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MULTI-POLE MODELLING AND INTELLIGENT SIMULATION ENVIRONMENT FOR FLUID POWER SYSTEMS

机译:流体电力系统多极建模与智能仿真环境

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A modelling methodology is described for graphical modelling and simulation of fluid power systems. The approach is based on using multi-pole models of functional elements. Principles of composing models of fluid power systems from multi-pole models of their components are presented. A high-level graphical environment CoCoViLa (Compiler Compiler for Visual Languages) is used as a tool for modelling and simulation. Using the CoCoViLa environment enables one to build fast prototypes for modelling and simulation various technical systems. Modelling and simulation of a hydraulic-mechanical load-sensing system is considered as an example. An object-oriented multi-pole model of the load-sensing system is designed and used. Object-oriented multi-pole models, visual programming environment, automatic program synthesis and distributed computing are the original approach in simulation of fluid power systems.
机译:描述了用于图形建模和流体动力系统的模拟的建模方法。该方法是基于使用功能元素的多极模型。提出了一种组成组件多极模型的流体电力系统模型的原理。高级图形环境CoCovila(用于视觉语言的编译器编译器)用作建模和仿真的工具。使用CoCovila环境使一个能够构建用于建模和模拟各种技术系统的快速原型。液压机械载荷传感系统的建模和仿真被认为是一个例子。设计和使用负载传感系统的面向对象的多极模型。面向对象的多极型号,可视化编程环境,自动编程合成和分布式计算是流体电力系统仿真的原始方法。

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