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Cognitive MAC protocol with minimum sampling time and cross-layer cooperation for low signal-to-noise ratio environments

机译:具有认知功能的MAC协议,具有最低的采样时间和跨层协作,适用于低信噪比环境

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摘要

The previous Decentralised Cognitive Medium Access Control (DC-MAC) protocol allows Secondary Users (SUs) to independently search for spectrum access opportunities without the need for a central coordinator. DC-MAC assumes that the detection scheme is ideal at the Physical (PHY) layer. In fact, a more complex detection algorithm is impractical in distributed spectrum sharing scenarios. Energy Detection (ED) at the PHY layer has become the most common method because of its low computational and implementation complexities. Thus, it is essential to integrate the DC-MAC with ED at the PHY layer. However, ED requires the Minimum Sampling Time (MST) duration to achieve the target detection probability in low Signal-to-Noise Ratio (SNR) environments. Otherwise, it cannot achieve the expected detection performance. In this paper, we derive an accurate expression of MST for ED in low SNR environments. Then, we propose an Optimised DC-MAC (ODC-MAC) protocol which is based on MST, and which amends the aforementioned problems of DC-MAC with ED. Moreover, the closed-form expressions for the unreliable data transmission probability are derived for both DC-MAC and ODC-MAC. We show that the simulation results agree well with the theoretical analyses. The proposed ODC-MAC can improve the data transmission reliability and enhance the throughput compared to the performance of the traditional DC-MAC.
机译:先前的分散式认知媒体访问控制(DC-MAC)协议允许次要用户(SU)独立搜索频谱访问机会,而无需中央协调员。 DC-MAC假定检测方案在物理(PHY)层是理想的。实际上,在分布式频谱共享方案中,更复杂的检测算法是不切实际的。 PHY层的能量检测(ED)由于其较低的计算和实现复杂性而已成为最常用的方法。因此,必须在PHY层将DC-MAC与ED集成在一起。但是,ED需要最低采样时间(MST)持续时间才能在低信噪比(SNR)环境中实现目标检测概率。否则,将无法达到预期的检测性能。在本文中,我们推导了在低SNR环境中ED的MST的准确表达。然后,我们提出了一种基于MST的优化DC-MAC(ODC-MAC)协议,该协议对上述带有ED的DC-MAC问题进行了修正。此外,对于DC-MAC和ODC-MAC都导出了不可靠的数据传输概率的闭式表达式。我们表明,仿真结果与理论分析吻合良好。与传统的DC-MAC相比,ODC-MAC可以提高数据传输的可靠性并提高吞吐量。

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