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Estimation of optimum number of cycles for combustion analysis using measured in-cylinder pressure signal in conventional CI engine

机译:在常规CI发动机中使用测得的缸内压力信号估算燃烧分析的最佳循环数

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摘要

Analysis of measured in-cylinder pressure data provides various parameters that characterize engine combustion process. Advanced engine control technologies use cylinder pressure based combustion parameters for closed loop control. Four step signal processing (i) absolute pressure correction, (ii)xrank angle position referencing, (iii) cycle averaging and (iv) filtering is typically applied to get sufficiently accurate cylinder pressure data for an engine cycle. This paper focuses on cycle averaging and filtering of in-cylinder pressure signal from a conventional compression ignition (CI) engine. Experiments are conducted at different engine load and compression ratios at 1500 rpm. The in-cylinder pressure trace of 2500 consecutive engine cycles is recorded and analyzed. Effect of in-cylinder pressure signal noise and cyclic variation on combustion analysis is investigated. A method based on standard deviation of pressure and pressure rise rate is used to find sufficient minimum number of engine cycles to be recorded for averaging to get reasonably accurate pressure data independent of cyclic variability. (C) 2016 Elsevier Ltd. All rights reserved.
机译:对测得的缸内压力数据的分析提供了表征发动机燃烧过程的各种参数。先进的发动机控制技术使用基于气缸压力的燃烧参数进行闭环控制。通常应用四步信号处理(i)绝对压力校正,(ii)曲轴角位置参考,(iii)循环平均和(iv)滤波,以获得发动机循环所需的足够准确的气缸压力数据。本文着重于对传统压燃式(CI)发动机的缸内压力信号进行周期平均和滤波。实验是在1500 rpm的不同发动机负载和压缩比下进行的。记录并分析了2500个连续发动机循环的缸内压力轨迹。研究了缸内压力信号噪声和周期性变化对燃烧分析的影响。使用基于压力和压力上升率的标准偏差的方法来找到要记录的足够最少的发动机循环数,以求平均,以获得独立于循环可变性的合理准确的压力数据。 (C)2016 Elsevier Ltd.保留所有权利。

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