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Design and Evaluation of a Receiver for Wired Nano-Communication Networks
arXiv - CS - Emerging Technologies Pub Date : 2020-09-24 , DOI: arxiv-2009.11805
Oussama Abderrahmane Dambri and Soumaya Cherkaoui

In this paper, we propose a bio-inspired receiver, which detects the electrons transmitted through a nanowire, then, it converts the detected information into a blue light using bioluminescence. Using light allows the designed receiver to also act as a relay for the nearest gateway (photo-detector). We simulate the construction of the nanowire, present its electrical characteristics and calculate its maximum throughput for a better design of the receiver. The designed receiver contains two parts, a part that detects the transmitted electrons, which we model by using an equivalent circuit, and a part that converts the detected electrons into a blue light. We derive the analytical expressions of the equivalent circuit's components, and we calculate the emitted photons for each electrical pulse detected. We also propose modulation techniques that guaranty an effective decoding of the information. We send a binary message and we follow the electron detection process of the proposed receiver until light emission and we calculate the Bit Error Rate (BER) to evaluate the performance of the designed receiver. The results of this study show that the designed receiver can accurately detect the electrons sent through a conductive nanowire in wired nano-communication networks, and that it can also act as a relay for the nearest gateway.

中文翻译:

有线纳米通信网络接收器的设计与评估

在本文中,我们提出了一种仿生接收器,它检测通过纳米线传输的电子,然后使用生物发光将检测到的信息转换为蓝光。使用光允许设计的接收器还充当最近网关(光电探测器)的中继。我们模拟纳米线的构造,展示其电气特性并计算其最大吞吐量,以便更好地设计接收器。设计的接收器包含两部分,一部分检测透射电子,我们使用等效电路对其进行建模,另一部分将检测到的电子转换为蓝光。我们推导出等效电路组件的解析表达式,并计算检测到的每个电脉冲的发射光子。我们还提出了保证信息有效解码的调制技术。我们发送一个二进制消息,我们遵循所提出的接收器的电子检测过程,直到光发射,我们计算误码率 (BER) 以评估设计接收器的性能。这项研究的结果表明,设计的接收器可以准确检测有线纳米通信网络中通过导电纳米线发送的电子,并且还可以作为最近网关的中继。
更新日期:2020-09-25
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