论文标题

涡轮增压火花点发动机系统的现实模拟测试:评估故障诊断算法和策略的平台

A Realistic Simulation Testbed of A Turbocharged Spark-Ignited Engine System: A Platform for the Evaluation of Fault Diagnosis Algorithms and Strategies

论文作者

Ng, K. Y., Frisk, E., Krysander, M., Eriksson, L.

论文摘要

近年来,对高度非线性动态系统(例如车辆发动机)等高度非线性动态系统的研究引起了极大的兴趣,尤其是在汽车行业朝向自动驾驶技术方面。本文介绍了一种新型的开放源模拟测试,该测试是涡轮增压(TCSI)汽油发动机系统,用于测试和评估残留物的产生和故障诊断方法。用户使用MATLAB/SIMULINK设计和开发,使用GUI界面与测试床进行交互,在该床位上可以使用工业标准驾驶循环(例如全球范围的协调轻型车辆测试程序(WLTP),新的欧洲驾驶周期(NEDC),外部驾驶循环(EUDC)(EUDC)和EPA Federal Test Proppsive(EPA联邦测试)和EPA联邦测试程序(EPA)和FTP(FTP)(FTP)(FTP)(FTP)1717171717175。使用平均值引擎模型(MVEM)对发动机进行建模,并使用基于比例综合(PI)的Boost Controller进行控制。 GUI界面还允许用户诱导11个感兴趣的故障之一,从而更好地理解它们对发动机性能的影响。这可以最大程度地减少对发动机永久损坏的风险,并缩短其寿命,如果对实际物理系统进行测试。该仿真测试床将用作16个出色的平台,研究人员可以生成关键数据,以开发和比较当前和未来的研究方法,以诊断汽车发动机系统的故障诊断。

Research on fault diagnosis on highly nonlinear dynamic systems such as the engine of a vehicle have garnered huge interest in recent years, especially with the automotive industry heading towards self-driving technologies. This article presents a novel opensource simulation testbed of a turbocharged spark ignited (TCSI) petrol engine system for testing and evaluation of residuals generation and fault diagnosis methods. Designed and developed using Matlab/Simulink, the user interacts with the testbed using a GUI interface, where the engine can be realistically simulated using industrial-standard driving cycles such as the Worldwide harmonized Light vehicles Test Procedures (WLTP), the New European Driving Cycle (NEDC), the Extra-Urban Driving Cycle (EUDC), and EPA Federal Test Procedure (FTP-75). The engine is modeled using the mean value engine model (MVEM) and is controlled using a proportional-integral (PI)-based boost controller. The GUI interface also allows the user to induce one of the 11 faults of interest, so that their effects on the performance of the engine are better understood. This minimizes the risk of causing permanent damages to the engine and shortening its lifespan, should the tests be conducted onto the actual physical system. This simulation testbed will serve 16 as an excellent platform where researchers can generate critical data to develop and compare current and future research methods for fault diagnosis of automotive engine systems.

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