基于autosar的多核混合临界电动动力系统控制器软件体系结构建模

S. M. Sundharam, Padma Iyenghar, Elke Pulvermueller
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引用次数: 3

摘要

在本文中,我们展示了汽车软件架构设计的过渡之旅,从使用传统方法和工具链到在Matlab/Simulink (M/S)的最新版本中使用新的建模功能。我们提出了一种无缝方法,用于在多核硬件平台上运行的混合关键电动动力系统控制器的软件架构建模。通过我们的方法,我们可以实现双向可追溯性以及强大的创作过程,实现AUTOSAR系统详细的基于模型的软件架构设计,包括详细的数据字典,并进行无数的概念验证研究,假设场景模拟和安全软件的性能调优。在此背景下,我们讨论了一个工业案例研究,其中包含有价值的经验教训,我们的经验报告提供了新颖的见解和遵循的最佳实践。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Software Architecture Modeling of AUTOSAR-Based Multi-Core Mixed-Critical Electric Powertrain Controller
In this paper, we present a transition journey of automotive software architecture design from using legacy approaches and toolchains to employing new modeling capabilities in the recent releases of Matlab/Simulink (M/S). We present the seamless approach that we have employed for the software architecture modeling of a mixed-critical electric powertrain controller which runs on a multi-core hardware platform. With our approach, we can achieve bidirectional traceability along with a powerful authoring process, implement a detailed model-based software architecture design of AUTOSAR system including a detailed data dictionary, and carry out umpteen number of proof-of-concept studies, what-if scenario simulations and performance tuning of safety software. In this context, we discuss an industrial case study employing valuable lessons learned, our experience reports providing novel insights and best practices followed.
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