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Queue stability and low energy for energy harvesting cognitive radio networks

机译:队列稳定性和低能量,用于能量收集认知无线电网络

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摘要

Cognitive radio network explores the framework for energy harvesting and derives effective algorithms such as Nash Equilibrium re-Optimization, Greedy one-slot Game, and Bi Layer re Game. The stability of data queue for energy harvesting cognitive radio network was analyzed by optimization of primary users and noncooperative game of secondary users with Nash equilibrium of stochastic Stackelberg game in a bilevel manner. The proposed work considers the effective data queue stability for secondary user in a cognitive radio network with the necessary conditions such as data arrival, energy arrival, transmission success probability, and expected transmission steady-state delay to make the data queue stable. The queue needs to be stabilized for online algorithm Greedy one-slot Game and offline algorithm Bi Layer re Game. The simulations show the relevance of queue stability by finding the average queue delay and average queue size by comparing both the algorithms.
机译:认知无线电网络探索了能量收集的框架,并推导了有效的算法,例如纳什均衡重新优化,贪婪的一时隙博弈和双层博弈。通过优化一级用户和二级用户的非合作博弈以及随机Stackelberg博弈的Nash均衡,分析了能量收集认知无线电网络的数据队列的稳定性。拟议的工作考虑了认知无线电网络中辅助用户的有效数据队列稳定性,并具有必要条件,例如数据到达,能量到达,传输成功概率和预期的传输稳态延迟,以使数据队列稳定。对于在线算法“贪婪”一槽游戏和离线算法“ Bi Layer re Game”,需要稳定队列。仿真通过比较两种算法找到平均队列延迟和平均队列大小,从而显示了队列稳定性的相关性。

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