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A portable hardware-in-the-loop (HIL) device for automotive diagnostic control systems

机译:用于汽车诊断控制系统的便携式硬件在环(HIL)设备

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摘要

In-vehicle driving tests for evaluating the performance and diagnostic functionalities of engine control systems are often time consuming, expensive, and not reproducible. Using a hardware-in-the-loop (HIL) simulation approach, new control strategies and diagnostic functions on a controller area network (CAN) line can be easily tested in real time, in order to reduce the effort and the cost of the testing phase. Nowadays, spark ignition engines are controlled by an electronic control unit (ECU) with a large number of embedded sensors and actuators. In order to meet the rising demand of lower emissions and fuel consumption, an increasing number of control functions are added into such a unit. This work aims at presenting a portable electronic environment system, suited for HIL simulations, in order to test the engine control software and the diagnostic functionality on a CAN line, respectively, through non-regression and diagnostic tests. The performances of the proposed electronic device, called a micro hardware-in-the-loop system, are presented through the testing of the engine management system software of a 1.6 l Fiat gasoline engine with variable valve actuation for the ECU development version.
机译:用于评估发动机控制系统的性能和诊断功能的车载驾驶测试通常是耗时,昂贵且不可重现的。使用硬件在环(HIL)仿真方法,可以轻松实时地对控制器局域网(CAN)线路上的新控制策略和诊断功能进行测试,以减少测试的工作量和成本相。如今,火花点火发动机由带有大量嵌入式传感器和执行器的电子控制单元(ECU)控制。为了满足对降低排放和燃料消耗的不断增长的需求,在这种单元中增加了越来越多的控制功能。这项工作旨在提出一种适用于HIL仿真的便携式电子环境系统,以便通过无回归和诊断测试分别测试发动机控制软件和CAN线路上的诊断功能。通过对ECU开发版本的具有可变气门致动的1.6升菲亚特汽油发动机的发动机管理系统软件进行测试,介绍了所提出的电子设备(称为微型在环系统)的性能。

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