Vanin Evgeny, Jacobsen Gunnar
Network and Transmission Lab., Acreo AB, Electrum 236, SE-16440, Kista, Sweden.
Opt Express. 2010 Mar 1;18(5):4246-59. doi: 10.1364/OE.18.004246.
The Bit-Error-Ratio (BER) floor caused by the laser phase noise in the optical fiber communication system with differential quadrature phase shift keying (DQPSK) and coherent detection followed by digital signal processing (DSP) is analytically evaluated. An in-phase and quadrature (I&Q) receiver with a carrier phase recovery using DSP is considered. The carrier phase recovery is based on a phase estimation of a finite sum (block) of the signal samples raised to the power of four and the phase unwrapping at transitions between blocks. It is demonstrated that errors generated at block transitions cause the dominating contribution to the system BER floor when the impact of the additive noise is negligibly small in comparison with the effect of the laser phase noise. Even the BER floor in the case when the phase unwrapping is omitted is analytically derived and applied to emphasize the crucial importance of this signal processing operation. The analytical results are verified by full Monte Carlo simulations. The BER for another type of DQPSK receiver operation, which is based on differential phase detection, is also obtained in the analytical form using the principle of conditional probability. The principle of conditional probability is justified in the case of differential phase detection due to statistical independency of the laser phase noise induced signal phase error and the additive noise contributions. Based on the achieved analytical results the laser linewidth tolerance is calculated for different system cases.
对采用差分正交相移键控(DQPSK)和相干检测并随后进行数字信号处理(DSP)的光纤通信系统中由激光相位噪声引起的误码率(BER)下限进行了分析评估。考虑了一种采用DSP进行载波相位恢复的同相和正交(I&Q)接收机。载波相位恢复基于对信号样本的四次幂的有限和(块)的相位估计以及块间转换时的相位解缠。结果表明,当加性噪声的影响与激光相位噪声的影响相比可忽略不计时,块转换处产生的误差对系统BER下限起主要作用。甚至在省略相位解缠的情况下也分析推导了BER下限,并用于强调这种信号处理操作的至关重要性。通过全蒙特卡罗模拟验证了分析结果。还利用条件概率原理以解析形式获得了基于差分相位检测的另一种类型的DQPSK接收机操作的BER。由于激光相位噪声引起的信号相位误差和加性噪声贡献的统计独立性,在差分相位检测的情况下条件概率原理是合理的。基于所获得的分析结果,计算了不同系统情况下的激光线宽容限。