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An IEEE 802.11 DCF-based optimal data link layer spectrum sensing scheme in cognitive radio networks

机译:认知无线电网络中基于IEEE 802.11基于DCF的最优数据链路层频谱传感方案

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In cognitive radio networks (CRNs), spectrum sensing is the key functionality for unlicensed users to detect the unused spectrum. Currently, almost all the spectrum sensing schemes for CRNs are implemented at the physical layer. However, one serious problem with current physical layer spectrum sensing is that it can only detect the presence of licensed user signals but it cannot distinguish between the licensed transmitter and the licensed receiver. This may lead to spectrum sensing inaccuracies that cause interference at the licensed receiver or a waste of spectrum resources for unlicensed users. These issues make physical layer spectrum sensing inadequate in certain practical scenarios. In this paper, a novel data link layer spectrum sensing scheme based on the IEEE 802.11 DCF is proposed to improve the spectrum sensing accuracy. Moreover, an optimal spectrum sensing duration is derived to balance the trade-off between the spectrum sensing accuracy and the spectrum sensing overhead. Simulation results show that the proposed data link layer spectrum sensing scheme outperforms the physical layer sensing scheme in terms of lower collision probability between the licensed and unlicensed transmissions. To the best of our knowledge, this is the first work that investigates the data link layer spectrum sensing in CRNs.
机译:在认知无线电网络(CRNS)中,频谱感测是未许可用户检测未使用频谱的关键功能。目前,几乎所有用于CRN的频谱感测方案都在物理层中实现。然而,目前物理层谱检测的一个严重问题是它只能检测许可用户信号的存在,但它无法区分许可的发射机和许可的接收器。这可能导致频谱传感不准确的不准确性,导致许可接收器的干扰或浪费无牌用户的频谱资源。这些问题在某些实际情况下使物理层谱感应不足。本文提出了一种基于IEEE 802.11 DCF的新型数据链路层谱检测方案,以提高频谱感测精度。此外,推导出最佳频谱感测持续时间,以平衡频谱感测精度与频谱感测开销之间的折衷。仿真结果表明,所提出的数据链路层谱检测方案在许可和未许可传输之间的较低碰撞概率方面优于物理层感测方案。据我们所知,这是第一个调查CRN中数据链路层频谱感测的工作。

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