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VHDL-AMS to Support DAE-PDE Coupling and Multilevel Modeling

机译:VHDL-AMS支持DAE-PDE耦合和多级建模

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With the increasingly high level of electrical system integration, the modeling of both the system behavior and the detailed physics of its elements becomes necessary. VHDL-AMS language allows to describe a range of physical systems, such as electro-magnetic devices, using a unified design approach to simulate a complete system. In addition, the most important constraint in the hierarchical modeling of the design cycle is the difficulty to use the same language or tool for the whole modeling steps and define a single set of tests for each description level. VHDL-AMS can be used as unified language for multilevel modeling, but it cannot support the description of some physical phenomena such local ones. The aim of the paper is to achieve the behavioral and the detailed modeling of multiple energy domains using VHDL-AMS, and their integration in the system environment. It proposes solutions to extend the computation capability of this language, based on computer-aided coupling strategies.
机译:随着电气系统集成的水平越来越高,必须对系统行为及其元素的详细物理模型进行建模。 VHDL-AMS语言允许使用统一的设计方法来模拟整个系统,从而描述一系列物理系统,例如电磁设备。另外,设计周期的分层建模中最重要的约束是难以在整个建模步骤中使用相同的语言或工具,并且难以为每个描述级别定义一组测试。 VHDL-AMS可以用作多层次建模的统一语言,但不能支持对某些物理现象(如局部现象)的描述。本文的目的是使用VHDL-AMS实现对多个能量域的行为和详细建模,以及它们在系统环境中的集成。它基于计算机辅助耦合策略,提出了扩展该语言的计算能力的解决方案。

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