Hybrid Nano Communications
S. M. Riazul Islam, M. Jalil Piran, Anish P. Shreesta, Farman Ali,, Asif Iqbal, Kyung-Sup Kwak

TL;DR
This paper introduces a hybrid nano communication system combining terahertz, molecular, and neural communication modes, analyzing its capacity and key interface designs for advanced nanoscale data transmission.
Contribution
It proposes a novel hybrid nano communication framework integrating three modes and provides capacity analysis and interface design insights.
Findings
Capacity analysis of the hybrid channel
Design insights for key interfaces
Numerical results on data transmission capacity
Abstract
In this paper, we propose a hybrid nano communication (HNC) system that integrates three possible modes of nano communications: terahertz communication (TC), molecular communication (MC), and neural communication (NC). The paper provides some insights into how the required four key building blocks, namely, terahertz to molecular (T2M) relay interface, molecular to terahertz (M2T) interface, molecular to neural (M2N) relay, and neural to molecular (N2M) interface can be designed to implement the HNC system. In addition, the capacity analysis for the hybrid channel is provided. Sub-channels' capacities are also calculated. Finally, numerical results are presented to comprehend the data transmission capacity of the proposed HNC system.
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Taxonomy
TopicsMolecular Communication and Nanonetworks · Wireless Body Area Networks · Energy Harvesting in Wireless Networks
