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Asymptotic Error Rate Analysis of Selection Combining on Generalized Correlated Nakagami-m Channels

机译:广义相关Nakagami-m信道选择的渐近误差率分析

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摘要

From the canonical representation of the Marcum Q-function, a simple and highly accurate small argument approximation for the Marcum Q-function is first obtained. Utilizing this approximation, we derive the asymptotic error rate and outage probability expressions for multi-branch selection combining over generalized correlated Nakagami-m fading channels. These closed-form solutions can be used to provide rapid and accurate estimation of the error rates and outage probabilities in large signal-to-noise ratio regimes. It is shown that asymptotic error rates and outage probability over correlated Nakagami-m branches can be obtained by scaling the asymptotic error rates and outage probability over independent branches with a factor det^{m}(M), where det(M) is the determinant of matrix M whose elements are the square root of the corresponding elements in the branch power covariance coefficient matrix.
机译:从Marcum Q函数的规范表示中,首先获得Marcum Q函数的简单且高精度的小自变量逼近。利用这种近似,我们得出了在广义相关Nakagami-m衰落信道上组合的多分支选择的渐近错误率和中断概率表达式。这些封闭形式的解决方案可用于在大的信噪比范围内快速,准确地估计错误率和中断概率。结果表明,可以通过用因子det {{m}(M)缩放独立分支上的渐近错误率和中断概率来获得相关Nakagami-m分支上的渐近错误率和中断概率,其中det(M)是矩阵M的行列式,其元素是分支幂协方差系数矩阵中相应元素的平方根。

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