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Analytical BER performance in differential n-PSK coherent transmission system influenced by equalization enhanced phase noise

机译:受均衡增强相位噪声影响的差分n-PSK相干传输系统中的BER分析性能

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摘要

Long-haul high speed optical transmission systems are significantly distorted by the interplay between the electronic chromatic dispersion (CD) equalization and the local oscillator (LO) laser phase noise, which leads to an effect of equalization enhanced phase noise (EEPN). The EEPN degrades the performance of optical communication systems severely with the increment of fiber dispersion, LO laser linewidth, symbol rate, and modulation format. In this paper, we present an analytical model for evaluating the performance of bit-error-rate (BER) versus signal-to-noise ratio (SNR) in the n-level phase shift keying (n-PSK) coherent transmission system employing differential carrier phase estimation (CPE), where the influence of EEPN is considered. Theoretical results based on this model have been investigated for the differential quadrature phase shift keying (DQPSK), the differential 8-PSK (D8PSK), and the differential 16-PSK (D16PSK) coherent transmission systems. The influence of EEPN on the BER performance in term of the fiber dispersion, the LO phase noise, the symbol rate, and the modulation format are analyzed in detail. The BER behaviors based on this analytical model achieve a good agreement with previously reported BER floors influenced by EEPN. Further simulations have also been carried out in the differential CPE considering EEPN. The results indicate that this analytical model can give an accurate prediction for the DQPSK system, and a leading-order approximation for the D8PSK and the D16PSK systems.
机译:电子色散(CD)均衡和本地振荡器(LO)激光相位噪声之间的相互作用会严重扭曲远程高速光传输系统,从而导致均衡增强相位噪声(EEPN)的影响。随着光纤色散,LO激光线宽,符号率和调制格式的增加,EEPN严重降低了光通信系统的性能。在本文中,我们提出了一种分析模型,用于评估采用差分的n级相移键控(n-PSK)相干传输系统中的误码率(BER)与信噪比(SNR)的性能载波相位估计(CPE),其中考虑了EEPN的影响。已针对差分正交相移键控(DQPSK),差分8-PSK(D8PSK)和差分16-PSK(D16PSK)相干传输系统研究了基于该模型的理论结果。详细分析了EEPN对BER性能的影响,包括光纤色散,LO相位噪声,符号率和调制格式。基于此分析模型的BER行为与先前报道的受EEPN影响的BER底限达到了良好的一致性。考虑到EEPN,在差分CPE中也进行了进一步的仿真。结果表明,该分析模型可以为DQPSK系统提供准确的预测,并为D8PSK和D16PSK系统提供前导逼近。

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