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A nesting ranging algorithm for a Hybrid WDM/TDM PON with colorless Reflective-ONUs under different distances OLT-ONUs

机译:具有不同距离OLT-ONU的无色反射ONU的混合WDM / TDM PON的嵌套测距算法

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摘要

To reduce costs and cumbersome laser provisioning at the Optical Network Unit (ONU) user level in an access Passive Optical Network (PON), the use of a Reflec-tive-ONU (R-ONU) is a good choice for up-data transmission. An optical carrier is sent by the Optical Line Terminal (OLT) at the Central Office, and a device at the ONU modulates the carrier with the upstream data. This allows all ONUs to be equal and colorless, without a light source in a Hybrid WDM/TDM architecture. A Dynamic Bandwidth Allocation is placed at the OLT, managing the lasers and photodetectors shared by all R-ONUs. The OLT laser and photodetector employed in an up-data transmission must be tuned for each ONU and a particular Round Trip Time (RTT), which is twice the propagation time from OLT to ONU. When an R-ONU is served by a laser, the photodetector must also be available after the RTT to demodulate the up-data. We propose a novel nesting ranging algorithm to deal with large different distances OLT-ONUs avoiding collisions and minimizing the delay under Priority Queuing with Quality of Service (QoS).
机译:为了降低成本,并在接入无源光网络(PON)中在光网络单元(ONU)用户级别上进行繁琐的激光配置,使用反射式ONU(R-ONU)是上行数据传输的理想选择。光学载波由中心局的光线路终端(OLT)发送,ONU上的设备使用上游数据对载波进行调制。这使得所有ONU均等且无色,而在混合WDM / TDM架构中无需光源。动态带宽分配位于OLT,管理所有R-ONU共享的激光器和光电探测器。必须为每个ONU和特定的往返时间(RTT)调整用于上行数据传输的OLT激光器和光电检测器,该时间是从OLT到ONU的传播时间的两倍。当R-ONU由激光提供服务时,RTT之后还必须有光电探测器才能解调上行数据。我们提出了一种新颖的嵌套测距算法,以处理大距离的OLT-ONU,避免冲突并最大程度地降低服务质量优先队列(QoS)下的延迟。

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