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Performance evaluation of FSK and CPFSK optical communication systems: a stable and accurate method

机译:FSK和CPFSK光通信系统的性能评估:一种稳定而准确的方法

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摘要

The modified moments method for evaluating the performance of coherent optical FSK and CPFSK systems is presented. Since the classical procedure becomes ill-conditioned as the order of the moments increases, we consider the construction of Gaussian quadrature rules (GQR) from the modified moments. The analysis accounts for the influences of IF bandwidth, transmitter and local oscillator laser phase noise, postdetection filters, and additive Gaussian noise. It is found that the proposed approach is a highly reliable and efficient method for calculating the error probability. A comparison with results obtained from the Gaussian quadrature rule, Gaussian approximation method, and analytical approximation formulas shows that this technique is very accurate. Analytical expressions are derived for FSK and CPFSK receivers which include polarization and phase diversity techniques. The use of numerical programming to avoid many unnecessary computations is discussed. This evaluation method can be used to account for the effects of crosstalk in multichannel systems and the influence of error-control codes.
机译:提出了用于评估相干光FSK和CPFSK系统性能的改进矩量法。由于经典过程随着矩序的增加而变得病态,因此我们考虑根据修改后的矩构造高斯正交规则(GQR)。该分析考虑了IF带宽,发射器和本地振荡器激光相位噪声,后检测滤波器以及加性高斯噪声的影响。发现所提出的方法是用于计算错误概率的高度可靠且有效的方法。与从高斯正交法则,高斯逼近方法和解析逼近公式获得的结果进行比较表明,该技术非常准确。对于FSK和CPFSK接收机,可以得出包括极化和相位分集技术在内的解析表达式。讨论了使用数值编程来避免许多不必要的计算。这种评估方法可用于考虑多通道系统中串扰的影响以及差错控制码的影响。

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