基于动态阈值的认知无线网络频谱切换

S. Bhushan, R. S. Bali, Akwinder Kaur
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引用次数: 4

摘要

频谱的稀缺性日益加剧,无线运营商所面临的频谱稀缺性导致了高拥塞程度。导致无线电频谱利用效率低下的主要原因是频谱许可制度本身。如果分配的频谱没有被主用用户使用,则不能被从用用户使用。由于这种静态和刚性的分配,无线系统只能在一个专用的频段上工作,不能随着环境的变化而改变传输频段。例如,如果一个频带的信道被大量使用,无线系统就不能切换到另一个较少使用的频带。为了解决这些关键问题,FCC最近批准在许可频段使用未经许可的设备。因此,提出了动态频谱接入技术来解决当前频谱效率低下的问题。动态频谱接入技术的关键使能技术是CR网络,它允许智能频谱感知设备机会地使用许可的频谱频段进行传输。在认知无线网络(CRN)中,在辅助连接的传输期间,来自主用户的多次中断会导致多次频谱切换,需要确定一组用于频谱切换的目标信道。提出了一种合适的交接方案,其目的是帮助认知用户尽快找到合适的通道恢复未完成的传输。动态阈值方法是研究、建模和分析认知交互过程的重要方法之一。仿真结果表明,该模型能够有效提高认知无线网络的吞吐量和分组传输率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spectrum hand off in Cognitive Radio Network using Dynamic Threshold
The scarcity of spectrum is increasing day by day due to the spectrum scarcity faced by the wireless based service providers led to high congestion levels. The main reason that leads to inefficient utilization of the radio spectrum is the spectrum licensing system itself. If the allocated radio spectrum is not used by primary users, it cannot be utilized by secondary users. Due to this static and rigid allocation, wireless systems have to work only on a dedicated band of spectrum and cannot change the transmission band with the change in the environment. For example, if one channel of spectrum band is heavily used, the wireless system cannot change to work on another more lightly used band. To address these critical problems, the FCC recently approved the use of unlicensed devices in licensed bands. Consequently, dynamic spectrum access techniques are proposed to solve these current spectrum inefficiency problems. The key enabling technology for dynamic spectrum access techniques is CR networking which allows intelligent spectrum-aware devices to opportunistically use the licensed spectrum bands for transmissions. In Cognitive Radio Network(CRN) during the transmission period of a secondary connection, multiple interruptions from the primary users result in multiple spectrum hand offs and the need of determining a set of target channels for spectrum hand offs. A suitable hand off scheme has been proposed whose objective is to help cognitive user to find suitable channel to resume the unfinished transmission as quickly as possible. Dynamic Threshold approach is an important and one of the most authentic approaches in studying, modeling and analyzing the cognitive interaction process. The simulation results of the proposed scheme show that the model works well in increasing the throughput and packet delivery ratio in Cognitive Radio Networks.
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