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Combined CATV and very high speed data transmission over a 1550-nm wavelength indoor optical wireless link

机译:通过1550 nm波长的室内光无线链路将CATV与超高速数据传输相结合

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We report details of an experimental demonstration involving a 15 meter pointed indoor optical wireless link in the 1550-nm wavelength range, that is comprised of a uni-directional Cable Television (CATV) signal and a bi-directional link comprised of two 10 Gbps data links. Four port wavelength division mux-demuxes have been used on both ends of the link. The CATV transmission system is connected to port 1 of the mux-demux. CATV signal consists of both analog and digital parts, and its bandwidth is 1 GHz. The laser is directly modulated by the CATV signal, and at the receiver end, the optical signal is demodulated and fed to a TV. Port 2 of the mux-demux is left unused. Ports 3 and 4 are used for the 10 Gbps links. A bit error rate tester has been used to generate the 10 Gbps signals that are converted to optical wavelengths by enhanced Small Form Factor Pluggable (SFP+) modules at both ends of the setup. Collimators are used at both ends to transmit the combined optical signal that is the output of the mux and to receive the optical signal by focusing it onto a single-mode fiber as the input of the demux. We present results on the CATV portion of the setup and the bit-error-rate performance of the two 10 Gbps links. This experiment shows the feasibility of using pointed optical links in datacenters as secondary links to alleviate the loads of highly utilized wired connections and improve the overall throughput performance of datacenters.
机译:我们报告了一个实验演示的详细信息,该演示涉及在1550 nm波长范围内的15米长的室内光无线链路,该链路由单向有线电视(CATV)信号和由两个10 Gbps数据组成的双向链路组成链接。在链路的两端使用了四个端口波分复用器。 CATV传输系统连接到多路分解器的端口1。 CATV信号由模拟部分和数字部分组成,其带宽为1 GHz。激光由CATV信号直接调制,在接收器端,光信号被解调并馈送到电视。多路分解器的端口2未使用。端口3和4用于10 Gbps链路。误码率测试仪已用于生成10 Gbps信号,并通过设置两端的增强型小型可插拔(SFP +)模块将其转换为光波长。两端使用准直仪来传输作为多路复用器输出的组合光信号,并通过将其聚焦在单模光纤上作为多路复用器的输入来接收光信号。我们在设置的CATV部分以及两个10 Gbps链路的误码率性能方面介绍了结果。该实验表明,在数据中心中使用尖的光链路作为辅助链路以减轻高利用率有线连接的负载并提高数据中心的整体吞吐性能的可行性。

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