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Structure of Simulation Systems for Structural-Dynamic Systems

机译:结构动态系统仿真系统的结构

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This contribution presents developments and trend for the structure of new simulation systems, or for extensions of existing simulation systems, in order to handle structural-dynamics systems in an adequate manner. The paper first introduces the CSSL standard for continuous system simulation and its consequences. In the following, discrete elements in continuous modelling and simulation; in more detail event structures are discussed and state events are classified. Thereby, the class of structural-dynamic systems is introduced: State events, changing the dimension of the state space, generate structural-dynamic systems. The paper continues with recent modelling standards in continuous modelling and simulation. There, Modelica and VHDL-AMS are leaving the classic input/output - related modelling methods and introduce non-causal modelling on a high level, including implicit models and state events associated with state events. Both new standards, extending and replacing the CSSL standard for the model frame, emphasise on continuous and hybrid modelling; but also especially Modelica allows defining pure discrete model constructs based on events, state charts, and Petri nets. The main chapter concentrates on new proposals for extending model frame and experimental frame of simulation systems, mainly in order to handle structural-dynamic systems properly. There, features of two competing 'philosophies' are sketched, maximal state space versus hybrid decomposition. The paper concludes with a concept for generalisation of the experimental frame, leaving the limits of pure time domain analysis.
机译:这种贡献提出了新模拟系统结构的发展和趋势,或用于现有仿真系统的扩展,以便以适当的方式处理结构动态系统。本文首先介绍了连续系统仿真的CSSL标准及其后果。在下文中,连续建模和仿真中的离散元件;更详细地讨论了事件结构,并分类状态事件。因此,介绍了结构 - 动态系统的类:状态事件,改变状态空间的尺寸,产生结构动态系统。本文在持续建模和仿真中继续进行最近的建模标准。在那里,Modelica和VHDL-AMS留下经典的输入/输出相关的建模方法,并在高级上引入非因果建模,包括隐式模型和与状态事件相关的状态事件。新标准,扩展和更换模型框架的CSSL标准,强调连续和混合造型;但是,特别是ModelICA允许基于事件,状态图表和Petri网定义纯离散模型构造。主要章节专注于扩展模型框架和模拟系统实验框架的新建议,主要是为了正确处理结构动态系统。在那里,绘制了两个竞争的“哲学”的特征,最大状态空间与混合分解。本文结束了实验框架泛化的概念,留下了纯时域分析的限制。

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