认知无线电的自适应感知和传输持续时间

Wessam Afifi, Ahmed Sultan, M. Nafie
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引用次数: 13

摘要

在认知无线电设置中,辅助用户机会地访问分配给主要用户的频谱。为了最大限度地提高辅助吞吐量,同时保护主要用户不受干扰和业务中断,找到辅助用户的最佳感知和传输持续时间变得至关重要。提出了一种认知无线电的自适应感知与传输方案。我们考虑一个分配给主用户的信道,该信道以无槽方式在随机时间切换活动。第二发送器根据其关于主要用户活动状态的信念调整其传感和传输持续时间。目标是最大化次要效用函数。对于与主传输的碰撞,该函数有一个惩罚项。它通过明确地结合感知持续时间对次要吞吐量和主要活动检测可靠性的影响来考虑可靠性与吞吐量之间的权衡。它还考虑了数据开销导致的吞吐量降低。系统性能的数值模拟表明,自适应感知和传输方案比非自适应方案在提高二次用户效用方面更有效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive sensing and transmission durations for cognitive radios
In a cognitive radio setting, secondary users opportunistically access the spectrum allocated to primary users. Finding the optimal sensing and transmission durations for the secondary users becomes crucial in order to maximize the secondary throughput while protecting the primary users from interference and service disruption. In this paper an adaptive sensing and transmission scheme for cognitive radios is proposed. We consider a channel allocated to a primary user which operates in an unslotted manner switching activity at random times. A secondary transmitter adapts its sensing and transmission durations according to its belief regarding the primary user state of activity. The objective is to maximize a secondary utility function. This function has a penalty term for collisions with primary transmission. It accounts for the reliability-throughput tradeoff by explicitly incorporating the impact of sensing duration on secondary throughput and primary activity detection reliability. It also accounts for throughput reduction that results from data overhead. Numerical simulations of the system performance demonstrate the effectiveness of adaptive sensing and transmission scheme over non-adaptive approach in increasing the secondary user utility.
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