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Interference Aggregation and Sensing in Cognitive Radio Networks

机译:认知无线电网络中的干扰聚合与感应

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Dynamic spectrum access is deemed capable of resolving the spectrum scarcity by allowing unlicensed users to opportunistically utilize the white spaces across the licensed spectrum on a non-interfering basis. Cognitive radio networks offer a promising realization of this novel paradigm, thanks to their ability to autonomously identify the white spaces through spectrum sensing. Implementation of such networks, however, requires a model translating the regulatory constraint on the aggregate interference to the system- and device-level design parameters. In this paper a statistical model of interference aggregation in spectrum-sensing cognitive radio networks is developed. In particular, distribution of the aggregate interference is characterized in terms of parameters such as sensitivity, transmitted power, and density of the cognitive radios as well as the underlying propagation environment. The model is further extended to account for the effect of cooperative spectrum sensing on the distribution of the aggregate interference.
机译:通过允许未经许可的用户在非干扰基础上允许未经许可地利用许可频谱的白板来解决动态频谱访问,可以解决频谱稀缺性。认知无线电网络提供了对这部小型范式的有希望的实现,因为它们能够通过频谱感测自主识别白色空间。然而,这种网络的实现需要模型将规范约束转换到系统和设备级设计参数的总体干扰。在本文中,开发了一种频谱传感认知无线电网络中的干扰聚集的统计模型。特别地,聚合干扰的分布的特征在于参数,例如认知无线电的灵敏度,透射功率和密度以及底层传播环境。该模型进一步扩展以考虑协作频谱感测对总体干扰分布的影响。

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