A New Qualitative language for Qualitative Simulation

Slim Medimegh, Jean-Yves Pierron, Frédéric Boulanger
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Abstract

Cyber physical systems are specified in a hybrid form, with discrete and continuous parts. Simulating such systems requires precise data and synchronization of continuous changes and discrete transitions. However, in the first design steps, missing information forbids numerical simulation. We present here a new qualitative language for qualitative simulation of cyber physical systems, which consists in computing the relationships between the system variables. This language is implemented in the Diversity symbolic execution engine to build the traces of the system. We apply this approach to the analysis of SysML models, using an M2M transformation from SysML to a pivot language, an M2T transformation from this language to Diversity and an analysis of the traces obtained by Diversity to build the qualitative behaviors of the system.
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用于定性仿真的一种新的定性语言
网络物理系统以混合形式指定,具有离散和连续的部分。模拟这样的系统需要精确的数据和连续变化和离散过渡的同步。然而,在最初的设计步骤中,信息缺失阻碍了数值模拟。我们在这里提出了一种新的定性语言,用于网络物理系统的定性模拟,它包括计算系统变量之间的关系。该语言在Diversity符号执行引擎中实现,以构建系统的跟踪。我们将这种方法应用于SysML模型的分析,使用从SysML到pivot语言的M2M转换,从该语言到Diversity的M2T转换以及对Diversity获得的轨迹的分析来构建系统的定性行为。
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