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首页> 外文期刊>Wireless Communications Letters, IEEE >Performance Analysis of Non-Orthogonal AF Relaying in Cognitive Radio Networks
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Performance Analysis of Non-Orthogonal AF Relaying in Cognitive Radio Networks

机译:认知无线电网络中非正交AF中继的性能分析

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摘要

In this letter, we address the problem of maximizing the throughput of underlay cognitive networks, through optimal power allocation of non-orthogonal amplify-and-forward relays. The optimization problem is formulated and transformed to a quadratically constrained quadratic problem (QCQP). The optimal power allocation is obtained through an eigen-solution of a channel-dependent matrix where the corresponding signal-to-noise ratio (SNR) is shown to be the dominant eigenvalue of this matrix. Our optimal power allocation is shown to transform the transmission over the non-orthogonal relays into parallel channels, resulting in the received SNR to be the sum of the SNRs over the relaying channels. While closed-form expressions for statistics of the received SNR are mathematically intractable, we propose an approximation for the probability density function of the received SNR based on Gamma random distribution. The outage probability of the cognitive network is analyzed where the Gamma approximation is shown to be accurate and insightful.
机译:在这封信中,我们通过非正交放大转发中继的最佳功率分配解决了底层认知网络的吞吐量最大化的问题。制定优化问题并将其转化为二次约束二次问题(QCQP)。最佳功率分配是通过信道相关矩阵的本征解获得的,其中对应的信噪比(SNR)被显示为该矩阵的主要特征值。我们的最佳功率分配可以将非正交中继上的传输转换为并行信道,从而导致接收到的SNR为中继信道上SNR的总和。虽然用于统计接收到的SNR的闭式表达式在数学上是难解的,但我们建议基于Gamma随机分布来估计接收到的SNR的概率密度函数。分析认知网络的中断概率,其中Gamma近似被证明是准确而有见地的。

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