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首页> 外文期刊>Wireless personal communications: An Internaional Journal >QoS-Driven Power Allocation Under Peak and Average Interference Constraints in Cognitive Radio Networks
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QoS-Driven Power Allocation Under Peak and Average Interference Constraints in Cognitive Radio Networks

机译:认知无线电网络在峰值和平均干扰约束下的QoS驱动功率分配

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摘要

Efficient radio spectrum utilization can be improved using cognitive radio technology. In this work, we consider a spectrum underlay cognitive radio system operating in a fading environment. We propose an efficient power control scheme that maximizes the effective capacity of the secondary user, provisioning quality of service while on the same time the communication of the primary user is guaranteed through interference constraints. The specific power allocation scheme uses a policy in which the outage events of the primary user are exploited leading to a significant increase of the secondary user's effective capacity. Moreover, the interference of the primary link to the secondary is taken into account so as to study a more realistic scenario. In order to safeguard primary user's communication, two types of restrictions are considered: the traditional interference power constraint and the proposed inverse signal to interference plus noise ratio constraint. Different scenarios depending on the nature of the constraints (peak/average) are studied and their impact on the performance of the primary and secondary users is investigated. The superiority of the proposed schemes is demonstrated through their comparison with two reference power control schemes. Finally, numerical calculations, validated with simulation results, confirm the theoretical analysis and evaluate the performance of the proposed scheme for all the different scenarios.
机译:使用认知无线电技术可以提高有效的无线电频谱利用率。在这项工作中,我们考虑了在衰落环境中运行的频谱底层认知无线电系统。我们提出了一种有效的功率控制方案,该方案可以最大化次要用户的有效容量,提供服务质量,同时通过干扰约束来保证主要用户的通信。特定的功率分配方案使用一种策略,在该策略中,主要用户的中断事件被利用,从而导致次要用户的有效容量显着增加。此外,考虑了主要链路对次要链路的干扰,以便研究更现实的情况。为了保护主要用户的通信,考虑了两种类型的限制:传统的干扰功率限制和建议的逆信噪加噪声比限制。研究了取决于约束性质(峰值/平均值)的不同方案,并研究了它们对主要和次要用户性能的影响。通过将它们与两个参考功率控制方案进行比较,证明了所提出方案的优越性。最后,通过仿真结果验证了数值计算的正确性,并验证了理论分析并评估了所提出方案在所有不同情况下的性能。

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