A performance comparison of cognitive versus traditional radio networks

A. Azarfar, J. Frigon, B. Sansò
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引用次数: 3

Abstract

Although the main objectives of dynamic spectrum access and cognitive radios are to solve the problem of spectrum scarcity and usage inefficiency, we show in this paper that such capabilities can also be used to improve other performance metrics in wireless networks. We compare the performance of a Cognitive Radio (CR) network using nodes that are able to sense the spectrum and change their operating frequency in case of link failure with a Traditional Radio (TR) with static channel access and no frequency switching capability. The improvement that can be obtained by substituting TR to CR technology is evaluated for the blocking probability, utilization and system occupancy performance metrics based on a Two-state Markov chain channel model as a function of the number of users, number of channels, arrival rate, restoration time and channel occupancy. We show that there is a strong interaction between these parameters and that CR technology performs better in slowly time-varying channels while TR technology is more appropriate in fast changing channels.
认知与传统无线网络的性能比较
尽管动态频谱接入和认知无线电的主要目标是解决频谱稀缺和使用效率低下的问题,但我们在本文中表明,这种能力也可以用于改善无线网络中的其他性能指标。我们比较了认知无线电(CR)网络的性能,该网络使用的节点能够感知频谱并在链路故障的情况下改变其工作频率,而传统无线电(TR)具有静态信道接入和无频率切换能力。基于双状态马尔可夫链信道模型,以用户数量、信道数量、到达率、恢复时间和信道占用为函数,评价了用TR代替CR技术对阻塞概率、利用率和系统占用性能指标的改进。我们发现这些参数之间存在很强的相互作用,CR技术在慢时变信道中表现更好,而TR技术更适合于快速变化的信道。
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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