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仿生自修复硬件多层结构模型
引用本文:王南天,钱彦岭,李岳.仿生自修复硬件多层结构模型[J].国防科技大学学报,2016,38(4):85-89.
作者姓名:王南天  钱彦岭  李岳
作者单位:国防科技大学装备综合保障技术重点实验室,国防科技大学装备综合保障技术重点实验室,国防科技大学装备综合保障技术重点实验室
基金项目:国家部委资助项目(A28201XXXXX)
摘    要:针对仿生自修复硬件细胞间信号传输复杂、效率低等问题,借鉴内分泌系统中激素的传输方式,提出基于片上网络和近邻连接的4层仿生自修复硬件结构模型,并以实现有限脉冲响应滤波器为例,对模型进行详细论述。基于该模型的自修复硬件,具有灵活的布线能力与良好的容错能力,表明该模型为高可靠性自修复硬件设计提供了新途径。

关 键 词:仿生硬件  自修复  内分泌  片上网络  近邻连接  有限脉冲响应滤波器
收稿时间:2015/3/30 0:00:00

Multi-layer Structural Architecture for Bio-inspired Self-healing Hardware
WANG Nantian,QIAN Yanling and LI Yue.Multi-layer Structural Architecture for Bio-inspired Self-healing Hardware[J].Journal of National University of Defense Technology,2016,38(4):85-89.
Authors:WANG Nantian  QIAN Yanling and LI Yue
Institution:WANG Nantian;QIAN Yanling;LI Yue;Science and Technology on Integrated Logistics Support Laboratory,National University of Defense Technology;
Abstract:Inspired by the circulatory secretion and paracrin of hormone, aiming at solving the problems such as low efficiency, complexity and etc. during cellular communicating, a four-layer structural architecture for bio-inspired self-healing hardware is proposed based on Network on Chip (NoC) and neighborhood connections. A self-healing hardware realizing an FIR filter based on the architecture is brought in to explain the architecture in detail. The hardware shows flexible routing ability and potential good fault-tolerant ability. It indicates that the structural architecture provides a new approach to design a self-healing hardware with high reliability.
Keywords:bio-inspired hardware  self-healing  incretion  NoC  neighborhood  FIR filter
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