双向4 × 10gb /s上行调制WDM-TDM PON的设计与实现

Neelam Choudhary, S. Pawar
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引用次数: 3

摘要

本文对波分复用/时分复用(WDM-TDM)混合型无源光网络进行了仿真,该网络具有上游重调制,数据速率为10gb /s。在上游光网络单元(ONU)采用数据重调制技术,可以避免激光的使用,从而降低整个系统的成本。仿真结果表明,该架构在每个方向上支持32 km的链路距离,每个波长最多支持16个用户,即提供64个用户总数。同样的架构也可以扩展到更多的用户数量,即通过在下游链路中添加前置放大器,每个波长256个,从而在37公里的分布链路上提供1024个用户的总数。此外,本文还研究了链路距离与用户数量之间的权衡关系,随着链路距离的增加,体系结构支持的用户数量减少,反之亦然。此外,本文还从误码率和Q因子的角度研究了该结构在不同调制格式下的性能。采用optsim仿真软件进行仿真。
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Design and implementation of bi-directional 4 × 10 Gb/s WDM-TDM PON with upstream remodulation
Paper presents a simulation of hybrid wavelength-division multiplexed/time-division multiplexed (WDM-TDM) passive optical network with upstream re-modulation and data rate of 10 Gb/s. With data re-modulation technique at the upstream optical network unit (ONU) we can avoid the use of laser and thus reduce overall system cost. The simulation result shows that the proposed architecture can support a link distance of 32 km in each direction with each wavelength supporting up to 16 users, i.e. giving an aggregate number of 64 users. Also the same architecture can be extended for more number of users, i.e. 256 for each wavelength by adding a pre-amplifier in the downstream link, thus giving an aggregate number of 1024 users over 37 km distribution link. Also, this paper investigates the trade-off between the link distance and the number of users, as the link distance increases the number of users supported by the architecture decreases and vice versa. Additionally, this paper investigates the performance of architecture under different modulation formats in terms of BER and Q factor. The simulation is carried out using optsim simulation software.
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