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Characterization and rejection of noise from in-cylinder pressure traces in a diesel engine.

机译:柴油机缸内压力迹线的噪声表征和抑制。

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摘要

Diesel engine in-cylinder pressure analysis is important for engine research and diagnosis. It has been a subject of interest right from the inception of internal combustion engines. Engine cylinder pressure measurements provide insight into the combustion process and the accuracy of these measurements governs the quality of analyses of different combustion modes of the engine. Since the in-cylinder pressure increases abruptly after the start of combustion, non-flush mounting of the pressure transducer creates standing/resonant waves in the access passage which severely affect the recorded pressure fidelity by introducing undesired noise. The challenge is to get rid of these pressure pulsations and characterize the unaccounted noise which can lead to erroneous determination of different combustion parameters and characteristics.;This work focuses on online filtering of the noisy pressure data so as to obviate the need of any post-processing for combustion and noise analysis. An online filtering algorithm is defined which is a combination of a five-point moving average filter and a forward and reverse Butterworth digital filter. The filter is tested for its robustness over different engine operating conditions such as engine load, speed, boost etc. The cut-off frequency of the filter is determined on a cycle-by-cycle basis using an algorithm based on the power spectral density of the pressure signal. The noise component is segregated from the pressure trace by means of pressure decomposition technique and the peak noise power is attributed to the access passage resonance frequency. Further development of this approach can be used to achieve optimal combustion control by means of the development of optimal injection strategies in order to fulfill emission reduction and performance requirements in Diesel engines.
机译:柴油机缸内压力分析对发动机的研究和诊断很重要。自从内燃机诞生以来就一直是令人感兴趣的主题。发动机汽缸压力测量提供了对燃烧过程的洞察力,这些测量的准确性决定了发动机不同燃烧模式的分析质量。由于缸内压力在燃烧开始后突然增加,因此压力传感器的非齐平安装会在通道中产生驻波/共振波,这些驻波/共振波会通过引入不希望的噪音而严重影响所记录的压力保真度。面临的挑战是如何消除这些压力脉动并表征未解释的噪声,这些噪声会导致错误地确定不同的燃烧参数和特性。这项工作着重于对嘈杂的压力数据进行在线过滤,从而避免了任何后期处理的需要。燃烧和噪声分析的处理。定义了一种在线滤波算法,该算法是五点移动平均滤波器与正反巴特沃斯数字滤波器的组合。测试了该滤波器在不同发动机工况(例如发动机负载,转速,升压等)下的鲁棒性。使用基于功率谱密度的算法,逐周期确定滤波器的截止频率。压力信号。噪声成分通过压力分解技术从压力迹线中分离出来,峰值噪声功率归因于通道共振频率。该方法的进一步发展可用于通过开发最佳喷射策略来实现最佳燃烧控制,从而满足柴油机的排放减少和性能要求。

著录项

  • 作者

    Dey, Koustav.;

  • 作者单位

    University of Windsor (Canada).;

  • 授予单位 University of Windsor (Canada).;
  • 学科 Engineering Automotive.
  • 学位 M.A.Sc.
  • 年度 2012
  • 页码 61 p.
  • 总页数 61
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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