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Improved disturbance rejection and tracking control of time-delayed systems: Application to engine air-fuel ratio control.

机译:改进的时滞系统的干扰抑制和跟踪控制:在发动机空燃比控制中的应用。

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摘要

Many dynamic systems contain output time delays due to transport or process elements or other phenomena. This work explores the use of time-delay system control techniques for controlling the air-fuel ratio behavior of an internal combustion engine. Effective disturbance rejection and tracking are critical to maximizing the engine air-fuel ratio's effect on catalyst performance and emissions. The state of the art in engine air-fuel ratio control is reviewed (which includes consideration of the exhaust system's aftertreatment) and compared to a controller derived from directly addressing the engine's time delay elements. During the analysis of control structures for time delay systems, many improvements to past work are demonstrated toward improved tracking and disturbance rejection for both SISO and MIMO systems. Applying the new control structure and design resulting from this analysis, it was experimentally shown that improvements in tracking and disturbance rejection are possible over the current state of the art. Considering the time-varying nature of the engine plant, a novel method of state equation augmentation is demonstrated to account for rapid plant parameter changes in reference plant models with feedthrough terms. Finally, the new controller is simulated with a validated, detailed catalyst model to show the improved catalyst control flexibility in the presence of input disturbances.
机译:许多动态系统由于传输或过程元素或其他现象而包含输出时间延迟。这项工作探索了使用时滞系统控制技术来控制内燃机的空燃比行为。有效的干扰抑制和跟踪对于最大化发动机空燃比对催化剂性能和排放的影响至关重要。回顾了发动机空燃比控制的最新技术(包括对排气系统的后处理的考虑),并将其与直接处理发动机的延时元件而得出的控制器进行了比较。在分析时滞系统的控制结构时,对过去的工作进行了许多改进,以改进SISO和MIMO系统的跟踪和干扰抑制能力。应用分析得出的新控制结构和设计,实验表明,在当前技术水平上,跟踪和干扰抑制的改进是可能的。考虑到发动机设备的时变特性,一种新的状态方程扩充方法被证明可以解决带有馈通项的参考设备模型中快速的设备参数变化。最后,使用经过验证的详细催化剂模型对新控制器进行仿真,以显示在存在输入干扰的情况下改进的催化剂控制灵活性。

著录项

  • 作者

    Doering, Jeffrey Allen.;

  • 作者单位

    Michigan Technological University.;

  • 授予单位 Michigan Technological University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 273 p.
  • 总页数 273
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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