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Real time calculation of residual gas fraction utilising the polytropic coefficient of compression

机译:利用多细胞压缩系数的残余气体馏分实时计算

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>An algorithm is developed to serve as a stand-alone residual gas fraction diagnostic tool which utilises the polytropic coefficient of compression and an inverse thermodynamic algorithm to determine trapped residual gas fraction. The model requires: 1) cylinder pressure resolved with at least crank angle resolution; 2) high accuracy manifold pressure (preferably crank angle resolved and measured very near the intake port; 3) equivalence ratio of the fuel-air mixture; 4) mass estimations of cylinder contents other than residual, namely air mass, and fuel mass; 5) cylinder geometry (bore, stroke, clearance volume); 6) timing of the intake valve closing event. This work outlines the algorithm methodology and assesses its performance on both an ensemble averaged and individual cycle basis. However, the current RGF calculation methodology is shown to produce unacceptable levels of error on an individual cycle basis. Suggestions are provided for algorithm enhancement.
机译:开发了一种算法,用作独立的残余气体分数诊断工具,其利用多种压缩系数和逆热力学算法来确定被困的残余气体分数。 该模型需要:1)气缸压力至少用曲柄角分辨出去; 2)高精度歧管压力(优选地曲柄角分辨并非常靠近进气口; 3)燃料 - 空气混合物的等效比; 4)除残余,即空气质量和燃料质量之外的气缸内容物的质量估计; 5)气缸几何(孔,行程,间隙); 6)进气门关闭事件的时间。 这项工作概述了算法方法,并在整体平均和单个循环的基础上评估其性能。 然而,目前的RGF计算方法显示在单个循环的基础上产生不可接受的误差水平。 提供了用于算法增强的建议。

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