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欧阳一鸣, 陈奇, 黄正峰, 梁华国, 杜高明, 李建华. 3D NoC中基于分组共享的TSV混合容错方法[J]. 计算机辅助设计与图形学学报, 2017, 29(11): 2123-2132.
引用本文: 欧阳一鸣, 陈奇, 黄正峰, 梁华国, 杜高明, 李建华. 3D NoC中基于分组共享的TSV混合容错方法[J]. 计算机辅助设计与图形学学报, 2017, 29(11): 2123-2132.
Ouyang Yiming, Chen Qi, Huang Zhengfeng, Liang Huaguo, Du Gaoming, Li Jianhua. Hybrid Fault-Tolerant Method for TSV Based on Group Sharing in 3D NoC[J]. Journal of Computer-Aided Design & Computer Graphics, 2017, 29(11): 2123-2132.
Citation: Ouyang Yiming, Chen Qi, Huang Zhengfeng, Liang Huaguo, Du Gaoming, Li Jianhua. Hybrid Fault-Tolerant Method for TSV Based on Group Sharing in 3D NoC[J]. Journal of Computer-Aided Design & Computer Graphics, 2017, 29(11): 2123-2132.

3D NoC中基于分组共享的TSV混合容错方法

Hybrid Fault-Tolerant Method for TSV Based on Group Sharing in 3D NoC

  • 摘要: 冗余和串行化是解决硅通孔(TSV)的故障问题的2种主要方法,仅使用其中一种方法会面临资源浪费和容错效率低等问题.为此,提出一种3D NoC中基于分组共享的TSV混合容错方法.首先将TSV分成4组,并且每2组为一个相邻组,相邻组内实现TSV分组共享;然后基于分组共享,充分考虑资源的合理配置,高效利用资源设计一种新型的TSV冗余和串行化架构;最后根据TSV故障程度的不同自适应地选择冗余机制或者串行化机制,实现TSV的混合容错.实验结果表明,与单纯地使用冗余机制和串行化机制相比,该方法在性能提升上更明显.

     

    Abstract: Redundancy and serialization are two main solutions to solve the fault problems of TSV,however,use only one of the two methods will face the problems of resource waste and low efficiency of fault tolerance.To this end,we propose a hybrid fault-tolerant method for TSV based on group sharing in 3D NoC.Firstly,TSVs are divided into four groups,and every two groups is an adjacent group in which we achieve TSV groups sharing.Secondly,based on TSV groups sharing,rational allocation and efficient utilization of resources,we design a novel TSV redundancy and serialization architecture.Lastly,depending on the failure extent of TSV,we adaptively select the redundant mechanism or the serialization mechanism to achieve the hybrid fault-tolerance for TSV.Experimental results show that,the proposed method improves the performance more obviously compared with the pure redundancy mechanism or the pure serialization mechanism.

     

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