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Joint rate and power allocation for cognitive radios in dynamic spectrum access environment

机译:动态频谱接入环境中认知无线电的联合速率和功率分配

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摘要

We investigate the dynamic spectrum sharing problem among primary and secondary users in a cognitive radio network. We consider the scenario where primary users exhibit on-off behavior and secondary users are able to dynamically measure/estimate sum interference from primary users at their receiving ends. For such a scenario, we solve the problem of fair spectrum sharing among secondary users subject to their QoS constraints (in terms of minimum SINR and transmission rate) and interference constraints for primary users. Since tracking channel gains instantaneously for dynamic spectrum allocation may be very difficult in practice, we consider the case where only mean channel gains averaged over short-term fading are available. Under such scenarios, we derive outage probabilities for secondary users and interference constraint violation probabilities for primary users. Based on the analysis, we develop a complete framework to perform joint admission control and rate/power allocation for secondary users such that both QoS and interference constraints are only violated within desired limits. Throughput performance of primary and secondary networks is investigated via extensive numerical analysis considering different levels of implementation complexity due to channel estimation.
机译:我们调查认知无线电网络中的主要和次要用户之间的动态频谱共享问题。我们考虑了以下情况:主要用户表现出通断行为,而次要用户能够动态地测量/估计来自主要用户的接收端的总干扰。对于这种情况,我们解决了次要用户之间的公平频谱共享问题,这些问题要受到他们的QoS约束(就最小SINR和传输速率而言)和主要用户的干扰约束。由于在实践中即时跟踪信道增益以进行动态频谱分配可能非常困难,因此我们考虑只有短期衰落平均信道平均增益可用的情况。在这种情况下,我们得出二级用户的中断概率和一级用户的干扰约束违反概率。基于分析,我们开发了一个完整的框架来执行联合准入控制和辅助用户的速率/功率分配,从而仅在所需限制之内违反QoS和干扰约束。通过广泛的数值分析来研究主要和次要网络的吞吐量性能,其中考虑到由于信道估计而导致的实现复杂性水平不同。

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