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Enhanced optical power budget in DDO-OFDM-PON and CO-OFDM-PON system using frequency diversity

机译:使用频率分集的DDO-OFDM-PON和CO-OFDM-PON系统中增强的光功率预算

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摘要

Next generation gigabit-capable passive optical network-2 (NG-PON2) system based on orthogonal frequency division multiplexing (OFDM) supports 40 Gb/s high speed optical access network because of its greater resistance to fiber dispersion, higher bandwidth efficiency and flexibility on both dynamic bandwidth allocation (DBA) and multiple services. In PON system, high optical power budget is required to increase the number of customer and/or to increase the access distance without adding any active device in the PON system. In this paper, a frequency diversity technique is used to increase the optical power budget of direct-detection optical-OFDM-PON (DDO-OFDM-PON) and coherent optical-OFDM-PON (CO-OFDM-PON) system. Analytical result show that at BER of 10 , there is 3 dB improvement in signal-to-noise ratio (SNR) and 1.5 dB improvement in optical power budget using proposed OFDM-PON architecture as compared to conventional architecture of OFDM-PON system. There is also 5.2 dB difference in receiver sensitivity between DDO-OFDM-PON and CO-OFDM-PON system.
机译:下一代基于正交频分复用(OFDM)的具有千兆位功能的无源光网络2(NG-PON2)系统支持40 Gb / s高速光接入网络,因为它对光纤色散的抵抗力更高,带宽效率更高且具有灵活性。动态带宽分配(DBA)和多种服务。在PON系统中,需要高光功率预算以增加客户数量和/或增加接入距离,而无需在PON系统中添加任何有源设备。本文采用频率分集技术来增加直接检测光学OFDM-PON(DDO-OFDM-PON)和相干光学OFDM-PON(CO-OFDM-PON)系统的光功率预算。分析结果表明,与传统的OFDM-PON系统架构相比,使用建议的OFDM-PON架构,信噪比(SNR)提高3 dB,光功率预算提高1.5 dB。 DDO-OFDM-PON和CO-OFDM-PON系统之间的接收机灵敏度也有5.2 dB的差异。

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