Performance analysis of general order selection in decentralized cognitive radio networks

Mahmoud Elsaadany, T. Khattab
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引用次数: 1

Abstract

In this paper, we consider an underlay secondary network comprising of K transmitter-receiver pairs sharing the spectrum of a primary network, which is divided into n non-overlapping frequency bands (subchannels). Each secondary pair can communicate over only one subchannel and should keep the interference generated to the primary network below a threshold. A decentralized multiple access algorithm is used by the secondary pairs to select a proper subchannel. We study the performance of a modified version of the medium access control (MAC) protocol proposed by Elkashlan et al., referred to as the general order selection algorithm. We obtain the statistics of the output signal-to-noise ratio of the algorithm, and the statistics of the achievable capacity per secondary pair. Closed-form expressions for the outage probability, average bit error rate of the secondary users, and the aggregate throughput of the secondary network are derived. Assessment of the analytical work of this paper is done through comparisons with simulation.
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分散认知无线电网络中一般阶数选择的性能分析
在本文中,我们考虑了一个由共享主网络频谱的K个发送-接收对组成的底层辅助网络,该网络被划分为n个不重叠的频带(子信道)。每个辅助对只能在一个子信道上通信,并应使对主网络产生的干扰低于阈值。从信道对采用分散式多址访问算法选择合适的子信道。我们研究了Elkashlan等人提出的介质访问控制(MAC)协议的改进版本的性能,称为通用顺序选择算法。得到了算法输出信噪比的统计信息,以及每副副对可实现容量的统计信息。导出了二级网络的中断概率、平均误码率和总吞吐量的封闭表达式。通过与仿真的比较,对本文的分析工作进行了评价。
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