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Time-Packing as Enabler of Optical Feeder Link Adaptation in High Throughput Satellite Systems

机译:时间打包作为高通量卫星系统中光馈线链路自适应的促进因素

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This paper studies the data rate that a High Throughput Satellite (HTS) system with fully-regenerative payload can achieve when using an intensity modulation/direct detection optical feeder link. A low-order M-ary Pulse Amplitude Modulation (M-PAM) with time-packing is used to modulate the intensity of the laser diode beam, making use of an external Mach-Zehnder modulator. These M-PAM symbols are recovered on-board the satellite with the aid of a photodetector, and are then encapsulated into the 5G radio frame of the access link. The M-PAM modulation order and the overlapping factor of timepacking are jointly selected to tackle the impact of slowly-varying weather conditions. Moreover, the inter-symbol interference that time-packing introduces is mitigated in reception using a Viterbi equalizer. As expected, time-packing enables a finer granularity on the link adaptation capability of the optical feeder link, enabling to adjust its spectral efficiency according to the moderate attenuation that thin cloud layers introduce.
机译:本文研究了使用强度调制/直接检测光馈线链路时,具有完全再生有效载荷的高吞吐量卫星(HTS)系统可以实现的数据速率。具有时间打包功能的低阶M阶脉冲幅度调制(M-PAM)用于调制激光二极管光束的强度,并利用外部Mach-Zehnder调制器。这些M-PAM符号在光检测器的帮助下在卫星上被恢复,然后被封装到接入链路的5G无线帧中。共同选择了M-PAM调制阶数和时间打包的重叠因子,以应对天气条件缓慢变化的影响。此外,在使用维特比均衡器的接收中,减轻了时间打包引入的符号间干扰。如预期的那样,时间打包可在光馈线链路的链路自适应能力上实现更精细的粒度,从而能够根据薄云层引入的适度衰减来调整其频谱效率。

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