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Achievable Throughput Analysis of Opportunistic Spectrum Access in Cognitive Radio Networks With Energy Harvesting

机译:具有能量收集的认知无线电网络中机会频谱访问的可实现吞吐量分析

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摘要

In this paper, we consider a cognitive radio (CR) network that consists of multiple secondary users (SUs), each of which is equipped with an energy harvesting capability. We consider the opportunistic use of the idle spectrum, unused by primary users (PUs), through a mechanism of two-step opportunistic spectrum access for the SUs, consisting of random channel sensing followed by random channel access. Unlike the majority of previous studies, which have considered CR networks with energy harvesting under a single user setting, the goal of this paper is to investigate the joint impact of sensing probability, access probability, and energy queue capacity on the maximum achievable throughput in a multiuser CR network incorporating energy harvesting. For two extreme cases, those where the energy queue capacity is either infinite or extremely small, we show that the maximum achievable throughput is not affected by the channel access probability if the channel sensing probability is chosen appropriately and the optimal sensing probability is derived as a function of network parameters such as the energy arrival rate, channel availability probability, and number of contending SUs.
机译:在本文中,我们考虑一个由多个次要用户(SU)组成的认知无线电(CR)网络,每个次要用户都具有能量收集功能。我们通过对SU进行两步机会频谱访问的机制来考虑主要用户(PU)未使用的空闲频谱的机会性使用,该机制包括随机信道感知和随机信道访问。与大多数先前的研究不同,CR研究考虑了在单个用户设置下进行能量收集的CR网络,本文的目的是研究感知概率,访问概率和能量队列容量对网络中最大可实现吞吐量的联合影响。包含能量收集功能的多用户CR网络。对于两种极端情况,即能量队列容量为无限大或极小的情况,我们表明,如果适当地选择了信道检测概率,并且将最佳检测概率推导为a,则可实现的最大吞吐量不受信道访问概率的影响。网络参数的功能,例如能量到达率,信道可用性概率和竞争SU的数量。

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