制定动态频谱接入网中感知、错过空闲和传输时间的多边权衡

M. Amini, M. Mahdavi, M. Omidi
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引用次数: 0

摘要

为了使网络效率最大化,人们对认知无线电进行了大量的研究。效率通常以吞吐量、能量效率或频谱效率的形式来定义。随着无线网络中动态频谱接入概念的出现,必须对无线网络的效率进行定义,以便最好地考虑所涉及的所有重要指标。例如,认知无线电网络(CRN)中的许多工作都忽略了主用户返回频段的干扰;在整个当前帧的等待过程中,当通道在开始时被感知到繁忙时,没有人考虑错过空闲时间。上述提到的干扰和错失的机会都取决于主要用户流量特征、辅助网络通信协议、感知时间和传输时间。显然,为了考虑这些问题,我们在网络动态接入策略中定义并制定了一个新的效率度量,称为接入效率,以便分别考虑干扰、感知时间和由于传输和等待时间而错过的机会。然后,利用遗传算法计算感知时间和传输时间的最优值,使接入效率最大化。优化点同时减少了错过的空闲时间,并最大限度地提高了成功传输时间(传统吞吐量)。显然,访问效率越高的网络协议错过的空闲时间越少,对用户造成的冲突也越少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Formulating multilateral trade-off of sensing, missed idle and transmission times in dynamic spectrum access networks
many studies have been done in cognitive radios to maximize the network efficiency. The efficiency is usually defined in the form of throughput, energy efficiency or spectrum efficiency. With the advent of dynamic spectrum access concept in wireless networks, efficiency in such networks must be defined in order to best consider all the important metrics involved. For example, many works in cognitive radio network (CRN) neglect the interference due to primary user returns to the frequency band, and moreover; nobody has considered missed idle times during waiting throughout the entire current frame when the channel is sensed busy at the beginning. Both mentioned interference and missed opportunities depend on primary user traffic characteristics, secondary network communication protocol, sensing time and transmission time. Clearly, to consider them, we define and formulate a new efficiency metric in network dynamic access strategy called Access Efficiency in order to consider both interference, sensing time and missed opportunities due to transmission and waiting times respectively. Then, the optimized values for sensing and transmission time are computed using genetic algorithm in order to maximize Access Efficiency. The optimization point concurrently reduces missed idle times and maximizes successful transmission times (conventional throughput). It is obvious that a network protocol with higher Access Efficiency misses less idle times and imposes less collision on users.
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