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On the bit-error rate of binary phase shift keying over additive white generalized laplacian noise (AWGLN) channels

机译:关于添加白色广义拉普拉斯噪声(AWGLN)通道的二进制相移咬合速率

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This paper considers a more general additive noise distribution, termed either as generalized Laplacian (GL) or McLeish distribution whose non-Gaussianity nature is parameterized to fit different impulsive noise environments, and analyzes the bit-error rate of binary phase shift keying modulation over additive white GL noise (AWGLN) channels in flat fading environments. Specifically, a closed-form expression is offered for the extended generalized-K fading environments, and accordingly, its simplifications for some special fading distributions and special additive noise models are presented. Finally, the mathematical formalism is illustrated by numerical examples, and verified by computer based simulations.
机译:本文认为更一般的添加剂噪声分布,作为广义拉普拉斯(GL)或MCLeish分布,其非高斯性质是参数化的,以适应不同的脉冲噪声环境,并分析二进制相移键控调制的误码率对添加剂平坦环境中的白色GL噪声(AWGLN)通道。具体地,为扩展的广义-K衰落环境提供闭合形式表达,因此,提出了一些特殊衰落分布和特殊添加剂噪声模型的简化。最后,数学形式主义由数值示例说明,并通过基于计算机的模拟验证。

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