Cooperative access in cognitive radio networks: stable throughput and delay tradeoffs

M. Ashour, A. El-Sherif, T. Elbatt, Amr M. Mohamed
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引用次数: 14

Abstract

In this paper, we study and analyze fundamental throughput-delay tradeoffs in cooperative multiple access for cognitive radio systems. We focus on the class of randomized cooperative policies, whereby the secondary user (SU) serves either the queue of its own data or the queue of the primary user (PU) relayed data with certain service probabilities. The proposed policy opens room for trading the PU delay for enhanced SU delay. Towards this objective, stability conditions for the queues involved in the system are derived. Furthermore, a moment generating function approach is employed to derive closed-form expressions for the average delay encountered by the packets of both users. Results reveal that cooperation expands the stable throughput region of the system and significantly reduces the delay at both users. Moreover, we quantify the gain obtained in terms of the SU delay under the proposed policy, over conventional relaying that gives strict priority to the relay queue.
认知无线网络中的合作接入:稳定吞吐量和延迟权衡
本文研究和分析了认知无线电系统中协作多址的基本吞吐量-延迟权衡。本文重点研究了一类随机协作策略,其中辅助用户(SU)要么为自己的数据队列提供服务,要么以一定的服务概率由主用户(PU)的队列中继数据。建议的策略为PU延迟交换增强的SU延迟打开了空间。为此,导出了系统中所涉及的队列的稳定性条件。在此基础上,利用矩生成函数的方法推导出两个用户的数据包平均时延的封闭表达式。结果表明,协作扩展了系统的稳定吞吐量区域,显著降低了双方用户的延迟。此外,我们根据所提出的策略下的SU延迟量化了获得的增益,而传统中继对中继队列给予严格的优先级。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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