在延迟敏感应用的认知多中继系统中利用缓冲区

Yan Chen, V. Lau, Shunqing Zhang, Peiliang Qiu
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引用次数: 0

摘要

认知技术和协作技术是下一代无线网络设计的两个核心组成部分。与认知传输相关的一个关键问题是二级系统的频谱共享效率低下,特别是对于远距离分离的二级通信。为了提高频谱共享效率,认知多中继系统是认知传输系统中一个有吸引力的解决方案。在本文中,我们考虑了一个认知多中继(CMR)系统,并提出了一种新的CMR缓冲解码和转发协议,该协议利用了源和每个中继节点中的缓冲区。利用队列动力学的生-死性质,利用状态聚合和队列优势的方法,导出了闭型平均端到端延迟和稳定区域。分析和数值结果表明,与基线协议相比,CMR-BDF方案可以动态调整认知传输以利用空间PU突发性,同时利用源中继和中继目的接口的双面选择分集优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploiting buffers in cognitive multi-relay systems for delay-sensitive applications
Cognitive and cooperative technologies are two core components in the design of next generation wireless networks. One key issue associated with cognitive transmission is the inefficient spectrum sharing of the secondary system, especially for secondary communications separated by long distance. To boost the spectrum sharing efficiency, cognitive multi-relay system appears to be an attractive solution for the cognitive transmission systems. In this paper, we consider a cognitive multi-relay (CMR) system and propose a novel CMR buffered decode-and-forward protocol that exploit the buffers in the source and each relay node. Moreover, we derive the closed-form average end-to-end delay and the stability region by exploiting the birth-death nature of the queue dynamics and the methods of state aggregation and queue dominance. Comparing with the baseline protocols through analytical and numerical results, the proposed CMR-BDF scheme can dynamically adjust the cognitive transmission to exploit the spatial PU burstiness while simultaneously benefits from the advantage of double-sided selection diversity in both the source-relay and relay-destination interfaces.
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