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Coherent optical array receiver for PPM signals under atmospheric turbulence

机译:大气湍流下ppm信号的相干光学阵列接收机

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摘要

The performance of a coherent free-space optical communications system operating in the presence of turbulence is investigated. Maximum Likelihood Detection techniques are employed to optimally detect Pulse Position Modulated signals with a focal-plane detector array and to reconstruct the turbulence-degraded signals.ududLaboratory equipment and experimental setup used to carry out these experiments at the Jet Propulsion Laboratory are described. The key components include two lasers operating at 1064 nm wavelength for use with coherent detection, a 16 element (4 X 4) InGaAs focal-plane detector array, and a data-acquisition and signal-processing assembly needed to sample and collect the data and analyze the results. The detected signals are combined using the least-mean-square (LMS) algorithm. In the first part of the experimental results we show convergence of the algorithm for experimentally obtained signal tones in the presence of atmospheric turbulence. The second part of the experimental results shows adaptive combining of experimentally obtained heterodyned pulse position modulated (PPM) signals with pulse-to-pulse coherence in the presence of simulated spatial distortions resembling atmospheric turbulence. The adaptively combined PPM signals are phased up via an LMS algorithm suitably optimized to operate with PPM in the presence of additive shot noise. A convergence analysis of the algorithm is presented, and results with both computer-simulated and experimentally obtained PPM signals are analyzed.ududThe third part of the experimental results, in which the main goal of this thesis is achieved, includes an investigation of the performance of the Coherent Optical Receiver Experiment (CORE) at JPL. Bit Error Rate (BER) results are presented for single and multichannel optical receivers where quasi shot noise-limited performance is achieved under simulated turbulence conditions using noncoherent postdetection processing techniques. Theoretical BER expressions are compared with experimentally obtained BER results, and array combining gains are presented. BER results are shown as a function of signal-to-noise ratio (SNR), photons per symbol, and photons per bit (PPB).
机译:研究了在湍流存在下工作的相干自由空间光通信系统的性能。最大似然检测技术用于通过焦平面检测器阵列最佳地检测脉冲位置调制信号并重建湍流退化信号。 ud ud描述了用于在喷气推进实验室进行这些实验的实验室设备和实验装置。关键组件包括两个用于相干检测的波长为1064 nm的激光器,一个16元素(4 X 4)InGaAs焦平面检测器阵列以及一个采样和收集数据所需的数据采集和信号处理组件,以及分析结果。使用最小均方(LMS)算法组合检测到的信号。在实验结果的第一部分中,我们显示了在存在大气湍流的情况下通过实验获得的信号音的算法的收敛性。实验结果的第二部分显示了在存在类似于大气湍流的模拟空间失真的情况下,将实验获得的异相脉冲位置调制(PPM)信号与脉冲间相干性进行自适应组合。自适应组合的PPM信号通过LMS算法逐步提高,该算法经过适当优化,可在存在附加散粒噪声的情况下与PPM配合使用。给出了算法的收敛性分析,并分析了计算机模拟和实验获得的PPM信号的结果。 JPL的相干光接收机实验(CORE)的性能。给出了单通道和多通道光接收机的误码率(BER)结果,其中使用非相干后检测处理技术在模拟湍流条件下实现了准散粒噪声限制的性能。将理论BER表达式与实验获得的BER结果进行比较,并给出阵列组合增益。 BER结果显示为信噪比(SNR),每个符号的光子和每个位的光子(PPB)的函数。

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    Munoz Fernandez Michela;

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  • 年度 2006
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