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DEVELOPMENT OF AN INJECTOR FAULT INSERTION TOOL FOR DI GASOLINE AND DIESEL ENGINES

机译:DI汽油和柴油发动机的喷射器故障插入工具的开发

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In order to ensure that every portion of the emission control software in a vehicle works, all fault conditions must be tested. Simply simulating faults in the software of the engine controller and reporting it to the OBD Ⅱ scanner is inadequate; the fault condition must be injected externally to the Engine Control Unit (ECU). In the case of hard-to-reproduce mechanical failures, this is a challenging task. This paper discusses the development of a system capable of emulating various faults that a fuel injector can have while operating as part of a complete working vehicle. For the ECU to operate properly, all fuel injectors must be present in the vehicle, be fully functional, and must represent an accurate electrical load to the ECU. Then, the induced faults must be seamlessly inserted into the running system in less than 10μs and removed before the subsequent injection event. This was accomplished with a variety of COTS hardware, a simple custom circuit, and the use of a large, flexible FPGA platform.
机译:为了确保车辆工作中的排放控制软件的各个部分,必须测试所有故障情况。只需在发动机控制器软件中模拟故障并将其报告给OBDⅡ扫描仪不足;故障条件必须在发动机控制单元(ECU)外部注入。在难以再现的机械故障的情况下,这是一个具有挑战性的任务。本文讨论了一种能够模拟燃料喷射器可以在作为完整工作车辆的一部分的同时具有的各种故障的系统的开发。对于ECU进行操作,所有燃料喷射器必须存在于车辆中,具有完全函数,并且必须代表对ECU的准确负载。然后,诱导的故障必须在不到10μs的情况下无缝插入运行系统,并在后续喷射事件之前删除。这是通过各种CITS硬件,简单的自定义电路和使用大型柔性FPGA平台完成的。

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