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Design of a Bio-Inspired Embryonic Cellular Array Based on Bus Structure

机译:基于总线结构的生物启发胚胎阵列的设计

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There are some shortcomings, such as huge hardware resource consumption, functional differentiation is difficult and limited fault detection coverage, when embryonic cellular array (ECA) is used to design large-scale circuit. In this paper, the structure characteristics and communication method of multicellular organism are analyzed briefly, and a new bio-inspired ECA based on bus structure (BECA) is proposed, besides that the corresponding self-repairing strategy is designed. First, the functional decomposition has been applied in BECA, which uses bus structure to realize internal communication. BECA consists of bus and electronic tissues (ET), which can be used to realize large-scale circuit. C17 circuit in ISCAS85 circuit library is chosen as experiment subject, and experiment simulation results indicate that BECA based on bus structure is suitable for large-scale circuit, and the faults occurred in ET can be repaired effectively. In order to research BECA from the mathematical point of view, the reliability evaluation model of BECA is established, which is based on k-out-of-n system reliability model. In addition, the hardware resource consumption model of BECA is established by analyzing the number of metal oxide semiconductor (MOS) transistors that ECA consumed. Based on BECA reliability and hardware resource consumption evaluation model, comparative experiment is studied, and the results indicate that the proposed ECA can improve the reliability of circuit and reduce hardware resource consumption effectively. Therefore, the BECA presented will play an important role in designing large-scale digital circuit with self-repairing ability.
机译:存在一些缺点,如巨大的硬件资源消耗,功能分化是困难且故障检测覆盖率有限的,当胚胎蜂窝阵列(ECA)用于设计大尺度电路时。本文简要地分析了多细胞生物的结构特征和通信方法,并提出了一种基于总线结构(BECA)的新生物启发ECA,除了设计相应的自修复策略。首先,在Beca中应用了功能分解,其使用总线结构来实现内部通信。 Beca由公共汽车和电子组织(ET)组成,可用于实现大规模电路。选择ISCAS85电路库中的C17电路被选为实验主题,实验仿真结果表明,基于总线结构的Beca适用于大型电路,ET发生的故障可以有效地修复。为了从数学角度研究Beca,建立了BECA的可靠性评估模型,其基于K-OF-N个系统可靠性模型。另外,通过分析所消耗的ECA的金属氧化物半导体(MOS)晶体管的数量来建立BECA的硬件资源消耗模型。基于Beca可靠性和硬件资源消耗评估模型,研究了对比实验,结果表明,所提出的ECA可以提高电路的可靠性,从而有效地降低硬件资源消耗。因此,BECA呈现将在设计具有自修复能力的大规模数字电路方面发挥重要作用。

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