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首页> 外文期刊>Nature reviews Cancer >Spatial-Temporal Sensing and Utilization in Full Duplex Spectrum-Heterogeneous Cognitive Radio Networks for the Internet of Things
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Spatial-Temporal Sensing and Utilization in Full Duplex Spectrum-Heterogeneous Cognitive Radio Networks for the Internet of Things

机译:全双工谱 - 异构认知无线电网络的空间 - 时间传感与利用

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摘要

The continuous growth of interconnected devices in the Internet of Things (IoT) presents a challenge in terms of network resources. Cognitive radio (CR) is a promising technology that can address the IoT spectral demands by enabling an opportunistic spectrum access (OSA) scheme. The application of full duplex (FD) radios in spectrum sensing enables secondary users (SUs) to perform sensing and transmission simultaneously, and improves the utilization of the spectrum. However, random and dense distributions of FD-enabled SU transmitters (FD-SU TXs) with sensing capabilities in small-cell CR-IoT environments poses new challenges, and creates heterogeneous environments with different spectral opportunities. In this paper, we propose a spatial and temporal spectral-hole sensing framework for FD-SU TXs deployed in CR-IoT spectrum-heterogeneous environment. Incorporating the proposed sensing model, we present the analytical formulation and an evaluation of a utilization of spectrum (UoS) scheme for FD-SU TXs present at different spatial positions. The numerical results are evaluated under different network and sensing parameters to examine the sensitivities of different parameters. It is demonstrated that self-interference, primary user activity level, and the sensing outcomes in spatial and temporal domains have a significant influence on the utilization performance of spectrum.
机译:互联网上互联设备的连续增长(物联网)在网络资源方面提出了挑战。认知无线电(CR)是一种有希望的技术,可以通过实现机会主义的频谱访问(OSA)方案来解决物联网谱要求。全双工(FD)无线电在光谱传感中的应用使二次用户(SUS)能够同时执行感测和传输,并提高频谱的利用率。然而,具有在小型电池CR-IOT环境中具有传感能力的FD启用SU变送器(FD-SU TXS)的随机和密集分布构成了新的挑战,并在具有不同光谱机会的情况下创建异构环境。在本文中,我们提出了用于CR-IOT谱 - 异构环境中的FD-SU TXS的空间和时间谱孔传感框架。结合所提出的感测模型,我们介绍了分析制剂和对不同空间位置存在的FD-SU Txs的频谱(UOS)方案的利用率的评估。在不同的网络和感测参数下评估数值结果,以检查不同参数的敏感度。据证明,自干扰,主要用户活动水平和空间和时间域中的传感结果对频谱的利用性能产生了重大影响。

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