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首页> 外文期刊>Optics Letters >Demonstration of using two aperture pairs combined with multiple-mode receivers and MIMO signal processing for enhanced tolerance to turbulence and misalignment in a 10 Gbit/s QPSK FSO link
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Demonstration of using two aperture pairs combined with multiple-mode receivers and MIMO signal processing for enhanced tolerance to turbulence and misalignment in a 10 Gbit/s QPSK FSO link

机译:使用两个孔径对与多模接收器和MIMO信号处理相结合的示范,以提高10 Gbit / s QPSK的湍流和未对准的公差

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摘要

We utilize aperture diversity combined with multiple-mode receivers and multiple-input-multiple-output (MIMO) digital signal processing (DSP) to demonstrate enhanced tolerance to atmospheric turbulence and spatial misalignment in a 10 Gbit/s quadrature-phase-shift-keyed (QPSK) free-space optical (FSO) link. Turbulence and misalignment could cause power coupling from the fundamental Gaussian mode into higher-order modes. Therefore, we detect power from multiple modes and use MIMO DSP to enhance the recovery of the original data. In our approach, (a) each of multiple transmitter apertures transmits a single fundamental Gaussian beam carrying the same data stream, (b) each of multiple receiver apertures detects the signals that are coupled from the fundamental Gaussian beams to multiple orbital angular momentum (OAM) modes, and (c) MIMO DSP is used to recover the data over multiple modes and receivers. Our simulation shows that the outage probability could be reduced from >0.1 to <0.01. Moreover, we experimentally demonstrate the scheme by transmitting two fundamental Gaussian beams carrying the same data stream and recovering the signals on OAM modes 0 and +1 at each receiver aperture. We measure an up to similar to 10 dB power-penalty reduction for a bit error rate (BER) at the 7% forward error correction limit for a 10 Gbit/s QPSK signal. (C) 2020 Optical Society of America
机译:我们利用孔径分集结合多模式接收器和多输入多输出(MIMO)数字信号处理(DSP),以展示10 Gbit / s正交相移键入的10 Gbit / s正交相移的大气湍流和空间未对准(QPSK)自由空间光学(FSO)链路。湍流和未对准可能导致从基本高斯模式到高阶模式的电力耦合。因此,我们从多种模式中检测到电力,并使用MIMO DSP来增强原始数据的恢复。在我们的方法中,多个发射器孔中的每一个传输携带相同数据流的单个基本高斯光束,(b)多个接收器孔中的每一个检测从基本高斯光束耦合到多个轨道角动量的信号(OAM )模式,(c)MIMO DSP用于通过多种模式和接收器恢复数据。我们的仿真表明,停电概率可以从> 0.1降低到<0.01。此外,我们通过传输携带相同数据流的两个基本高斯光束并在每个接收器孔处恢复OAM模式0和+1上的信号来实验展示方案。对于10 Gbit / s QPSK信号的7%前进误差校正限制,我们测量最多可测量的误码率(BER)。 (c)2020美国光学学会

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