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New exponential-type approximations for the erfc(.) and erfcp(.) functions with applications

机译:erfc(。)和erfc p (。)函数的新指数类型近似值与应用程序

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In this article, we first develop very tight second and third-order exponential-type approximations for the Gaussian probability integral Q(.) and/or the complementary error function erfc(.) which are subsequently used to devise the conditional symbol error probability (CEP) formulas for several classes of digital modulation schemes that are both invertible and in a “desirable” exponential form. These invertible CEP formulas are of interest in the optimization of discrete-rate adaptive modulation designs and for computation of the symbol/bit error outage performance metric. We also present new non-invertible higher-order exponential-type approximations for the erfc(.) and erfcp(.) functions based on Gauss-Chebyshev quadrature method. Our analytical framework also facilitates the derivation of simple and tight closed-form approximation formulas for the average symbol error rate performance metric of both cooperative and non-cooperative diversity systems in conjunction with a wide range of digital modulation schemes over generalized fading channels via the moment generating function (MGF) approach. The accuracies of our closed-form approximations have been validated with that of the “exact” formulas in an integral form and via computer simulations.
机译:在本文中,我们首先针对高斯概率积分Q(。)和/或互补误差函数erfc(。)开发了非常严格的二阶和三阶指数型逼近,然后将其用于设计条件符号误差概率(几类数字调制方案的公式(CEP),这些公式都是可逆的并且是“期望的”指数形式。这些可逆CEP公式在离散速率自适应调制设计的优化以及符号/误码中断性能指标的计算中非常有用。我们还基于Gauss-Chebyshev正交方法为erfc(。)和erfc p (。)函数提供了新的不可逆高阶指数型逼近。我们的分析框架还促进了简单和紧密的闭合形式近似公式的推导,该公式适用于合作和非合作分集系统的平均符号误码率性能指标,并结合了广泛的衰落信道上的各种数字调制方案生成函数(MGF)方法。我们的闭式近似法的精度已通过“精确”公式的积分形式和计算机模拟得到了验证。

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