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Phase Noise Measurement of Phase Modulation Microwave Photonic Links

机译:相位调制微波光子链路的相位噪声测量

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Microwave photonic links (MPLs) can provide many advantages over traditional coaxial and waveguide solutions due to its low loss, small size, lightweight, large bandwidth, superior stability and immunity to external interference. It has been considered in various applications such as: the transmission of radio frequency (RF) signal over optical carriers, video television transmission, radar and communication systems. Stability of phase of the microwave photonic links is a critical issue in several realistic applications. The delay line technique for phase noise measurement of phase modulation microwave photonic links is measured for the first time. Using this approach, the input signal noise and power supply noise can be effectively cancelled, and it does not require phase locking. The phase noise of a microwave photonic links with a 10 GHz sinusoidal signal is experimentally demonstrated.
机译:微波光子链接(MPLS)由于其低损耗,体积小,重量轻,带宽,卓越的稳定性和外部干扰免疫力,可以提供传统同轴和波导解决方案的许多优点。它已经考虑在各种应用中,例如:在光载波上传输射频(RF)信号,视频电视传输,雷达和通信系统。微波光子链接阶段的稳定性是几种现实应用中的关键问题。第一次测量相位调制微波光子链路相位噪声测量的延迟线技术。使用这种方法,可以有效地取消输入信号噪声和电源噪声,并且不需要阶段锁定。实验证明了具有10GHz正弦信号的微波光子链路的相位噪声。

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