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Link layer modeling of bio-inspired communication in nanonetworks

机译:纳米网络中生物启发式通信的链路层建模

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摘要

Bio-inspired packet communication over a link between two nanogateways is considered. In the envisioned nanonetwork architecture, bacteria are employed as transporters of information packets between gateways and therefore, the link layer model must take into account the behavior of these transporters. With the unique features of this mode of communication integrated into a simulation software, single-hop delay and throughput performance measures are analyzed. The effects on performance of traffic generation intensity, source-destination separation distance, propagation time variability, packet lifetime, and the number of bacteria that can be processed concurrently at the nanogateway are presented. The primary contribution of this study is an assessment of the effects of congestion in nanonetworks through consideration of competition among bacteria for conjugation at a nanogateway.
机译:考虑了通过两个纳米网关之间的链接进行生物启发的分组通信。在设想的纳米网络体系结构中,细菌被用作网关之间信息包的传输器,因此,链路层模型必须考虑这些传输器的行为。通过将此通信模式的独特功能集成到仿真软件中,可以分析单跳延迟和吞吐量性能指标。提出了对交通产生强度,源-目的地分离距离,传播时间可变性,包寿命以及可在纳米网关同时处理的细菌数量的性能的影响。这项研究的主要贡献是通过考虑细菌之间在纳米网关结合的竞争来评估纳米网络中的拥塞效应。

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