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Spectral and energy efficient cognitive radio-aided heterogeneous cellular network with uplink power adaptation

机译:具有上行链路功率自适应的频谱和能量高效认知无线电辅助异构蜂窝网络

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摘要

In future heterogeneous cellular networks, cognitive radio compatible with device to device communication technique can be an aid to further enhance system spectral and energy efficiency. The unlicensed smart devices (SDs) are allowed to detect the available licensed spectrum and utilise the spectrum resource which is detected as not being used by the licensed users. In this work, we propose such a system and provide comprehensive analysis of the effect of selection of SDs' frame structure on the energy efficiency, throughput and interference. Moreover, uplink power control strategy is also considered where the licensed users and SDs adapt the transmit power based on the distance from their reference receivers. The optimal frame structure with power control is investigated under high-signal-to-noise ratio (SNR) and low-SNR network environments. The impact of power control and optimal sensing time and frame length, on the achievable energy efficiency, throughput and interference are illustrated and analysed by simulation results. It has been also shown that the optimal sensing time and frame length which maximizes the energy efficiency of SDs strictly depends on the power control factor employed in the underlying network such that the considered power control strategy may decrease the energy efficiency of SDs under very low-SNR regime. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:在未来的异构蜂窝网络中,与设备到设备通信技术兼容的认知无线电可以帮助进一步提高系统频谱和能量效率。允许未经许可的智能设备(SD)检测可用的许可频谱,并利用被检测为未被许可用户使用的频谱资源。在这项工作中,我们提出了这样一个系统,并提供了对SD帧结构选择对能量效率,吞吐量和干扰的影响的综合分析。此外,还考虑了上行链路功率控制策略,其中许可用户和SD根据与参考接收机之间的距离来调整发射功率。在高信噪比(SNR)和低SNR网络环境下,研究了具有功率控制的最佳帧结构。仿真结果说明并分析了功率控制,最佳检测时间和帧长对可实现的能效,吞吐量和干扰的影响。还表明,使SD的能量效率最大化的最佳检测时间和帧长度严格取决于底层网络中采用的功率控制因子,因此考虑的功率控制策略可能会在非常低的功率下降低SD的能量效率。 SNR机制。版权所有(c)2016 John Wiley&Sons,Ltd.

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