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Exploring network-level performances of wireless nanonetworks utilizing gains of different types of nano-antennas with different materials

机译:利用不同材料利用不同类型的纳米天线的增益探索无线纳米机的网络级性能

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Wireless nanonetworks are not a simple extension of traditional communication networks at the nano-scale. Owing to being a completely new communication paradigm, existing research in this field is still at an embryonic stage. Furthermore, most of the existing studies focus on performance enhancement of nanonetworks via designing new channel models and routing protocols. However, the impacts of different types of nano-antennas on the network-level performances of the wireless nanonetworks remain still unexplored in the literature. Therefore, in this paper, we explore the impacts of different well-known types of antennas such as patch, dipole, and loop nano-antennas on the network-level performances of wireless nanonetworks. We also investigate the performances of nanonetworks for different types of traditional materials (e.g., copper) and for nanomaterials (e.g., carbon nanotubes and graphene). We perform rigorous simulation using our customized ns-2 simulation to evaluate the network-level performances of nanonetworks exploiting different types of nano-antennas using different materials. Our evaluation reveals a number of novel findings pertinent to finding an efficient nano-antenna from its several alternatives for enhancing network-level performances of nanonetworks. Our evaluation demonstrates that a dipole nano-antenna using copper material exhibits around 51% better throughput and about 33% better end-to-end delay compared to other alternatives for large-size nanonetworks. Furthermore, our results are expected to exhibit high impacts on the future design of wireless nanonetworks through facilitating the process of finding the suitable type of nano-antenna and suitable material for the nano-antennas.
机译:无线纳米型工作不是纳米级传统通信网络的简单扩展。由于成为全新的通信范式,该领域的现有研究仍处于胚胎阶段。此外,大多数现有研究专注于通过设计新的频道模型和路由协议来实现纳米仪器的性能增强。然而,不同类型的纳米天线对无线纳米机的网络级性能的影响仍然在文献中仍然是未开发的。因此,在本文中,我们探讨了不同众所周知类型的天线如贴片,偶极和环形纳米天线的影响无线纳米纳米机的网络级性能。我们还研究了用于不同类型的传统材料(例如,铜)和纳米材料(例如,碳纳米管和石墨烯)的纳米型工厂的性能。我们使用定制的NS-2仿真执行严格的模拟,以评估利用不同材料利用不同类型的纳米天线利用不同类型的纳米天线的网络级性能。我们的评价揭示了许多新的发现,从其几种替代方案寻找有效的纳米天线,以提高纳米型工厂的网络级性能。我们的评价表明,与大型纳米型工厂的其他替代品相比,使用铜材料的偶极纳米天线呈现大约51%的吞吐量和约33%的端到端延迟。此外,我们的结果预计将对无线纳米仪的未来设计表现出高影响,通过促进找到合适类型的纳米天线和纳米天线的合适材料的过程。

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