自主认知无线电的感测阶频散

Z. Khan, Janne J. Lehtomäki, M. Mustonen, M. Matinmikko
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引用次数: 7

摘要

当自主认知无线电(CRs)必须搜索多个潜在信道以获得频谱机会时,它们面临着彼此之间的竞争。这种竞争的最终结果是由于在同一信道中传输的CR之间的冲突而降低了CR吞吐量。在这种情况下,通道感知顺序,即竞争通道的cr访问这些通道的顺序,将影响它们成功访问的概率。本文研究了感知顺序分散问题,其中两个或多个自治cr试图通过选择那些减少彼此之间碰撞可能性的感知顺序来避免彼此。我们提出了自适应策略,使CRs能够实现感测阶频散。我们根据自主cr达到无碰撞感知顺序的预期时间以及网络中成功传输的平均次数来评估所提出的自适应策略的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sensing order dispersion for autonomous cognitive radios
When autonomous cognitive radios (CRs) have to search multiple potential channels for spectrum opportunities, they face competition from one another to access the channel. The end result of this competition is reduced CR throughput due to collisions among CRs that transmit in the same channel. In this context, the channel sensing order, i.e., the order in which CRs competing for the channels visit those channels, will affect their probability of successful access. This paper presents an investigation into the sensing order dispersion problem, where two or more autonomous CRs attempt to avoid one another by selecting those sensing orders that reduce the likelihood of collisions among one another. We present adaptive strategies that enable the CRs to achieve sensing order dispersion. We evaluate the performance of the presented adaptive strategies in terms of expected time for the autonomous CRs to reach collision-free sensing orders and also in terms of average number of successful transmissions in the network.
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