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Exploiting Microscopic Spectrum Opportunities in Cognitive Radio Networks

机译:在认知无线电网络中利用微观频谱机会

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摘要

In this paper, we are interested in cognitive radio networks (CRNs) whose operation does not rely on channel sensing. A spectrum server is responsible for collecting spectrum availability and location information from primary radio networks (PRNs), and broadcasting this information to cognitive radios. By subscribing to this broadcast, a CR knows about the spectrum opportunities without sensing channels. Spectrum opportunity under this paradigm presents a multi-level structure that generalizes the well-known channel-sensing-based binary structure. This multi-level structure reflects a {em microscopic} spectrum opportunity for CRs, and can be exploited to increase the CRN throughput. Under this structure, we study efficient spectrum access in a multi-CR environment, with the objective of maximizing the network-wide utilization of spectrum opportunity. The difficulty of our problem comes from the fact that different CRs may decide the same channel to be available, but at different levels. Therefore, channel access needs to be carefully coordinated. Both centralized and distributed solutions are provided, supporting different modes of operation. Numerical results verify the accuracy of our algorithms and the significant gain achieved by the multi-level framework.
机译:在本文中,我们对认知无线电网络(CRN)感兴趣,其操作不依赖于信道感知。频谱服务器负责从主要无线电网络(PRN)收集频谱可用性和位置信息,并将此信息广播到认知无线电。通过订阅此广播,CR无需了解信道即可了解频谱机会。这种范式下的频谱机会提出了一种多层次的结构,该结构概括了众所周知的基于信道感知的二进制结构。这种多层次的结构反映了CR的{em microscopic}频谱机会,并且可以用来增加CRN吞吐量。在这种结构下,我们研究了在多CR环境中的有效频谱访问,目的是最大化网络范围内频谱机会的利用率。我们的问题的困难来自于这样一个事实,即不同的CR可能会决定同一通道可用,但级别不同。因此,需要仔细协调频道访问。提供集中式和分布式解决方案,支持不同的操作模式。数值结果验证了我们算法的准确性以及通过多级框架实现的显着收益。

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