Selecting users in energy-efficient collaborative spectrum sensing

Davood M. Godarzi, K. Arshad, Y. Ko, K. Moessner
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引用次数: 5

Abstract

Cognitive radio network is defined as an intelligent wireless communication network that should be able to adaptively reconfigure its communication parameters to meet the demands of the transmission network or the user. In this context one possible way to utilize unused licensed spectrum without interfering with incumbent users is through spectrum sensing. Due to channel uncertainties, single cognitive (opportunistic) user cannot make a decision reliably and hence collaboration among multiple users is often required. Here collaboration among large number of users tends to increase power consumption and introduces large communication overheads. In this paper, the number of collaborating users is optimized in order to maximize the probability of detection for any given power budget in a cognitive radio network, while satisfying constraints on the false alarm probability. We show that for the maximum probability of detection, collaboration of only a subset of available opportunistic users is required. The robustness of our proposed spectrum sensing algorithm is also examined under flat Rayleigh fading and AWGN channel conditions.
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节能协同频谱感知中的用户选择
认知无线网络是一种智能无线通信网络,它能够自适应地重新配置其通信参数以满足传输网络或用户的需求。在这种情况下,利用未使用的许可频谱而不干扰现有用户的一种可能方法是通过频谱传感。由于渠道的不确定性,单个认知(机会主义)用户无法可靠地做出决策,因此经常需要多个用户之间的协作。在这里,大量用户之间的协作往往会增加功耗,并引入大量的通信开销。本文在满足虚警概率约束的前提下,对认知无线网络中任意给定功率预算下的协作用户数量进行优化,使检测概率最大化。我们表明,对于检测的最大概率,只需要可用的机会主义用户子集的协作。我们提出的频谱感知算法在平坦瑞利衰落和AWGN信道条件下的鲁棒性也得到了检验。
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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