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Low-Power RF Signal Detection Using a High-Gain Tunable OEO Based on Equivalent Phase Modulation

机译:使用基于等效相位调制的高增益可调OEO进行低功率RF信号检测

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摘要

A novel photonic method for low power radio-frequency (RF) signal detection by a tunable optoelectronic oscillator (OEO) with high gain based on equivalent phase modulation (EPM) is proposed and experimentally demonstrated. A dual-parallel Mach-Zehnder modulator is utilized to generate the EPM signal with a controllable optical carrier to sideband ratio, by which the gain to the RF signal by the OEO loop can be enhanced. A phase-shifted fiber Bragg grating (PS-FBG) with a narrow-band notch in its reflection band implements the phase modulation to intensity modulation conversion by removing one sideband of the EPM signal. The gain and noise performance of the detection system are theoretically analyzed and simulated. In the experiment, the maximum gain of 10.4 dB is obtained at 8 GHz, and the detection sensitivity for RF signals from 2 to 18 GHz are within the range of 87.7 to 84.3 dBm by using the developed detection system. Compared to normal phase modulation based scheme, the EPM-based system offers 9.1 dB higher gain. Utility of the proposed approach for detecting modulated RF signal is also investigated and an optimization scheme is discussed.
机译:提出了一种基于等效相位调制(EPM)的高增益可调谐光电振荡器(OEO)检测低功率射频信号的新方法。利用双并行Mach-Zehnder调制器生成具有可控制的光载波与边带比率的EPM信号,由此可以增强OEO环路对RF信号的增益。在其反射带中具有窄带陷波的相移光纤布拉格光栅(PS-FBG)通过去除EPM信号的一个边带实现了相位调制到强度调制的转换。从理论上分析和仿真了检测系统的增益和噪声性能。在实验中,在8 GHz时可获得10.4 dB的最大增益,并且使用开发的检测系统对2至18 GHz的RF信号的检测灵敏度在87.7至84.3 dBm的范围内。与基于常规相位调制的方案相比,基于EPM的系统提供了9.1 dB的更高增益。还研究了所提出的方法用于检测调制的RF信号的效用,并讨论了优化方案。

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