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System-independent threshold and BER estimation in optical communications using the extended generalized gamma distribution

机译:使用扩展的广义伽玛分布的光通信中与系统无关的阈值和BER估计

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Two important tasks with respect to the optimized configuration of an optical communications system are those of the performance evaluation and the receiver decision threshold estimation. In this paper, a new training-based BER and threshold estimation technique is proposed relaxing the assumption of Gaussian distributed received signals. The proposed method is similar in philosophy to the Gaussian Approximation one, and is system-independent and simulation-based. This means that the probability density function (pdf) of the sampled electrical current is estimated based on training data provided via simulations without any assumptions on the specific configuration of the communications system under consideration. The novelty of the paper is that for the first time a combination of a generalized form of the gamma distribution together with the noncentral chi-square distribution have been used for the modeling of the pdfs of the spaces and the marks, respectively.
机译:关于光通信系统的优化配置的两个重要任务是性能评估和接收机决策阈值估计。在本文中,提出了一种新的基于训练的误码率和阈值估计技术,从而放宽了高斯分布式接收信号的假设。所提出的方法在原理上与高斯近似方法相似,并且与系统无关且基于仿真。这意味着,根据模拟提供的训练数据估算采样电流的概率密度函数(pdf),而无需考虑所考虑的通信系统的特定配置。本文的新颖之处在于,首次将广义分布形式的伽玛分布与非中心卡方分布结合起来分别用于空间和标记的pdf建模。

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