A communication-theoretic design paradigm for reliable SOCs

Naresh R Shanbhag
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引用次数: 1

Abstract

Presented is a design paradigm, pioneered at the University of Illinois in 1997, for reliable and energy-efficient system-on-a-chip (SOC) in nanometer process technologies. These technologies are Characterized by non-idealities such as coupling, leakage, soft errors, and process variations, which contribute to a reliability problem. Increasing complexity of systems-on-a-chip (SOC) leads to a related power problem. The proposed paradigm provides solutions to both problems by viewing SOCs as communication networks, and employs ideas from error-control coding, communications, and information theory in order to achieve the dual goals ofreliability and energy-efficiency.
可靠soc的通信理论设计范例
提出了一种设计范例,由伊利诺伊大学于1997年首创,用于纳米工艺技术中可靠和节能的片上系统(SOC)。这些技术的特点是非理想的,如耦合、泄漏、软错误和过程变化,这些都会导致可靠性问题。片上系统(SOC)复杂性的增加导致了相关的功耗问题。所提出的范例通过将soc视为通信网络来解决这两个问题,并采用错误控制编码、通信和信息论的思想,以实现可靠性和能效的双重目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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