Optimization of adaptively modulated optical OFDM modems for multimode fiber-based local area networks [Invited]

X. Jin, Jianming Tang, P. Spencer, K. Shore
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引用次数: 45

Abstract

Focus Issue on Orthogonal-Frequency-Division Multiplexed Communications Systems and Networks The impact of a wide range of different parameters of various components involved in optical modems using adaptively modulated optical orthogonal-frequency-division multiplexing (AMOOFDM) on the transmission performance of AMOOFDM signals is explored thoroughly, in single-channel, unamplified, multimode-fiber (MMF)-based, intensity modulation and direct detection (IMDD) transmission links. Practically available optimum component parameters are identified, based on which the AMOOFDM modems are optimized. It is shown that the optimized AMOOFDM modems enable a >70% increase in the capacity versus reach performance without compromising link loss margins, in comparison with that achieved without modem optimization. In addition, the validity of the identified optimum parameters and the feasibility of the optimized AMOOFDM modems are also statistically verified for implementation in the vast majority of installed MMF links. Statistical investigations show that the optimized AMOOFDM modems can support >50Gbits/s signal transmission over 300m in 99.5% of already installed MMF links with loss margins of >7dB. Furthermore, it is also confirmed statistically that the optimized AMOOFDM modems have excellent performance flexibility and great robustness to various fiber and/or system implementation-related impairments.
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多模光纤局域网中自适应调制OFDM调制解调器的优化[应邀]
在单通道、无放大、基于多模光纤(MMF)、强度调制和直接检测(IMDD)传输链路中,深入探讨了使用自适应调制光正交频分复用(AMOOFDM)的光调制解调器中涉及的各种组件的各种不同参数对AMOOFDM信号传输性能的影响。在此基础上对AMOOFDM调制解调器进行了优化设计。结果表明,优化后的AMOOFDM调制解调器与没有优化的调制解调器相比,在不影响链路损失边际的情况下,使容量与到达性能增加了约70%。此外,所识别的最优参数的有效性和优化后的AMOOFDM调制解调器的可行性也得到了统计验证,可以在绝大多数已安装的MMF链路中实现。统计调查表明,优化后的AMOOFDM调制解调器可以在99.5%已安装的MMF链路中支持超过300米的bbb50gbits /s信号传输,损耗范围为>7dB。此外,统计数据还证实,优化后的AMOOFDM调制解调器对各种光纤和/或系统实现相关的损伤具有出色的性能灵活性和强大的鲁棒性。
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