Statistical characterization of the output of nonlinear power-cubic detection unit for ultrashort light pulse communication in the presence of Gaussian noise

M. R. Zefreh, J. Salehi
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Abstract

In this paper, an accurate model for the probability density function (pdf) of the random decision variable Y in an ultrafast digital lightwave communication system, utilizing power-cubic all-optical nonlinear preprocessor is presented. The proposed model can replace the prevalent Gaussian approximation, as the accuracy of the latter is discredited by Monte-Carlo simulation. The Log-Pearson type-3 probability density function (LP3 pdf) is shown to appropriately represents the random decision variable Y. Three characteristic parameters of the LP3 pdf are also obtained through the three moments of the decision variable Y. Finally, the system error probability is revisited using the obtained LP3 pdf of the decision variable, the result of which is in excellent consistency with rigorous Monte-Carlo simulation.
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高斯噪声存在下超短光脉冲通信非线性功率立方检测单元输出的统计特性
本文利用功率三次全光非线性预处理器,建立了超快数字光波通信系统中随机决策变量Y的概率密度函数的精确模型。该模型可以取代目前流行的高斯近似,因为后者的精度在蒙特卡罗模拟中是不可信的。通过决策变量y的三个矩,得到了LP3 - pdf的三个特征参数。最后,利用得到的决策变量的LP3 - pdf重新考察了系统的错误概率,其结果与严格的蒙特卡罗模拟结果有很好的一致性。
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A novel approach to mathematical multiple criteria decision making methods based on information theoretic measures An iterative bit flipping based decoding algorithm for LDPC codes Statistical characterization of the output of nonlinear power-cubic detection unit for ultrashort light pulse communication in the presence of Gaussian noise Perfect interference alignment utilizing channel structure One-level LDPC lattice codes for the relay channels
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