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Optimizing calculation of phase screen distribution with minimum condition along an inhomogeneous turbulent path 被引量:2
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作者 邵文毅 鲜浩 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第11期299-305,共7页
When building an experimental platform for light propagation along an inhomogeneous turbulent path,it is very essential to set up the reasonable distribution of phase screen.Based on multi-layered model of phase scree... When building an experimental platform for light propagation along an inhomogeneous turbulent path,it is very essential to set up the reasonable distribution of phase screen.Based on multi-layered model of phase screen,an iterative optimization algorithm of phase screen position is given in this paper.Thereafter,the optimal position of phase screens is calculated under the Hufnagel-Valley5/7 and Hefei-day turbulence profile.The results show that the positions of phase screen calculated by the iterative algorithm can fit well with the turbulence profile rather than mechanically placed phase screens at equal distance.Compared with the uniform distribution of phase screens position,the residual phase error of the iterative algorithm decreases very significantly.The similarity degree between them is minimal when number of layers is equal to two. 展开更多
关键词 turbulent inhomogeneous turbulence screen iterative Hefei mechanically layered similarity positions
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Nonlinear Phase Noise Estimate Based on Electronic Orthogonal Coherent for 112 Gb/s PDM-4QAM System 被引量:1
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作者 Baocun Wang Bin Li +3 位作者 Fengguang Luo Benxiong Huang Ming Tian Xuecheng Zou 《Optics and Photonics Journal》 2014年第11期316-324,共9页
In this paper, we proposed a novel method of joint phase noise estimate (JPNE) for PDM-M-QAM (M = 4, 16, 32, 64, …) transmission systems, and established the theoretical model to illustrate the operation mechanism. T... In this paper, we proposed a novel method of joint phase noise estimate (JPNE) for PDM-M-QAM (M = 4, 16, 32, 64, …) transmission systems, and established the theoretical model to illustrate the operation mechanism. The simulation of laser phase noise and fiber nonlinearity compensation based on the proposed JPNE method had also been demonstrated. For 112 Gb/s PDM-4QAM transmission system, the simulation results had showed that the optimum launch power increased from -4 dBm to at least 0 dBm compared with the condition of no phase noise compensation in reach of all simulation distances. 展开更多
关键词 Joint PHASE Noise Estimate Fiber NONLINEARITY PDM-4QAM Optimum LAUNCH Power PHASE Noise Compensation
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