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Impact of Transmission Impairments on Demultiplexed Channels in WDMPONs Employing AWG-Based Remote Nodes

机译:使用基于AWG的远程节点的WDMPON中传输障碍对多路分解信道的影响

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This paper deals with the performance evaluation of a passive optical network (PON) using wavelength division multiplexing (WDM) by employing an arrayed-waveguide grating (AWG) in the remote node (RN). In such WDM-based PONs (WDMPONs) the RN demultiplexes the downstream WDM signal via distinct output ports through a static wavelength-routing mechanism. An analytical model is developed for evaluating the bit error rate (BER) performance of the demultiplexed channels as a function of the output port location in the AWG by incorporating a novel spectral-to-spatial domain transformation technique. The proposed model captures the impact of finite laser linewidth as well as the AWG characteristics in determining the received signal power at the individual optical network unit (ONU) attached to the output port (due to spectral-to-spatial mapping). Furthermore, the BER model accounts for several transmission impairments, including beat noise due to interchannel crosstalk in the AWG. Results indicate that the signal power captured by the output ports of AWGs and hence their BER values are not only determined by the Gaussian focal-field pattern of the AWG but also by the power spillover from adjacent ports for broader linewidths and higher data rates. A significant interplay is observed between data rate, source linewidth, and relevant device parameters while examining the loss and BER characteristics of a given AWG-based WDMPON.
机译:本文通过在远程节点(RN)中使用阵列波导光栅(AWG)来处理使用波分复用(WDM)的无源光网络(PON)的性能评估。在此类基于WDM的PON(WDMPON)中,RN通过静态波长路由机制通过不同的输出端口对下行WDM信号进行多路分解。通过结合新型的频谱空间域转换技术,开发了一种分析模型,用于评估解复用后的信道的误码率(BER)性能与AWG中输出端口位置的关系。所提出的模型在确定连接到输出端口的单个光网络单元(ONU)处的接收信号功率时,会捕获有限的激光线宽以及AWG特性的影响(由于频谱到空间的映射)。此外,BER模型可解决多种传输障碍,包括由于AWG中的通道间串扰引起的拍频噪声。结果表明,AWG的输出端口捕获的信号功率及其BER值不仅取决于AWG的高斯焦场模式,而且还取决于相邻端口的功率溢出,以实现更宽的线宽和更高的数据速率。在检查给定基于AWG的WDMPON的损耗和BER特性时,观察到数据速率,源线宽和相关设备参数之间存在显着的相互作用。

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