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Framework for dynamic verification of multi-domain virtual platforms in industrial automation

机译:工业自动化中多域虚拟平台动态验证的框架

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A crucial part in the development of embedded systems in the industrial automation domain is their verification using simulation-based techniques. A comprehensive set of domain-specific modeling and simulation tools are available for this purpose, but they can only focus on certain aspects of a design. This paper presents a co-simulation framework for bringing them together in a structured and standardized way. The results are multi-domain virtual platforms where overall dynamic verification is possible. The advantage of multi-domain simulation models becomes clear when one recalls that embedded systems are used to interface with a physical environment. Often, they are coupled and cannot be tested in separation. Having a framework where physical and digital domains can interact in a correct and reproducible manner opens up new possibilities for embedded system developers. We demonstrate the capabilities of our framework by adding a co-simulation scheme between SystemC and the VHDL-AMS simulator SMASH, and present its application in an industrial case study for the verification of a new Rogowski Current Coil Transducer (RCCT) electronic front end architecture and its embedded controller software algorithm.
机译:在工业自动化领域中嵌入式系统开发的关键部分是使用基于仿真的技术对其进行验证。为此,可以使用一组全面的特定于领域的建模和仿真工具,但它们只能专注于设计的某些方面。本文提出了一个共同仿真框架,用于以结构化和标准化的方式将它们组合在一起。结果是可以进行整体动态验证的多域虚拟平台。当人们回想起嵌入式系统用于与物理环境进行交互时,多域仿真模型的优势变得显而易见。通常,它们是耦合的,无法单独测试。拥有一个物理和数字域可以正确且可复制的方式交互的框架,这为嵌入式系统开发人员开辟了新的可能性。我们通过在SystemC和VHDL-AMS仿真器SMASH之间添加一个联合仿真方案来演示我们框架的功能,并在验证新的Rogowski电流线圈传感器(RCCT)电子前端体系结构的工业案例研究中展示其应用。及其嵌入式控制器软件算法。

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