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Experimental study for the reproduction of sudden unintended acceleration incidents

机译:再现意外的加速事件的实验研究

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A few cases of the sudden unintended acceleration have been reported over the last few years [1-11] and some of them seemed to be somewhat related to an electronic throttle control (ETC) system [11,12]. In this experimental study, efforts were made to reproduce the cases of sudden unintended acceleration possibly related to the ETC. Typically, an ETC of the engine is managed based on signals from airflow sensor, throttle position sensor and acceleration pedal sensor. With this typical sensor configuration in mind, these sensor signals were checked for noise levels. However, none of them showed any clear relationship with the sudden unintended acceleration mainly due to the robustness of the ETC logic software. As an alternative approach, supply voltage to an engine control unit (ECU) was tempered intentionally to observe any clues for the incidents. The observed results with the supply voltage drop and fluctuation tests were rather astonishing. The throttle valve position went all the way up to 100% for around one second when the battery voltage plunged down to 7 V periodically despite that the acceleration pedal position was kept steady. As an effort to confirm the case, multiple tries were made systematically on a chassis dynamometer as well as on the test road. In this paper, detailed procedures and findings are reported accordingly. (C) 2016 Elsevier Ireland Ltd. All rights reserved.
机译:在过去的几年中[1-11]报道​​了一些突然意外加速的情况,其中一些似乎与电子节气门控制(ETC)系统有关[11,12]。在此实验研究中,已努力重现可能与ETC相关的突然意外加速的情况。通常,基于来自气流传感器,节气门位置传感器和加速踏板传感器的信号来管理发动机的ETC。考虑到这种典型的传感器配置,检查了这些传感器信号的噪声水平。但是,由于ETC逻辑软件的强大功能,它们都与突然的意外加速没有明显的关系。作为一种替代方法,有意调节引擎控制单元(ECU)的电源电压,以观察事件的任何线索。在电源电压下降和波动测试的情况下,观察到的结果相当惊人。尽管加速踏板位置保持稳定,但当电池电压周期性下降至7 V时,节气门位置一直上升至100%约一秒钟。为了确认此案,在底盘测功机和测试道路上系统地进行了多次尝试。本文将据此详细报告程序和发现。 (C)2016 Elsevier Ireland Ltd.保留所有权利。

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