首页> 外文会议>DSC-vol.74-1; American Society of Mechanical Engineers(ASME) International Mechanical Engineering Congress and Exposition; 20051105-11; Orlando,FL(US) >DYNAMIC MODELING OF AN OVERHEAD VALVE ENGINE CAM-FOLLOWER SYSTEM USING A RESISTIVE COMPANION DYNAMIC SIMULATION SOLVER
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DYNAMIC MODELING OF AN OVERHEAD VALVE ENGINE CAM-FOLLOWER SYSTEM USING A RESISTIVE COMPANION DYNAMIC SIMULATION SOLVER

机译:基于电阻伴侣动态模拟算法的顶气门发动机凸轮跟随系统动态建模

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摘要

A computer simulation model of the valve train of a Honda GX30 engine was modeled using Virtual Test Bed (VTB), a resistive companion dynamic simulation solver. Traditionally VTB has been exclusive to solving electrical system models but using the resistive companion equivalence of through and across variables, it can be applied to mechanical systems. This paper describes a dynamic simulation of an overhead valve engine cam-follower system using the VTB software application. The model was created to show valve train position, velocity and acceleration to aid in development of a camless engine being developed at the University of South Carolina. The mathematical model was created using governing dynamic equations. Using C++ programming, the mathematical model was transformed into a Virtual Test Bed model. The VTB model successfully shows valve train component position, velocity and acceleration. The significance of this work is its novelty in using the Virtual Test Bed environment to handle dynamic modeling of mechanical systems, whereas to date, VTB has been primarily focused on resistive companion modeling of power electronic systems. This work provides the foundation for using VTB to tackle more complex mechanical models.
机译:本田GX30发动机的气门机构的计算机仿真模型是使用虚拟测试床(VTB)(电阻性动态仿真求解器)建模的。传统上,VTB专门用于解决电气系统模型,但是使用直通变量和跨变量的等效电阻等效,可以将其应用于机械系统。本文介绍了使用VTB软件应用程序对顶置气门发动机凸轮从动系统进行的动态仿真。创建该模型以显示气门机构的位置,速度和加速度,以帮助开发由南卡罗来纳大学开发的无凸轮发动机。使用控制动态方程创建了数学模型。使用C ++编程,数学模型被转换为虚拟测试床模型。 VTB模型成功显示了气门机构组件的位置,速度和加速度。这项工作的意义在于它在使用虚拟测试台环境来处理机械系统的动态建模方面的新颖性,而迄今为止,VTB一直主要致力于电力电子系统的电阻伴生建模。这项工作为使用VTB处理更复杂的机械模型提供了基础。

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