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Study of real-time stochastic knock detection and control for spark-ignition engines.

机译:研究火花点火发动机的实时随机爆震检测和控制。

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摘要

The ability to operate a spark-ignition (SI) engine near the knock limit provides a net reduction of engine fuel consumption. This work presents a real-time knock control system based on stochastic knock detection (SKD) algorithm. The real-time stochastic knock control (SKC) system is developed in Matlab Simulink, and the SKC software is integrated with the production engine control strategy through ATI's No-Hooks. The SKC system collects the stochastic knock information and estimates the knock level based on the distribution of knock intensities fit to a log-normal distribution. A desired knock level reference table is created under various engine speeds and loads, which allows the SKC to adapt to changing engine operating conditions. For the steady-state engine operation, a fixed-length weighted discrete FIR filter is used to estimate the knock factor (KF), an indicator of knock intensity level. Both offline simulation and engine dynamometer test result show that stochastic knock control with fixed length FIR filter has slow and excessive retard issue when significant knock event happens. To enhance the knock control response, an integrated feed-forward and feedback knock control strategy is employed. For the heavy knock events, a combination of gain scheduling and a fast retard (FR) is applied based on the detected KF. In addition, a variable length FIR filter is used to reduce the KF estimation time. The performance of the developed knock detection and control system is then evaluated on a V6 3.5L turbocharged engine on a dynamometer test stand.
机译:在爆震极限附近操作火花点火(SI)发动机的能力可净减少发动机的燃油消耗。这项工作提出了一种基于随机爆震检测(SKD)算法的实时爆震控制系统。在Matlab Simulink中开发了实时随机爆震控制(SKC)系统,并且该SKC软件通过ATI的No-Hooks与生产引擎控制策略集成在一起。 SKC系统收集随机爆震信息,并根据符合对数正态分布的爆震强度分布估算爆震水平。在各种发动机转速和负载下都会创建所需的爆震水平参考表,这使SKC可以适应不断变化的发动机工况。对于稳态发动机运行,使用固定长度的加权离散FIR滤波器来估计爆震因子(KF),这是爆震强度水平的指标。离线仿真和发动机测功机测试结果均表明,当发生重大爆震事件时,采用固定长度FIR滤波器的随机爆震控制会出现缓慢和过大的延迟问题。为了增强爆震控制响应,采用了集成的前馈和反馈爆震控制策略。对于严重的爆震事件,将基于检测到的KF应用增益调度和快速延迟(FR)的组合。另外,使用可变长度的FIR滤波器来减少KF估计时间。然后,在测功机测试台上的V6 3.5L涡轮增压发动机上评估开发的爆震检测和控制系统的性能。

著录项

  • 作者

    Luo, Wei.;

  • 作者单位

    Michigan Technological University.;

  • 授予单位 Michigan Technological University.;
  • 学科 Mechanical engineering.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 166 p.
  • 总页数 166
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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