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Development of Real-Time 3-Gbit/s BPSK Optical Coherent Receiver Using Field Programmable Gate Array for Free-Space Laser Communications

机译:利用现场可编程门阵列进行实时3-Gbit / s BPSK光学相干接收器的开发,用于自由空间激光通信

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Coherent optical receivers have the following features: shot-noise-limited receiver sensitivity with sufficient local oscillator (LO) power; high frequency resolution at the intermediate frequency or baseband stage in highly dense frequency division multiplexed channels; improved receiver sensitivity compared with that of intensity modulation/direct detection (IMDD) systems; and active realization of multilevel signal transmission using notonly intensity but also phase, frequency, and polarization states. With the advent of coherent binary phase shift keying (BPSK) receivers in orbit, it is absolutely imperative to establish interoperability between the different optical communications systems. A bread board model (BBM) of an optical receiver that can demodulate both IMDD and coherent optical signals for free-space laser communications has been developed. In this receiver, the carrier phase is recovered after homodyne detection by means of digital signal processing (DSP), which is implemented using a field programmable gate array (FPGA) for both estimating the carrier phase and recovering the payload data. The first BBM of the optical coherent receiver has the ability to demodulate 3-Gbit/s coherent BPSK and 6-Gbit/s quadrature phase-shift keying (QPSK) signals. In this paper, preliminary experimental results of the real-time coherent BPSK communication performance at the OC-48c data rate in the laboratory are presented.
机译:相干光接收器具有以下特点:具有足够的本地振荡器(LO)功率的射击噪声限制接收器灵敏度;高密度分频多路复用通道中的中频或基带级的高频分辨率;改进的接收器灵敏度与强度调制/直接检测(IMDD)系统相比;使用NONONLY强度而且是相位,频率和偏振状态的多级信号传输的主动实现。随着轨道中的相干二进制相移键控(BPSK)接收器的出现,绝对必须在不同光通信系统之间建立互操作性。已经开发出用于解调IMDD和自由空间激光通信的IMDD和相干光信号的光接收器的面包板模型(BBM)。在该接收器中,通过数字信号处理(DSP)在杂差检测之后恢复载波相位,其使用现场可编程门阵列(FPGA)来实现估计载波相位并恢复有效载荷数据。光学相干接收器的第一BBM具有解调3-Gbit / s相干BPSK和6-Gbit / s正交相移键控(QPSK)信号的能力。本文介绍了实验室中OC-48C数据速率的实时相干BPSK通信性能的初步实验结果。

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