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Multiuser cognitive generalized order user selection with multiple primary receivers using orthogonal spectrums and imperfect channel estimation

机译:具有正交频谱和不完美信道估计的多个主接收机的多用户认知广义阶用户选择

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In this paper, we propose a new scenario of multiuser cognitive generalized order user selection network with multiple primary receivers using orthogonal spectrums and imperfect channel estimation. Using orthogonal spectrum bands aims to mitigate the interference between users as in the downlink transmission in cellular networks. The generalized order user selection scheme is efficient in situations where a user other than the best user is erroneously selected by the scheduling unit for data reception as in imperfect channel estimation or outdated channel information conditions. In this scheme, the secondary user with the second or even the N best signal-to-noise ratio (SNR) is scheduled for data reception. The spectrum of the primary receiver whose channel results in the best performance for the secondary system is shared with the secondary users. Closed-form expressions are derived for the outage probability, average symbol error probability (ASEP), and ergodic channel capacity assuming Rayleigh fading channels. Furthermore, to get more insights about the system performance, the system is studied at the high SNR regime where the diversity order and coding gain are derived. The achieved analytical and asymptotic results are verified by Monte-Carlo simulations. Main results show that the number of primary receivers affects the system performance through affecting only the coding gain. Unlike the existing studies where the same spectrum band is shared by the primary receivers, our findings show that increasing the number of primary receivers in the proposed scenario enhances the system performance. Also, findings illustrate that a zero diversity gain is achieved by the system and a noise floor appears in the results when the secondary users' channels are imperfectly estimated.
机译:在本文中,我们提出了一种新的场景,即使用正交频谱和不完善的信道估计的具有多个主要接收者的多用户认知广义订单用户选择网络。与在蜂窝网络中的下行链路传输中一样,使用正交频谱带旨在减轻用户之间的干扰。在不完美的信道估计或过时的信道信息条件下,在调度单元错误地选择最佳用户以外的用户进行数据接收的情况下,通用订单用户选择方案是有效的。在此方案中,具有第二或什至N个最佳信噪比(SNR)的次要用户被安排用于数据接收。与次要用户共享其信道为次要系统带来最佳性能的主要接收机的频谱。对于中断概率,平均符号错误概率(ASEP)和假定瑞利衰落信道的遍历信道容量,可以得出闭式表达式。此外,为了获得有关系统性能的更多见解,在导出分集阶数和编码增益的高SNR体制下对系统进行了研究。蒙特卡洛模拟验证了所获得的分析结果和渐近结果。主要结果表明,主要接收器的数量通过仅影响编码增益来影响系统性能。与现有研究中主要接收机共享相同频段的研究不同,我们的研究结果表明,在所提出的方案中增加主要接收机的数量可以提高系统性能。此外,发现还表明,当不完全估计次要用户的信道时,系统将实现零分集增益,并且本底噪声会出现在结果中。

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