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Modeling and control of a Gasoline Direct Injection fuel system.

机译:汽油直喷燃油系统的建模和控制。

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摘要

Fuel economy and emissions are the two main concerns to many automobile engineers. The Gasoline Direct Injection (GDI) fuel systems are widely used in internal combustion engines to improve fuel economy with reduced emissions.;This study focuses on the development of a MotoTron based fuel rail pressure control system. This work is motivated by the need for maintaining higher fuel rail pressure for improved fuel injection accuracy. The developed fuel rail control system consists of a MotoTron control module, a customized actuator drive box, and a host computer with LabVIEW GUI (graphic user interface) and the MotoTune calibration tool for MotoTron. The MotoTron and the host computer communicate through CAN (control area network). A mathematical model of the fuel rail control system was developed using MATLAB/Simulink.;The pressure controller for the fuel system contains three parts: a bumpless and anti-windup PI (proportional and integral) controller, a feed-forward controller, and a dead-zone compensator. The closed-loop control was simulated and validated in Simulink using the developed model, where the fuel injection process was also considered. The simulation results of tracking the desired pressure were compared with the experiment data.;The comparison with the Simulink simulation results and experiment data shows that the Simulink model is able to reflect the characteristics of the actual fuel rail system; and the experiment data show that the closed-loop controller is able to maintain the fuel system pressure at the desired level.
机译:燃油经济性和排放是许多汽车工程师关注的两个主要问题。汽油直喷(GDI)燃油系统广泛用于内燃机中,以提高燃油经济性并减少排放。本研究的重点是基于MotoTron的燃油导轨压力控制系统的开发。需要保持较高的燃油导轨压力以提高燃油喷射精度,从而推动了这项工作。研发的燃油导轨控制系统包括一个MotoTron控制模块,一个定制的执行器驱动箱,一个带有LabVIEW GUI(图形用户界面)和用于MotoTron的MotoTune校准工具的主机。 MotoTron和主机通过CAN(控制区域网络)进行通信。使用MATLAB / Simulink开发了燃油导轨控制系统的数学模型;燃油系统的压力控制器包括三个部分:无扰动和抗饱和PI(比例和积分)控制器,前馈控制器和死区补偿器。使用开发的模型在Simulink中模拟并验证了闭环控制,其中还考虑了燃油喷射过程。将跟踪所需压力的仿真结果与实验数据进行了比较。;与Simulink仿真结果和实验数据的比较表明,Simulink模型能够反映实际燃油导轨系统的特性;实验数据表明,该闭环控制器能够将燃油系统压力保持在所需水平。

著录项

  • 作者

    Gu, Mengyan.;

  • 作者单位

    Michigan State University.;

  • 授予单位 Michigan State University.;
  • 学科 Engineering.
  • 学位 M.S.
  • 年度 2015
  • 页码 60 p.
  • 总页数 60
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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