Maximum throughput of a secondary user cooperating with an energy-aware primary user

A. Shafie, Ahmed Sultan, T. Khattab
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引用次数: 5

Abstract

This paper proposes a cooperation protocol between a secondary user (SU) and a primary user (PU) which dedicates a free frequency subband for the SU if cooperation results in energy saving. Time is slotted and users are equipped with buffers. Under the proposed protocol, the PU releases portion of its bandwidth for secondary transmission. Moreover, it assigns a portion of the time slot duration for the SU to relay primary packets and achieve a higher successful packet reception probability at the primary receiver. We assume that the PU has three states: idle, forward, and retransmission states. At each of these states, the SU accesses the channel with adaptive transmission parameters. The PU cooperates with the SU if and only if the achievable average number of transmitted primary packets per joule is higher than the number of transmitted packets per joule when it operates alone. The numerical results show the beneficial gains of the proposed cooperative cognitive protocol.
辅助用户与能量感知的主用户协作的最大吞吐量
本文提出了一种辅助用户(SU)和主用户(PU)之间的协作协议,该协议为辅助用户(SU)和主用户(PU)之间的协作提供了一个空闲频段。时间是分槽的,用户配备了缓冲区。在提议的协议下,PU释放其部分带宽用于二次传输。此外,它还为SU分配了一部分时隙持续时间,以中继主数据包,并在主接收器处获得更高的数据包成功接收概率。我们假设PU有三种状态:空闲、转发和重传状态。在这些状态中,SU使用自适应传输参数访问信道。当且仅当PU单独工作时,每焦耳可实现的平均传输主数据包数高于每焦耳传输数据包数时,PU与SU合作。数值结果表明,所提出的合作认知协议取得了良好的效果。
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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