Power allocation algorithm supporting delay constraints for satellite cognitive radio networks
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摘要: 針對衛星通信網頻譜資源利用率低下的問題,以信道有效容量最大化為優化目標,提出了一種支持時延約束的衛星Underlay認知無線網絡功率控制與優化算法.首先根據網絡拓撲結構建立了功率干擾模型,通過引入時域信道相關系數,推導了完全與非完全信道環境下基于時延約束的認知用戶有效容量優化目標函數,并利用Lagrange方法求解得到不同場景下認知用戶的最佳功率調整策略,簡化了功率控制優化過程,最后通過實驗仿真分析了影響認知用戶信道有效容量的因素.結果表明,該算法能夠根據業務時延約束條件和信道衰落特性變化動態調整認知用戶的最佳發送功率,與等功率分配算法相比認知用戶的信道有效容量得到了明顯提高.Abstract: A power allocation algorithm supporting delay constrains which maximizes the channel effective capacity of secondary users for satellite "Underlay"cognitive radio networks is proposed to improve the spectrum utilization of a satellite communication system. A power interference model is established based on the topology of satellite cognitive radio networks first,and then the object functions of effective capacity are derived both in perfect and imperfect channel state information environments. The Lagrange method is used to obtain the optimized transmitting power of secondary users by introducing the time-domain channel correlation coefficient.Optimized power adjusting strategies under different scenes are discussed while the power allocating and optimizing process is simplified. Factors which affect the effective capacity of secondary users are analyzed by simulation. The results indicate that the proposed power allocation algorithm can adjust the transmitting power of secondary users according to delay constrains with channel fading characteristics,and the channel effective capacity of secondary users is improved obviously compared to the traditional equal power allocation policy.
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Key words:
- satellite communication /
- cognitive radio /
- power allocation /
- delay /
- algorithms
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