作者单位
摘要
上海大学通信与信息工程学院特种光纤与光接入网重点实验室,特种光纤与先进通信国际合作联合实验室,上海 200444
为了利用模分复用(MDM)和超奈奎斯特(FTN)传输技术提高无源光网络(PON)的传输容量和频谱效率,同时也为了保证系统具有良好的误码率性能,本文提出了基于矩阵分解预编码和MIMO预均衡器的联合损伤补偿方法,用于消除超奈奎斯特模分复用无源光网络(FTN-MDM-PON)中存在的MDM信道损伤和FTN传输损伤。对于矩阵分解预编码技术,本文采用奇异值分解(SVD)预编码、带功率预分配的奇异值分解(SVD PA)预编码和Cholesky分解(Chol)预编码方式,分别将它们与MIMO预均衡器结合后对比三种联合方案降低FTN-MDM-PON系统误码率的效果。仿真实验结果表明:采用SVD PA预编码、Chol预编码与MIMO预均衡器结合的联合损伤补偿方法时,FTN-MDM-PON系统中的4个线偏振(LP)模式的FTN信号经过5 km少模光纤(FMF)传输后,接收端误码率能够低于7%硬判决-前向纠错(HD-FEC)门限3.8×10-3。其中,Chol预编码与MIMO预均衡器结合的联合补偿方案降低误码率的效果最优,相比于表现较优的SVD PA预编码结合MIMO预均衡器方案,接收光灵敏度提升了1 dB~3 dB。
光通信 无源光网络 模分复用 多输入多输出 超奈奎斯特 预编码 预均衡 
中国激光
2024, 51(5): 0506002
Author Affiliations
Abstract
State Key Laboratory of Information Photonics and Optical Communications, Beijing University of Posts and Telecommunications, Beijing 100876, China
A distortion correction method for the elemental images of integral imaging (II) by utilizing the directional diffuser is demonstrated. In the traditional II, the distortion originating from lens aberration wraps elemental images and degrades the image quality severely. According to the theoretical analysis and experiments, it can be proved that the farther the three-dimensional image is displayed from the lens array, the more serious the distortion is. To analyze the process of eliminating lens distortion, one lens and its corresponding elemental image are separated from the traditional II. By introducing the directional diffuser, the aperture stop of the separated optical system changes from the eye’s pupil to the lens. In terms of contrast experiments, the distortion of the improved display system is corrected effectively. In the experiment, when the distance between the reconstructed image and lens array is equal to 120 mm, the largest lens distortion is decreased from 46.6% to 3.3%.
080.1005 Aberration expansions 
Chinese Optics Letters
2018, 16(4): 041001

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