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首页> 外文期刊>IEEE transactions on mobile computing >Efficient Discovery of Spectrum Opportunities with MAC-Layer Sensing in Cognitive Radio Networks
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Efficient Discovery of Spectrum Opportunities with MAC-Layer Sensing in Cognitive Radio Networks

机译:认知无线电网络中具有MAC层感应的频谱机会的有效发现

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摘要

Sensing/monitoring of spectrum-availability has been identified as a key requirement for dynamic spectrum allocation in cognitive radio networks (CRNs). An important issue associated with MAC-layer sensing in CRNs is how often to sense the availability of licensed channels and in which order to sense those channels. To resolve this issue, we address (1) how to maximize the discovery of spectrum opportunities by sensing-period adaptation and (2) how to minimize the delay in finding an available channel. Specifically, we develop a sensing-period optimization mechanism and an optimal channel-sequencing algorithm, as well as an environment- adaptive channel-usage pattern estimation method. Our simulation results demonstrate the efficacy of the proposed schemes and its significant performance improvement over nonoptimal schemes. The sensing-period optimization discovers more than 98 percent of the analytical maximum of discoverable spectrum-opportunities, regardless of the number of channels sensed. For the scenarios tested, the proposed scheme is shown to discover up to 22 percent more opportunities than nonoptimal schemes, which may become even greater with a proper choice of initial sensing periods. The idle-channel discovery delay with the optimal channel-sequencing technique ranges from 0.08 to 0.35 seconds under the tested scenarios, which is much faster than nonoptimal schemes. Moreover, our estimation method is shown to track time-varying channel-parameters accurately.
机译:频谱可用性的感测/监视已被确定为认知无线电网络(CRN)中动态频谱分配的关键要求。与CRN中的MAC层感测相关的一个重要问题是感测许可通道的可用性的频率以及感测那些通道的顺序。为了解决这个问题,我们解决(1)如何通过感测周期自适应最大程度地发现频谱机会,以及(2)如何最小化寻找可用信道的延迟。具体而言,我们开发了一种感测周期优化机制和最佳通道排序算法,以及一种环境自适应的通道使用模式估计方法。我们的仿真结果证明了所提方案的有效性及其相对于非最优方案的显着性能改进。感应周期的优化发现可发现频谱机会的分析最大值的98%以上,而与感测到的通道数量无关。对于测试的场景,与非最优方案相比,拟议方案发现的机会最多多出22%,而如果适当选择初始感应周期,非最优方案可能会发现更多机会。在测试情况下,采用最佳信道排序技术的空闲信道发现延迟范围为0.08至0.35秒,这比非最佳方案要快得多。此外,我们的估计方法显示出可以精确跟踪时变信道参数。

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