细胞认知无线电网络中每焦耳比特数优化

Wuchen Tang, M. Z. Shakir, K. Qaraqe, E. Serpedin, M. Imran, R. Tafazolli
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引用次数: 1

摘要

认知无线电是一种很有前途的模式,它通过动态检测已许可的无线电频段中的空白并将其重新分配给未许可的用户,从而提高频谱使用效率,解决频谱稀缺问题。然而,认知无线电可能会造成额外的能量消耗,因为它依赖于新的和额外的技术和算法。这项工作的主要目标是提高所提出的蜂窝认知无线电网络(CRN)的能量效率,其定义为比特/焦耳/赫兹。本文研究了一种典型的由感知时隙和数据传输时隙组成的二级用户帧结构。我们分析并推导了所提出的CRN的能源效率表达式,作为传感和数据传输持续时间的函数。在实际网络流量环境下,研究了最大每焦耳比特数的最优帧结构。研究了最佳感知时间和帧长对可实现的能量效率、吞吐量和干扰的影响,并通过仿真结果与相关技术进行了比较。我们的分析结果与实证结果完全一致,并为如何根据网络环境和所需的网络性能选择感知长度和帧长度提供了有用的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the bits per joule optimization in cellular cognitive radio networks
Cognitive radio has emerged as a promising paradigm to improve the spectrum usage efficiency and to cope with the spectrum scarcity problem through dynamically detecting and re-allocating white spaces in licensed radio band to unlicensed users. However, cognitive radio may cause extra energy consumption because it relies on new and extra technologies and algorithms. The main objective of this work is to enhance the energy efficiency of proposed cellular cognitive radio network (CRN), which is defined as bits/Joule/Hz. In this paper, a typical frame structure of a secondary user (SU) is considered, which consists of sensing and data transmission slots. We analyze and derive the expression for energy efficiency for the proposed CRN as a function of sensing and data transmission duration. The optimal frame structure for maximum bits per joule is investigated under practical network traffic environments. he impact of optimal sensing time and frame length on the achievable energy efficiency, throughput and interference are investigated and verified by simulation results compared with relevant state of art. Our analytical results are in perfect agreement with the empirical results and provide useful insights on how to select sensing length and frame length subject to network environment and required network performance.
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