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A Software Application for Visualizing and Understanding Hydraulic and Pneumatic Networks

机译:可视化和了解液压和气动网络的软件应用程序

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摘要

Hydraulic and pneumatic networks are highly nonlinear and difficult to analyze. This study presents a software application designed to help students, visualize and understand fluid systems' dynamic behaviors. The application uses a combined bond graph and singular perturbation approach for system equation formulation. A standard iterative and adaptive integrator provides online numerical solutions to the system equations. Coupled to the integrator's output are a graphical animation subsystem and an instrumentation subsystem. The animation subsystem is responsible for rendering movable components on screen, at every simulation time-step, creating the illusion of continuous movement. The instrumentation subsystem collects and displays numerical data in numerical and graphical forms. An interesting contribution of this fluid system analyzer is its "user-in-the-loop" feature. This feature allows students to become active participants by enabling them to interact with network components while a simulation run is in progress.
机译:液压和气动网络是高度非线性的,很难分析。这项研究提出了一个旨在帮助学生,可视化和理解流体系统动态行为的软件应用程序。该应用程序使用结合键图和奇异摄动方法来求解系统方程。标准的迭代和自适应积分器为系统方程式提供在线数值解决方案。与积分器的输出耦合的是图形动画子系统和仪器子系统。动画子系统负责在每个模拟时间步长在屏幕上渲染可移动组件,从而产生连续运动的错觉。仪器子系统收集并以数字和图形形式显示数字数据。该流体系统分析仪的一个有趣的贡献是其“用户在回路”功能。此功能使学生可以在模拟运行过程中与网络组件进行交互,从而成为积极的参与者。

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