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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >Uplink achievable rate in underlay random access OFDM-based cognitive radio networks
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Uplink achievable rate in underlay random access OFDM-based cognitive radio networks

机译:基于DM的认知无线电网络的底层随机接入的上行链路可实现的速率

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摘要

This paper investigates the uplink achievable rate of secondary users (SUs) in underlay orthogonal frequency division multiplexing based cognitive radio networks, where the SUs randomly access the subcarriers of the primary network. In practice, the primary base stations (PBSs), such as cellular base stations, may not be placed close to each other to mitigate the interferences among them. In this regard, we model the spatial distribution of the PBSs as a ss-Ginibre point process which captures the repulsive placement of the PBSs. It is assumed that in order to alleviate the interferences at the PBSs from the SUs, each SU controls its transmit power based on the average interference level at the closest PBS induced by the SU. We first analytically identify the characteristics of the transmit powers at the SUs. Then, tight approximations of the uplink achievable rate of the secondary network are provided in two different scenarios that assume either a decentralized or centralized allocation of the SUs' subcarriers, respectively. The accuracy of our analytical results is validated by simulation results.
机译:本文研究了基于底层正交频分复用的认知无线网络中的二级用户(SUS)的上行链路可实现的速率,其中SUS随机地访问主网络的子载波。在实践中,诸如蜂窝基站的主要基站(PBSS)可以不彼此靠近地放置以减轻它们之间的干扰。在这方面,我们将PBSS的空间分布模拟为SS-GInibre点过程,其捕获了PBSS的排斥放置。假设为了减轻来自SUS的PBSS的干扰,每个SU基于由SU引起的最近PBS的平均干扰水平来控制其发射功率。我们首先分析了SUS的发射功率的特性。然后,在两个不同的场景中提供了次要网络的上行链路可实现速率的紧密近似,其分别分别假设SUS“子载波的分散或集中分配。我们的分析结果的准确性通过模拟结果验证。

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