首页> 外文会议>SAE World Congress >An ion current algorithm for fast determination of high combustion variability
【24h】

An ion current algorithm for fast determination of high combustion variability

机译:一种用于快速测定高燃烧变异性的离子电流算法

获取原文

摘要

It is desirable for an engine control system to maintain a stable combustion. A high combustion variability (typically measured by the relative variations in produced work, COV (IMEP)) can indicate the use of too much EGR or a too lean air-fuel mixture, which results in less engine efficiency (in terms of fuel and emissions) and reduced driveability. The coefficient of variation (COV) of the ion current integral has previously been shown in several papers to be correlated to the coefficient of variation of IMEP for various disturbances (e.g., AFR, EGR and fuel timing). This paper presents a cycle-to-cycle ion current-based method of estimating the approximate category of IMEP (either normal burn, slow burn, partial burn or misfire) for the case of lean air-fuel ratio. The rate of appearance of the partial burn and misfire categories is then shown to be well correlated with the onset of high combustion variability (high COV (IMEP)). It is demonstrated that the detection of these categories can result in faster determination (prediction) of high variability compared to only using the COV (Ion integral).
机译:希望发动机控制系统保持稳定的燃烧。高燃烧变异性(通常通过产生的工作中的相对变化测量,COV(IMEP))可以指示使用过多的EGR或过稀的空气燃料混合物,这导致发动机效率较低(燃料和排放方面)和可驱动性降低。先前已经示出了离子电流积分的变化系数(COV),以与各种干扰(例如AFR,EGR和燃料正时)相关的几篇纸张与IMEP的变化系数相关联。本文介绍了依赖于贫气比的情况的IMEP近似类别的基于循环离子电流的方法,估计贫空燃比的情况。然后显示部分燃烧和失火类别的外观速率与高燃烧变异性的开始良好相关(高COV(IMEP))。证明,与仅使用COV(离子积分)相比,这些类别的检测可能导致高可变性的更快确定(预测)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号