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Spectral-energy efficiency tradeoff in Cognitive Radio networks with peak interference power constraints

机译:具有峰值干扰功率约束的认知无线电网络中的频谱能量效率权衡

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Cognitive Radio (CR) is considered as one of the prominent techniques to improve the spectrum utilization by opportunistically sharing the radio spectrum resources with licensed users. This paper concentrates on characterizing the spectral-energy efficiency tradeoff in low and high signal-to-noise ratio (SNR) regimes for interference-tolerant CR networks under peak interference power constraints and in different fading environments. The analysis has been conducted under an assumption that perfect channel state information (CSI) of both primary and secondary receivers is available at the secondary transmitter. Our analysis proves that, in the low SNR regime, the minimum energy per bit required for reliable transmission is characterized by the supremum of the CR fading channel.
机译:认知无线电(CR)被认为是通过与许可用户机会性地共享无线电频谱资源来提高频谱利用率的重要技术之一。本文着重介绍了在峰值干扰功率限制和不同衰落环境下,容忍CR网络在低信噪比(SNR)和高信噪比(SNR)方案中的频谱能量效率权衡特性。该分析是在一个假设下进行的,即在次要发射机处可以同时获得主要和次要接收机的完美信道状态信息(CSI)。我们的分析证明,在低SNR体制中,可靠传输所需的每比特最小能量的特征在于CR衰落信道的最高。

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