GA-based frequency selection strategies for graphene-based nano-communication networks

A. Afsharinejad, A. Davy, B. Jennings, S. Balasubramaniam
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引用次数: 13

Abstract

We propose and evaluate a number of of frequency selection strategies for nano-scale devices using graphene-based nano-antennas (“graphennas”), which operate in the Terahertz band. The strategies take into account the limitations of Terahertz channel and aim to optimize the overall network transmission rate of a network of nano-devices, while maximizing various objectives. We investigate the trade-off between cases where: 1) frequency duplication within the network is allowed or prevented; 2) limiting the spread of frequencies over the entire Terahertz range is required; and 3) balancing the load between the network sink nodes is required. We compare the network performance for the different objectives proposed against a random frequency selection strategy. Our simulation study demonstrates the efficiency of the proposed algorithms and indicates their usefulness in different application scenarios.
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基于ga的石墨烯纳米通信网络频率选择策略
我们提出并评估了一些使用基于石墨烯的纳米天线(“石墨烯”)的纳米级设备的频率选择策略,这些设备在太赫兹波段工作。该策略考虑了太赫兹信道的局限性,旨在优化纳米器件网络的整体网络传输速率,同时最大化各项目标。我们研究了以下情况之间的权衡:1)允许或防止网络内的频率重复;2)需要在整个太赫兹范围内限制频率的传播;3)需要在网络汇聚节点之间均衡负载。我们比较了针对随机频率选择策略提出的不同目标的网络性能。我们的仿真研究证明了所提出算法的有效性,并表明了它们在不同应用场景中的有效性。
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