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Linear Time-Packing Detectors for Optical Feeder Link in High Throughput Satellite Systems

机译:高通量卫星系统中的光学馈线链路线性时间包探测器

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This paper studies the performance of linear detectors when used to recover the information transmitted on a time-packed optical feeder link of a High Throughput Satellite (HTS) system. More precisely, a real-valued time-packed M-ary Pulse Amplitude Modulation (M-PAM) signal is used to modulate the intensity of the laser diode beam with an external Mach-Zehnder Modulator (MZM). At the receiver side, the signal samples are recovered with a photo-detector, and the sequence of payload bits to be encapsulated into the 5G radio frame can be optimally recovered with the aid of a Viterbi equalizer. However, as the modulation order of the M-PAM signal grows, as well as the overlapping factor of time-packing increases and/or the roll-off factor of the pulse-shaping filter decreases, the number of trellis states that are needed to recover the transmitted bit sequence successfully grows notably. To address this issue, this paper studies the performance of two low-complexity linear equalization strategies, namely truncated Minimum Mean Square Error (MMSE) and adaptive MMSE equalizers. As expected, though being sub-optimal, both linear detectors are able to mitigate the impact of the Inter-Symbol Interference (ISI) that time-packing introduces, enabling a better spectral efficiency when compared to baseline M-PAM transmissions without overlapping.
机译:本文研究了线性检测器的性能,用于恢复高通量卫星(HTS)系统的时间填充光学馈线链路上传输的信息。更精确地,使用实值的时间填充的M-ARY脉冲幅度调制(M-PAM)信号用于用外部Mach-Zehnder调制器(MZM)调制激光二极管波束的强度。在接收器侧,用光检测器恢复信号样本,并且可以借助于维特比均衡器将要封装到5G无线电帧中的有效载荷比特序列。然而,由于M-PAM信号的调制顺序增长,以及时间填充的重叠因子增加和/或脉冲整形滤波器的滚出因子减小,所需的格子状态的数量恢复发送的比特序列成功地增长了。为了解决这个问题,本文研究了两个低复杂性线性均衡策略的性能,即截断的最小均方误差(MMSE)和Adaptive MMSE均衡器。正如预期的,虽然是次优,但是线性检测器都能够减轻符号间干扰(ISI)的影响,该时填充引入的频率介绍,并且与基线M-PAM变速箱相比,在没有重叠的基线M-PAM变速器的情况下实现更好的频谱效率。

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