two metrics that measure the impact of the diagnosis on the ease of repair process. As an experimental case study, the proposed approach was implemented for an Electronic Throttle Control (ETC) usually used in modern vehicles. The observations indicate that the proposed approach can improve the accuracy of diagnosis above two times compared with a classic Hardware-in-the-Loop (HiL) technique. It must be emphasized that such accuracy is achieved along with online and real-time operation and low-cost implementation.
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来源期刊
CiteScore
1.70
自引率
14.30%
发文量
17
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