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Closed-loop diesel engine combustion phasing control based on crankshaft torque measurements

机译:基于曲轴扭矩测量的闭环柴油机燃烧定相控制

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摘要

Methods for closed-loop combustion phasing control in a diesel engine, based on measurements of crankshaft torque, are developed and evaluated. A model-based method for estimation of cylinder individual torque contributions from the crankshaft torque measurements is explained and a novel approach for identification of crankshaft dynamics is proposed. The use of the combustion net torque concept for combustion phasing estimation in the torque domain is also described. Two different control schemes, one for individual cylinder control and one for average cylinder control, are studied. The proposed methods are experimentally evaluated using a light-duty diesel engine equipped with a crankshaft integrated torque sensor. The results indicate that it is possible to estimate and control on a cylinder individual basis using the measurements from the crankshaft torque sensor. Combustion phasing is estimated with bias levels of less than 0.5 crank angle degrees (CAD) and cycle-to-cycle standard deviations of less than 0.7 CAD for all cylinders and the implemented combustion phasing controllers manage to accurately counteract disturbances in both fuel injection timing and EGR fraction.
机译:开发和评估了基于曲轴扭矩测量的柴油机闭环燃烧定相控制方法。解释了一种基于模型的方法,用于从曲轴扭矩测量值估计气缸单个扭矩贡献,并提出了一种识别曲轴动力学的新方法。还描述了将燃烧净转矩概念用于转矩域中的燃烧定相估计。研究了两种不同的控制方案,一种用于单个气缸控制,一种用于平均气缸控制。使用配备有曲轴集成扭矩传感器的轻型柴油发动机对提出的方法进行了实验评估。结果表明,可以使用来自曲轴扭矩传感器的测量值对单个气缸进行估算和控制。估计燃烧相位的偏置水平小于0.5曲轴角度(CAD),所有汽缸的周期间标准偏差小于0.7 CAD,并且已实施的燃烧相位控制器设法精确抵消燃油喷射正时和点火时的干扰。 EGR分数。

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