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Determination of combustion parameters using engine crankshaft speed

机译:使用发动机曲轴转速确定燃烧参数

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摘要

Electronic engine controls based on real time diagnosis of combustion process can significantly help in complying with the stricter and stricter regulations on pollutants emissions and fuel consumption. The most important parameter for the evaluation of combustion quality in internal combustion engines is the in-cylinder pressure, but its direct measurement is very expensive and involves an intrusive approach to the cylinder. Previous researches demonstrated the direct relationship existing between in-cylinder pressure and engine crankshaft speed and several authors tried to reconstruct the pressure cycle on the basis of the engine speed signal. In this paper we propose the use of a Multi-Layer Perceptron neural network to model the relationship between the engine crankshaft speed and some parameters derived from the in-cylinder pressure cycle. This allows to have a non-intrusive estimation of cylinder pressure and a real time evaluation of combustion quality. The structure of the model and the training procedure is outlined in the paper. A possible combustion controller using the information extracted from the crankshaft speed information is also proposed. The application of the neural network model is demonstrated on a single-cylinder spark ignition engine tested in a wide range of speeds and loads. Results confirm that a good estimation of some combustion pressure parameters can be obtained by means of a suitable processing of crankshaft speed signal.
机译:基于燃烧过程实时诊断的电子发动机控制可大大有助于遵守关于污染物排放和燃料消耗的越来越严格的法规。评估内燃机燃烧质量的最重要参数是缸内压力,但是其直接测量非常昂贵,并且涉及侵入气缸的方法。先前的研究证明了缸内压力与发动机曲轴转速之间存在直接关系,几位作者试图根据发动机转速信号重建压力循环。在本文中,我们建议使用多层感知器神经网络来建模发动机曲轴转速与从缸内压力循环得出的一些参数之间的关系。这允许对气缸压力进行非侵入式估算,并实时评估燃烧质量。本文概述了模型的结构和训练过程。还提出了一种可能的燃烧控制器,其使用从曲轴速度信息中提取的信息。该神经网络模型的应用已在单缸火花点火发动机上进行了测试,并在各种速度和负载下进行了测试。结果证实,可以通过对曲轴转速信号的适当处理来获得对某些燃烧压力参数的良好估计。

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