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Analytic Expressions and Bounds for Special Functions and Applications in Communication Theory

机译:特殊功能的解析表达式与界限及其在传播理论中的应用

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This paper is devoted to the derivation of novel analytic expressions and bounds for a family of special functions that are useful in wireless communication theory. These functions are the well-known Nuttall function, incomplete Toronto function, Rice function, and incomplete Lipschitz–Hankel integrals. Capitalizing on the offered results, useful identities are additionally derived between the above functions and Humbert, , function as well as for specific cases of the Kampéde Fériet function. These functions can be considered as useful mathematical tools that can be employed in applications relating to the analytic performance evaluation of modern wireless communication systems, such as cognitive radio, cooperative, and free-space optical communications as well as radar, diversity, and multiantenna systems. As an example, new closed-form expressions are derived for the outage probability over nonlinear generalized fading channels, namely, , , and as well as for specific cases of the and fading channels. Furthermore, simple expressions are presented for the channel capacity for the truncated channel inversion with fixed rate and corresponding optimum cutoff signal-to-noise ratio for single-antenna and multiantenna communication systems ov- r Rician fading channels. The accuracy and validity of the derived expressions is justified through extensive comparisons with respective numerical results.
机译:本文致力于推导适用于无线通信理论的一系列特殊功能的新颖解析表达式和界限。这些函数是众所周知的Nuttall函数,不完整的Toronto函数,Rice函数以及不完整的Lipschitz-Hankel积分。利用提供的结果,在上述函数和Humbert函数之间以及在KampédeFériet函数的特定情况下,还可以得出有用的标识。这些功能可被视为有用的数学工具,可用于与现代无线通信系统的分析性能评估有关的应用程序,例如认知无线电,协作和自由空间光通信以及雷达,分集和多天线系统。例如,针对非线性广义衰落信道(即和)的中断概率,以及针对和衰落信道的特定情况,得出了新的闭式表达式。此外,对于带有固定速率的截断信道反转的信道容量以及针对Rician衰落信道的单天线和多天线通信系统的相应最佳截止信噪比,给出了简单的表达式。通过与各个数值结果进行大量比较,可以证明派生表达式的准确性和有效性。

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