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首页> 外文期刊>ACM Transactions on Embedded Computing Systems >Toward Smart Embedded Systems: A Self-aware System-on-Chip (SoC) Perspective
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Toward Smart Embedded Systems: A Self-aware System-on-Chip (SoC) Perspective

机译:迈向智能嵌入式系统:自我感知的片上系统(SoC)观点

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摘要

Embedded systems must address a multitude of potentially conflicting design constraints such as resiliency, energy, heat, cost, performance, security, etc., all in the face of highly dynamic operational behaviors and environmental conditions. By incorporating elements of intelligence, the hope is that the resulting "smart" embedded systems will function correctly and within desired constraints in spite of highly dynamic changes in the applications and the environment, as well as in the underlying software/hardware platforms. Since terms related to "smartness" (e.g., self-awareness, self-adaptivity, and autonomy) have been used loosely in many software and hardware computing contexts, we first present a taxonomy of "self-x" terms and use this taxonomy to relate major "smart" software and hardware computing efforts. A major attribute for smart embedded systems is the notion of self-awareness that enables an embedded system to monitor its own state and behavior, as well as the external environment, so as to adapt intelligently. Toward this end, we use a System-on-Chip perspective to show how the CyberPhysical System-on-Chip (CPSoC) exemplar platform achieves self-awareness through a combination of cross-layer sensing, actuation, self-aware adaptations, and online learning. We conclude with some thoughts on open challenges and research directions.
机译:嵌入式系统必须面对高度动态的操作行为和环境条件,才能应对多种潜在冲突的设计约束,例如弹性,能源,热量,成本,性能,安全性等。通过合并智能元素,人们希望尽管应用程序和环境以及底层软件/硬件平台发生了高度动态的变化,但最终的“智能”嵌入式系统仍将在所需的约束条件下正常运行。由于与“智能”相关的术语(例如,自我意识,自我适应性和自治性)已在许多软件和硬件计算环境中松散使用,因此我们首先介绍“ self-x”术语的分类法,并使用此分类法来与主要的“智能”软件和硬件计算工作相关。智能嵌入式系统的主要属性是自我意识的概念,它使嵌入式系统能够监视其自身的状态和行为以及外部环境,以进行智能适应。为此,我们使用片上系统视角来展示网络物理片上系统(CPSoC)示例平台如何通过跨层感测,激励,自我感知适应和在线结合来实现自我感知学习。最后,我们对开放式挑战和研究方向进行了一些思考。

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