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Compositional performance analysis with improved analysis techniques for obtaining viable end-to-end latencies in distributed embedded systems

机译:使用改进的分析技术进行成分性能分析,以获得分布式嵌入式系统中可行的端到端延迟

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摘要

To give worst case guarantees for the timing behavior of complex distributed embedded real-time systems, e.g. end-to-end latencies, different compositional approaches for system-level performance analysis have been developed which exhibit great flexibility and scalability. While these approaches are in theory able to handle arbitrary complex systems, the system-level results can easily become very pessimistic with increasing numbers of components. In this article, the basic principles of compositional system-level analysis are explained and its inherent strengths and weaknesses are elaborated. Furthermore, we present improved analysis techniques from existing research which can greatly reduce the pessimism of the system-level analysis results. Two techniques will be discussed in detail: the exploitation of a system's communication infrastructure by usage of composition and decomposition operators and the exploitation of information w.r.t. the correlation of event processing. These techniques help to make system-level analysis not only applicable, but also a highly useful technique in the integration phase of embedded system design.
机译:为了给最坏的情况保证复杂的分布式嵌入式实时系统的定时性能,例如对于端到端延迟,已经开发出用于系统级性能分析的不同组合方法,这些方法具有很大的灵活性和可伸缩性。尽管这些方法理论上可以处理任意复杂的系统,但是随着组件数量的增加,系统级别的结果很容易变得非常悲观。在本文中,解释了组成系统级分析的基本原理,并阐述了其固有的优缺点。此外,我们从现有研究中提出了改进的分析技术,可以大大减少系统级分析结果的悲观情绪。将详细讨论两种技术:通过使用合成和分解运算符来开发系统的通信基础结构,以及利用信息技术来开发信息。事件处理的相关性。这些技术不仅使系统级分析适用,而且在嵌入式系统设计的集成阶段也非常有用。

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