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System-level design: orthogonalization of concerns and platform-based design

机译:系统级设计:关注点和基于平台的设计的正交化

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System-level design issues become critical as implementation technology evolves toward increasingly complex integrated circuits and the time-to-market pressure continues relentlessly. To cope with these issues, new methodologies that emphasize re-use at all levels of abstraction are a "must", and this is a major focus of our work in the Gigascale Silicon Research Center. We present some important concepts for system design that are likely to provide at least some of the gains in productivity postulated above. In particular, we focus on a method that separates parts of the design process and makes them nearly independent so that complexity could be mastered. In this domain, architecture-function co-design and communication-based design are introduced and motivated. Platforms are essential elements of this design paradigm. We define system platforms and we argue about their use and relevance. Then we present an application of the design methodology to the design of wireless systems. Finally, we present a new approach to platform-based design called modern embedded systems, compilers, architectures and languages, based on highly concurrent and software programmable architectures and associated design tools.
机译:随着实现技术向日益复杂的集成电路发展以及上市时间的压力持续不断,系统级设计问题变得至关重要。为了解决这些问题,必须强调在所有抽象级别重用的新方法,这是我们在千兆级硅研究中心工作的主要重点。我们提出了一些重要的系统设计概念,这些概念可能会至少提供上述一些生产率的提高。特别是,我们专注于将设计过程的各个部分分离并使它们几乎独立的方法,以便可以掌握复杂性。在这个领域,引入并激励了架构功能协同设计和基于通信的设计。平台是此设计范例的基本要素。我们定义系统平台,并讨论它们的用途和相关性。然后,我们介绍了设计方法论在无线系统设计中的应用。最后,我们基于高度并发和软件可编程架构以及相关的设计工具,提出了一种基于平台的设计新方法,称为现代嵌入式系统,编译器,体系结构和语言。

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