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New trend of indicating analysis on vehicle: exploitation of the engine speed signal, opportunities and limits

机译:表明车辆分析的新趋势:发动机速度信号,机会和限制的利用

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In a context of more and more demanding technical regulations worldwide on emissions and constraints on fuel consumption on the one hand, and in order to continuously improve the drivability of the car on the other, dynamic engine testing in real driving situations is organized more and more often. Test engines mounted in test vehicles must be equipped with indicating testing devices: mainly cylinder pressure sensors, current clamps and crank angle sensor. Physical combustion analysis parameters are analyzed and optimized, like AI50, IMEP, knocking… In these conditions the space available in the engine compartment is extremely limited: a conventional solution of a high-resolution optical crank angle encoder is often problematic. The use of the engine speed sensor (generally a 60-2 engine speed sensor, as the one used in the present study) can be a viable alternative, although it delivers a much lower resolution. In this paper, based on a fine study realized on a Weber 2-cylinder engine, we will first find practical recommendations to ensure the best use of the 60-2 engine speed sensor to provide the most accurate crank angle synchronization. Then we will check the viability of this solution from the engine development engineer. To this, the state-of-the art 3-cylinder turbocharged PSA Peugeot-Citroen engine EB2DTS was used. This paper has been written together by PSA Peugeot-Citroen and KISTLER.
机译:在全世界越来越苛刻的技术法规上,一方面对燃料消耗的排放和限制,并且为了不断提高汽车的驾驶性,实际驾驶情况下的动态发动机测试越来越多地组织经常。安装在测试车辆中的测试发动机必须配备指示测试设备:主要是气缸压力传感器,电流夹具和曲柄角传感器。分析和优化的物理燃烧分析参数,如AI50,IMEP,敲击......在这些条件下,发动机舱内可用的空间非常有限:高分辨率光学曲柄角编码器的传统解决方案通常是有问题的。使用发动机速度传感器(通常为60-2发动机速度传感器,如本研究中使用的那样)可以是可行的替代方案,尽管它提供了更低的分辨率。在本文中,基于韦伯2缸发动机实现的精细研究,我们首先将找到实用的建议,以确保最佳使用60-2发动机速度传感器以提供最精确的曲柄角同步。然后我们将从发动机开发工程师检查该解决方案的可行性。为此,使用最先进的3缸涡轮增压PSA标致 - 雪铁龙发动机EB2DTS。本文由PSA标致 - 雪铁龙和凯斯勒一起编写。

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