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Applications of field programmable gate arrays for engine control.

机译:现场可编程门阵列在发动机控制中的应用。

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摘要

Automotive engine control is becoming increasingly complex due to the drivers of emissions, fuel economy, and fault detection. Research in to new engine concepts is often limited by the ability to control combustion. Traditional engine-targeted micro controllers have proven difficult for the typical engine researchers to use and inflexible for advanced concept engines. With the advent of Field Programmable Gate Array (FPGA) based engine control system, many of these impediments toresearch have been lowered.;This dissertation will talk about three stages of FPGA engine controller application. The most basic and widely distributed is the FPGA as an I/O coprocessor, tracking engine position and performing other timing critical low-level tasks. A later application of FPGAs is the use of microsecond loop rates to introduce feedback control on the crank angle degree level. Lastly, the development of custom real-time computing machines to tackle complex engine control problems is presented.;This document is a collection of papers and patents that pertain to the use of FPGAs for the above tasks. Each task is prefixed with a prologue section to give the history of the topic and context of the paper in the larger scope of FPGA based engine control.;The author of this study founded, built up, and eventually sold Drivven Inc., a company dedicated to the implementation of FPGAs in engine control. As a result, this study spans a decade of time where we see the first few papers related to FPGA based engine control, and concludes with FPGA based engine controllers being the de facto standard for advanced combustion research.
机译:由于排放,燃油经济性和故障检测的驱动因素,汽车发动机控制变得越来越复杂。对新发动机概念的研究通常受到控制燃烧能力的限制。对于典型的发动机研究人员而言,传统的以发动机为目标的微控制器已被证明很难使用,而对于高级概念发动机则缺乏灵活性。随着基于现场可编程门阵列(FPGA)的发动机控制系统的问世,许多研究障碍被降低了。本文将讨论FPGA发动机控制器应用的三个阶段。最基础且分布最广泛的是FPGA,它是一个I / O协处理器,可跟踪引擎位置并执行其他时序关键的低级任务。 FPGA的后续应用是使用微秒循环速率在曲柄角度等级上引入反馈控制。最后,介绍了用于解决复杂引擎控制问题的定制实时计算机的开发。该文档是与使用FPGA完成上述任务有关的论文和专利的集合。每个任务的开头都加了序言部分,以提供基于FPGA的引擎控制的更大范围内论文的主题和背景的历史记录;该研究的作者创立,建立并最终出售了Drivven Inc.,该公司致力于在发动机控制中实施FPGA。结果,这项研究跨越了十年的时间,在此期间,我们看到了与基于FPGA的发动机控制有关的前几篇论文,并得出结论,基于FPGA的发动机控制器是高级燃烧研究的事实上的标准。

著录项

  • 作者

    Viele, Matthew.;

  • 作者单位

    Colorado State University.;

  • 授予单位 Colorado State University.;
  • 学科 Engineering Computer.;Engineering Automotive.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 285 p.
  • 总页数 285
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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