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Real-time combustion parameter estimation algorithm for light-duty diesel engines using in-cylinder pressure measurement

机译:基于缸内压力测量的轻型柴油机实时燃烧参数估计算法

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摘要

This paper proposes a real-time estimation algorithm of combustion parameters for the location of 50% of mass fraction burnt (MFB50), and indicated mean effective pressure (IMEP). The proposed estimation algorithm uses the difference pressure only instead of the in-cylinder pressure for calculation of the combustion parameters. Since the difference pressure is the pressure that is generated only by the combustion, it occurs between the start of combustion (SOC) and the end of combustion (EOC); this allows the proposed algorithm to estimate the combustion parameters with fewer cylinder pressure data samples and low computational load compared with the conventional method. The proposed algorithm estimates the IMEP with a result acquired during the MFB50 calculation and that can significantly reduce the computational load required to calculate the combustion parameters. Consequently, the proposed estimation algorithm requires only 51% of the execution time to calculate the combustion parameters compared to the conventional method. The proposed estimation algorithm is validated with an engine experiment under 131 operating conditions that showed high linear correlation with the original combustion parameters. In-cylinder pressure based combustion control using the estimated combustion parameters is introduced as a case study and the proposed estimation algorithm validated its significant potential for real-time applications.
机译:本文提出了一种燃烧参数实时估计算法,用于燃烧质量分数为50%的位置(MFB50),并指示平均有效压力(IMEP)。所提出的估计算法仅使用压差而不是缸内压力来计算燃烧参数。由于压差是仅由燃烧产生的压力,因此它发生在燃烧开始(SOC)和燃烧结束(EOC)之间;与传统方法相比,这使得所提出的算法能够以更少的气缸压力数据样本和较低的计算负荷来估计燃烧参数。所提出的算法通过在MFB50计算期间获得的结果来估计IMEP,并且可以显着减少计算燃烧参数所需的计算负荷。因此,与常规方法相比,所提出的估计算法仅需要执行时间的51%即可计算出燃烧参数。在131个工况下进行的发动机实验验证了所提出的估计算法,该工况显示出与原始燃烧参数的高线性相关性。作为案例研究,介绍了使用估计的燃烧参数的基于缸内压力的燃烧控制,提出的估计算法证明了其在实时应用中的巨大潜力。

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