Throughput analysis of cognitive radio networks via stochastic network calculus

Jun Zheng, Li Yu, Peng Yang
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引用次数: 3

Abstract

Cognitive radio is a promising technique in improving the utilization of wireless spectrum by spectrum sensing. However, conceivable spectrum sensing errors may deteriorate the quality of service provided for users. In this paper, we propose a framework to analyze the per-user throughput of both primary users and secondary users. Based on this framework, we further estimate how sensing errors influence the throughput in cognitive radio networks. To this end, stochastic network calculus is employed as a basic tool, which is a powerful theory for quality of service analysis of computer networks. Impairment processes of service are introduced to construct the service models for both primary users and secondary users. Then per-user throughput bounds of both primary users and secondary users are obtained after considering arrival process of primary users. Numerical result shows that sensing errors play a decisive role on the upper bound of primary users' throughput, while have less impact on the lower bound of secondary users' throughput.
基于随机网络演算的认知无线网络吞吐量分析
认知无线电是通过频谱感知提高无线频谱利用率的一种很有前途的技术。然而,可想象的频谱感知误差可能会降低提供给用户的服务质量。在本文中,我们提出了一个框架来分析主用户和辅助用户的每用户吞吐量。基于此框架,我们进一步估计了感知错误如何影响认知无线网络中的吞吐量。为此,采用随机网络演算作为基本工具,是计算机网络服务质量分析的有力理论。引入业务减值过程,分别构建主用户和从用户的业务模型。然后在考虑主用户到达过程的情况下,分别得到主用户和从用户的单用户吞吐量边界。数值结果表明,感知误差对主用户吞吐量上界起决定性作用,而对次用户吞吐量下界影响较小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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