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Methodology for determining octane response at different altitudes for vehicles equipped with knock sensors

机译:用于确定配备有爆震传感器的车辆的不同高度辛烷值的方法

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Road testing to determine the altitude/octane sensitivity of fuels and vehicles has traditionally been conducted according to the CRC E-15 method, which is based on the detection of audible knock. With the introduction of knock-sensors on modern engines, this method is no longer considered to be appropriate or viable. Acceleration-based methods have been proposed as an alternative technique for octane-requirement evaluation but, in terms of altitude-effect investigations, such methods are subject to the complexities of air density variations and its impact on overall vehicle acceleration. The present paper explores a more fundamental approach by extending the acceleration concept to its logical conclusion and deducing the underlying engine torque curve. This approach revealed the activity of the knock sensor directly in terms of its influence on the engine torque and it was concluded that the method represents an eminently suitable technique for altitude/octane evaluation. Accurate measurement of the vehicles acceleration was critical to the success of the method and was facilitated by the used of modern GPS technology.
机译:传统上根据CRC E-15方法进行了传统上进行燃料和车辆的高度/辛烷值灵敏度的道路测试,这是基于检测听觉爆震的方法。随着现代发动机上的爆震传感器引入,这种方法不再被认为是合适的或可行的。已经提出了基于加速的方法作为辛烷值评估的替代技术,但在高度效应研究方面,这些方法受到空气密度变化的复杂性及其对整体车辆加速度的影响。本文通过将加速概念扩展到其逻辑结论并推导底层发动机扭矩曲线来探讨更基本的方法。该方法揭示了爆震传感器直接在其对发动机扭矩的影响方面的活动,并且得出结论是该方法代表了对海拔高度/辛烷值评价的瞬间合适的技术。准确测量车辆加速对于该方法的成功至关重要,并通过现代GPS技术的使用促进。

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