分布式嵌入式系统实时仿真的模型驱动虚拟样机

J. Zimmermann, Stefan Hauck-Stattelmann, A. Viehl, O. Bringmann, W. Rosenstiel
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引用次数: 12

摘要

在本文中,我们提出了一种在SystemC中生成虚拟执行平台的方法,以促进软件密集型实时嵌入式系统的开发,包括早期验证和验证。这些虚拟执行平台允许在严格考虑底层硬件平台配置的情况下执行嵌入式软件,以减少后续开发成本,并通过裁剪和探索分布式嵌入式硬件和软件架构缩短上市时间。从基于uml的软件和硬件架构的抽象描述以及遗留代码的集成抽象开始,在模型驱动的生成过程中使用模型转换技术。从二进制遗留代码分析中获得的源代码级时序和功率注释与基于tlm的非功能属性仿真的分层方法相结合,在通用虚拟原型方法中允许对嵌入式系统模型进行快速和准确的仿真。我们进一步展示了嵌入式硬件/软件与车辆动力学(包括人在环)的同步和联合仿真。为了证实我们的说法,我们提出了实验结果,表达了精心设计的虚拟原型框架的高性能和准确性,以及它在不同应用领域和用例中的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Model-driven virtual prototyping for real-time simulation of distributed embedded systems
In this paper, we present an approach to generate a virtual execution platform in SystemC to advance the development of software-intensive real-time embedded systems including early validation and verification. These virtual execution platforms allow the execution of embedded software with strict consideration of the underlying hardware platform configuration in order to reduce subsequent development costs and to allow a short time-to-market by tailoring and exploring distributed embedded hardware and software architectures. Starting from abstract UML-based descriptions of the software and hardware architecture as well as integrated abstractions of legacy code, model transformation techniques are used during the model-driven generation process. The combination of source code level timing and power annotations obtained from binary legacy code analysis with a layered approach for TLM-based simulation of non-functional properties in a common virtual prototyping methodology allows a fast and accurate simulation of the embedded system model. We further show the synchronization and co-simulation of the embedded hardware/software with vehicle dynamics including human-in-the-loop. To substantiate our allegation we present experimental results expressing the high performance and accuracy of the elaborated virtual prototyping framework as well as its applicability within different application areas and use cases.
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