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Optimization of intersatellite microwave photonic links by utilizing an optical preamplifier under dual-tone modulation

机译:利用双音调制下的光学前置放大器优化卫星间微波光子链路

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摘要

An optical preamplifier is utilized to improve the signal-to-noise and distortion ratio (SNDR) of inter-satellite microwave photonic links employing a Mach-Zehnder modulator under dual-tone modulation. The resulting SNDR at an appropriate direct current (DC) bias phase shift is additionally investigated without small-signal approximation in order to optimize the performance of all the links. It is observed that the most limiting factor degrading the SNDR performance is changed, and the fundamental power is seen to increase more compared with the power of third-order intermodulation (IM3) plus noise due to the optical preamplifier. Thus, SNDR can be improved with respect to the case of a nonoptical preamplifier. For the preamplifier gain of 20 dB and noise figure of 3 dB, an increase of about 24 dB in optimum SNDR is accessible. In addition, the optimum DC bias phase shift is found to be insensitive to the preamplifier gain and noise figure, while the optimum SNDR is sensitive to the preamplifier gain and noise figure.
机译:利用光前置放大器来改善双音调制下采用Mach-Zehnder调制器的卫星间微波光子链路的信噪比和失真比(SNDR)。此外,在没有小信号逼近的情况下,还研究了在适当的直流(DC)偏置相移下得到的SNDR,以优化所有链路的性能。可以看出,降低SNDR性能的最大限制因素已经改变,并且与三阶互调(IM3)的功率加上光前置放大器带来的噪声相比,基本功率的增长更大。因此,相对于非光学前置放大器的情况,可以改善SNDR。对于20 dB的前置放大器增益和3 dB的噪声系数,最佳SNDR可以增加约24 dB。此外,发现最佳直流偏置相移对前置放大器增益和噪声系数不敏感,而最佳SNDR对前置放大器增益和噪声系数不敏感。

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