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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Photonic instantaneous microwave frequency measurement based on two different phase modulation to intensity modulation conversions
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Photonic instantaneous microwave frequency measurement based on two different phase modulation to intensity modulation conversions

机译:基于两个不同相位调制到强度调制转换的光子瞬时微波频率测量

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摘要

A novel photonic technique for instantaneous frequency measurement of microwave signal based on phase modulation to intensity modulation conversion is proposed and demonstrated. In the proposed system, an optical carrier is modulated by a microwave signal with its frequency to be measured through a phase modulator. The phase-modulated optical signal is then converted to intensity-modulated signals in two independent paths using a dispersive media and a frequency discriminator respectively. Since the dependence of the received microwave power on the input microwave frequency in the two paths differs, the microwave power ratio between the two paths can be used to uniquely determine the microwave frequency. The major advantages of the approach lie in that only one laser source and the bias-free phase modulator is employed in the system, which improves the stability of the system. Experimental demonstrations of the frequency measurement based on the proposed approach are presented.
机译:提出并证明了一种基于相位调制到强度调制转换的微波信号瞬时频率测量的光子技术。在提出的系统中,光载波被微波信号调制,其频率将通过相位调制器进行测量。然后,分别使用色散介质和鉴频器在两个独立的路径中将调相后的光信号转换为强度调制后的信号。由于在两个路径中接收的微波功率对输入微波频率的依赖性不同,因此可以将两个路径之间的微波功率比用于唯一确定微波频率。该方法的主要优点在于,系统中仅使用一个激光源和无偏置相位调制器,从而提高了系统的稳定性。提出了基于所提出的方法进行频率测量的实验演示。

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