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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Generation and coherent detection of QPSK signal using a novel method of digital signal processing
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Generation and coherent detection of QPSK signal using a novel method of digital signal processing

机译:一种使用新型信号处理方法的QPSK信号的产生和相干检测

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摘要

We demonstrate an optical quadrature phase-shift keying (QPSK) signal transmitter and an optical receiver for demodulating optical QPSK signal with homodyne detection and digital signal processing (DSP). DSP on the homodyne detection scheme is employed without locking the phase of the local oscillator (LO). In this paper, we present an extracting one-dimensional array of down-sampling method for reducing unwanted samples of constellation diagram measurement. Such a novel scheme embodies the following major advantages over the other conventional optical QPSK signal detection methods. First, this homodyne detection scheme does not need strict requirement on LO in comparison with linear optical sampling, such as having a flat spectral density and phase over the spectral support of the source under test. Second, the LabVIEW software is directly used for recovering the QPSK signal constellation without employing complex DSP circuit. Third, this scheme is applicable to multilevel modulation formats such as M-ary PSK and quadrature amplitude modulation (QAM) or higher speed signals by making minor changes.
机译:我们展示了一种光学正交相移键控(QPSK)信号发射机和光学接收器,用于通过杂差检测和数字信号处理(DSP)解调光学QPSK信号。在没有锁定本地振荡器(LO)的相位的情况下采用杂质检测方案的DSP。在本文中,我们提取了一种提取的逐方下抽样方法阵列,用于减少不需要的星座图测量样本。这种新颖的方案体现了与其他传统光学QPSK信号检测方法相比以下的主要优点。首先,与线性光学采样相比,该杂交检测方案不需要对LO的严格要求,例如在被测源的源极的频谱支撑件上具有平坦的光谱密度和相位。其次,LabVIEW软件直接用于在不采用复杂DSP电路的情况下恢复QPSK信号星座。第三,该方案适用于多级调制格式,例如M-ARY PSK和正交幅度调制(QAM)或更高的速度信号通过进行微小的变化。

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