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Decentralized Cognitive Radio Control Based on Inference from Primary Link Control Information

机译:基于主链路控制信息推断的分散式认知无线电控制

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This work on cognitive radio access ventures beyond the more traditional "listen-before-talk" paradigm that underlies many cognitive radio access proposals. We exploit the bi-directional interaction of most primary communication links. By intelligently controlling their access parameters based on the inference from observed link control signals of primary user (PU) communications, cognitive secondary users (SUs) can achieve higher spectrum efficiency while limiting their interference to the PU network. In one specific implementation, we let the SUs listen to the PU's feedback channel to assess their own interference on the primary receiver, and adjust radio power accordingly to satisfy the PU's interference constraint. We propose a discounted distributed power control algorithm to achieve non-intrusive secondary spectrum access without either a centralized controller or active PU cooperation. We present an analytical study of its convergence property. We show that the link control feedback information inherent in many two-way primary systems can be used as important reference signal among multiple SU pairs to distributively achieve a joint performance assurance for primary receiver's quality of service.
机译:关于认知无线电接入的这项工作超出了许多传统的认知无线电接入提议基础的更传统的“先听后说”范式。我们利用大多数主要通信链路的双向交互。通过基于对主要用户(PU)通信的观察到的链路控制信号的推断来智能地控制其访问参数,认知次要用户(SU)可以实现更高的频谱效率,同时限制其对PU网络的干扰。在一个特定的实现中,我们让SU侦听PU的反馈信道,以评估它们对主接收器的干扰,并相应地调整无线电功率以满足PU的干扰约束。我们提出了一种折扣式分布式功率控制算法,以实现无干扰的二次频谱访问,而无需中央控制器或主动PU协作。我们目前对其收敛性进行分析研究。我们表明,许多双向主系统中固有的链路控制反馈信息可以用作多个SU对之间的重要参考信号,从而为主接收器的服务质量分布式地实现联合性能保证。

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