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System Level Performance Analysis for Real-Time Automotive Multicore and Network Architectures

机译:实时汽车多核和网络体系结构的系统级性能分析

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Software timing aspects have only recently received broad attention in the automotive industry. New design trends and the ongoing work in the AUTOSAR (Automotive Open System Architecture) partnership have significantly increased the industry's awareness to these issues. Now, timing is recognized as a major challenge and has been put explicitly on the agenda of AUTOSAR and other industry-driven research projects. The goals include complementing the existing standard by a timing view and adding methodological steps, if necessary. Clearly, establishing such timing models requires knowing well the implications of modern architectures and topologies. In this paper, we survey existing performance analysis approaches from real-time systems research and compare them to the established layered software architectures of automotive system design. We highlight key challenges for the application of performance analysis in this domain and identify structural as well as behavioral ldquomodeling gapsrdquo. While structural gaps can be overcome by model transformations, behavioral gaps require real extensions to known analyses. We discuss two such extensions in detail, namely, the use of hierarchical event models and the specialties of timing analysis for multicore platforms. This paper concludes with an overview over qualitative comparisons of analysis techniques, both technically and concerning their industrial applicability.
机译:软件计时方面直到最近才在汽车工业中受到广泛关注。新的设计趋势和AUTOSAR(汽车开放系统架构)合作伙伴关系中正在进行的工作大大提高了业界对这些问题的认识。现在,时间安排已被认为是一项重大挑战,并且已经明确地将时间安排在AUTOSAR和其他行业驱动的研究项目的议程中。目标包括通过时序视图对现有标准进行补充,并在必要时添加方法步骤。显然,建立这样的时序模型需要充分了解现代架构和拓扑的含义。在本文中,我们调查了来自实时系统研究的现有性能分析方法,并将其与已建立的汽车系统设计的分层软件体系结构进行了比较。我们重点介绍了性能分析在此领域中的应用所面临的主要挑战,并确定了结构模型和行为模型之间的差距。虽然可以通过模型转换来克服结构上的差距,但行为上的差距需要对已知分析进行真正的扩展。我们将详细讨论两个此类扩展,即分层事件模型的使用和多核平台的时序分析的特殊性。本文以对分析技术的定性比较进行了概述,包括技术上及其在工业上的适用性。

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