Prokaryotic Bio-Inspired Model for Embryonics

Prokaryotic Bio-Inspired Model for Embryonics
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DOI:
10.1109/ahs.2009.45
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发表时间:
2009-07
期刊:
2009 NASA/ESA Conference on Adaptive Hardware and Systems
影响因子:
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通讯作者:
Mohammad Samie;G. Dragffy;A. Popescu;A. Pipe;C. Melhuish
Mohammad Samie;G. Dragffy;A. Popescu;A. Pipe;C. Melhuish
中科院分区:
其他
文献类型:
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作者:
Mohammad Samie;G. Dragffy;A. Popescu;A. Pipe;C. Melhuish

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这篇论文是结合,并形成第一部分,论文题为“普罗维登斯生物启发系统”。在这一部分中,我们提出并研究了一种新的基于原核细胞的生物启发模型,适用于实现自我修复的生物启发系统。我们的模型的一个关键特征是,系统的可靠性可以增加最小的硬件开销。它还提供了一种生物启发的压缩/解压缩技术,利用不同基因之间的亲密关系。分布式DNA,高度动态和灵活的路由资源和优化的自修复特性(使用块和单元消除)是所提出的模型的其他一些优点。
This paper is presented in conjunction with, and forms the first part of, the paper entitled “Prokaryotic Bio-Inspired Systems.” In this part we propose and investigate a novel prokaryotic cell-based bio-inspired model suitable to implement self-healing bio-inspired systems. A key feature of our model is that system reliability can be increased with a minimal amount of hardware overhead. It also offers a bio-inspired compression/decompression technique that exploits the intimate relationship between different genes. Distributed DNA, highly dynamic and flexible routing resources and optimized self-repair characteristics (using Block and cell elimination) are some of the other advantages of the proposed model.