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TWDM-PON in an ONU Amplified ODN using 170 Gbit/s DS and 40 Gbit/s US and supporting 51.5 dB loss budget

机译:在ONU中的TWDM-PON使用170 Gbit / s DS和40 Gbit / s US和40 Gbit / s US和支持51.5 DB损耗预算

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In order to achieve long fiber reach and high splitting ratio in a TDM/TWDM-PON, the optical transmitter power should be as high as possible and simultaneously the optical receiver sensitivity should be as low as possible. Of course this approach has limitations from cost and technical feasibility. Thus to achieve a very high loss budget, an in-line amplifier is typically used in the remote node (RN) as part of the optical distribution network (ODN). A drawback of this approach is that the inline amplifier needs electrical power, what might not be available at the RN location. Therefore, we propose in this paper the concept of optical network unit (ONU) amplified ODN (OAO) to achieve loss budgets much higher than possible with unamplified ODNs. We remotely control an optically powered switch from the optical line terminal (OLT) side to configure the electrical powerless RN by a low speed control channel in such a way, that one freely selectable ONU is physically point to point connected to the OLT. In our approach the ONU serves as an inline amplifier in front of the power splitter, despite it is physically located in the ONU. A configuration in which each ONU contains optical amplifiers may become a necessity in the future to enable higher bit rate TDM-PONs, because of the lack of availability of e.g. avalanche photodiodes (APD) at serial bit rates exceeding 10 Gbit/s. In our experiments the ONUs contain a reflective semiconductor optical amplifier (RSOA, very low cost one terminal amplifier) for the upstream (US) and downstream (DS) direction respectively. We demonstrate a TWDM-PON with 4 wavelengths each carrying 42.7 Gbit/s on-off-keying (OOK) in DS and 4 wavelength each carrying 10.7 Gbit/s OOK in US. The OAO solution supports a total loss budget of 51.5 dB, which is an increase of 15 dB compared to the unamplified back to back (BtB) case. In a networking experiment, we verify that the loss budget can be used to demonstrate a fiber reach of 20 km and a split r- tio of 256.
机译:为了实现TDM / TWDM-PON的长纤维覆盖和高分比,光发射器功率应尽可能高,并且同时光接收器灵敏度应尽可能低。当然,这种方法具有成本和技术可行性的局限性。因此,为了实现非常高的损耗预算,在线放大器通常用于远程节点(RN)中作为光分布网络(ODN)的一部分。这种方法的缺点是内联放大器需要电力,在RN位置可能无法获得。因此,我们在本文中提出了光网络单元(ONU)的概念(ONU)放大了ODN(OAO),以实现远高于可能的损耗预算,而无可统计的ODN。我们远程控制来自光学线路端子(OLT)侧的光学动力开关,以便通过低速控制通道配置电源无能为力的RN,即一种可自由选择的ONU与连接到OLT的点物理点。在我们的方法中,ONU用作电源分配器前面的内联放大器,尽管它物理位于ONU中。每个ONU包含光放大器的配置可以成为未来的必要性,以使得能够较高的比特率TDM-PON,因为缺乏例如例如缺乏可用性。串行比率(APD)超过10 Gbit / s的雪崩光电二极管(APD)。在我们的实验中,ONU分别包含用于上游(US)和下游(DS)方向的反射半导体光学放大器(RSOA,非常低成本的一个终端放大器)。我们展示了具有4个波长的TWDM-PON,每次携带42.7 Gbit / s在DS和4波长中的42.7 Gbit / s开关键控(OOK),每个波长在我们中携带10.7 Gbit / s。 OAO解决方案支持总损失预算为51.5 dB,与未解牌返回(BTB)案例相比增加了15 dB。在一个网络实验中,我们核实损失预算可用于证明20公里的纤维达到256米的纤维覆盖率和分裂的RIO。

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