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A New Cross-Layer Dynamic Spectrum Access Architecture for TV White Space Cognitive Radio Applications

机译:用于电视白色空间认知无线电应用的新型交流动态频谱访问架构

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As evermore applications and services are developed for wireless devices, the dramatic growth in user data traffic has led to the legacy channels becoming congested with the corresponding imperative of requiring more spectra. This has motivated both regulatory bodies and commercial companies to investigate strategies to increase the efficiency of the existing spectrum. With the emergence of cognitive radio technology, and the transference of TV channels from analogue to digital platforms, a unique opportunity to exploit spectrum by mobile digital service providers has emerged, commonly referred to as TV White Space (TVWS). One of the challenges in utilising TVWS spectrum is reliable primary user (PU) detection which is essential as any unlicensed secondary user has no knowledge of the PU and thereby can generate interference. This paper addresses the issue of PU detection by introducing a new dynamic spectrum access algorithm that exploits the unique properties of how digital TV (DTV) frequencies are deployed. A fuzzy logic inference model based on an enhanced detection algorithm (EDA) is used to resolve the inherent uncertain nature of DTV signals. Simulation results confirm EDA significantly improves the detection probability of a TVWS channel compared to existing PU detection techniques, while providing consistently low false positive detections. The paper also analyses the impact of the hidden node problem on EDA by modelling representative buildings and proposes a novel solution.
机译:由于为无线设备开发了Evermore应用和服务,用户数据流量的急剧增长导致传统信道与需要更多谱的相应必要性。这使得监管机构和商业公司都有调查策略来提高现有频谱效率。随着认知式无线电技术的出现,以及从模拟到数字平台的电视频道的转移,通过移动数字服务提供商出现了利用频谱的独特机会,通常称为电视空间(TVWS)。利用TVWS频谱的挑战之一是可靠的主要用户(PU)检测,其作为任何未许可的辅助用户没有知识的知识,从而可以产生干扰。本文通过引入新的动态频谱访问算法来解决PU检测问题,该谱址利用如何部署数字电视(DTV)频率的唯一属性。基于增强型检测算法(EDA)的模糊逻辑推断模型用于解决DTV信号的固有不确定性质。仿真结果确认EDA与现有PU检测技术相比,射线显着提高了TVWS信道的检测概率,同时提供始终如一的低假阳性检测。本文还通过建模代表建筑物来分析隐藏节点问题对EDA的影响,并提出一种新的解决方案。

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