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Parallel optical amplification and multi-aperture transmission with digital coherent reception for wavelength division multiplexed high capacity FSO and its real-time evaluation

机译:具有数字相干接收的平行光学放大和多孔传输,用于波分复用高容量FSO及其实时评估

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For high capacity free space optical (FSO) communication systems, expected be used to support extended coverage for the sixth generation mobile service, the digital coherent technology and wavelength division multiplexing used in optical fiber communications are promising technologies. These technologies can generate optical signals supporting Tb/s level capacity. However, to achieve the link budget required for Tb/s optical links, transmit power in the order of 100 W is required, and achieving 100 W power output with an optical fiber amplifier is challenging. In this work we propose parallel optical amplification of channel groups split out from the WDM signal, instead of amplification of the undivided WDM signal, and the transmission of the amplified signals as separate beams passed through multi-aperture optics. This configuration can reduce the required output power from the individual optical fiber amplifiers. We designed the FSO terminals for the proposed configuration with 3 transmitter apertures, such that the apertures fell within the directivity of the FSO receiver terminal. We evaluated the configuration in an outdoor experiment with a 500 m FSO link and wavelength division multiplexed real-time 100 Gb/s digital coherent QPSK. signals. The experimental results show that the proposed configuration can increase the total capacity by 3 times, from 200 Gb/s to 600 Gb/s, without needing to increase the output power from the individual optical fiber amplifiers.
机译:对于高容量自由空间光学(FSO)通信系统,预期用于支持第六代移动服务的扩展覆盖,光纤通信中使用的数字相干技术和波分复用是有前途的技术。这些技术可以产生支持TB / S电平容量的光信号。然而,为了实现TB / S光学链路所需的链路预算,需要100W的发射功率,并且通过光纤放大器实现100W功率输出是具有挑战性的。在这项工作中,我们提出了从WDM信号分开的信道组的并行光学放大,而不是通过多孔光学传递的单独光束的放大信号的传输。该配置可以减少各个光纤放大器所需的输出功率。我们设计了具有3个发射器孔的所提出的配置的FSO端子,使得孔隙在FSO接收器终端的方向性内。我们在具有500 m FSO链路和波分复用实时100 GB / S数字相干QPSK中的户外实验中评估了在户外实验中的配置。信号。实验结果表明,该建议的配置可以将总容量从200 GB / s至600 GB / s增加3次,而无需增加各个光纤放大器的输出功率。

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