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Photon instantaneous microwave frequency measurement with adjustable measurement range based on an electro-optical polarization modulator

机译:光子瞬时微波频率测量,基于电光极化调制器的可调测量范围

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摘要

This paper presents a simple photonic-assisted instantaneous microwave frequency measurement approach with an adjustable measurement range. In our scheme, different polarization processing is performed on the upper and the lower branches, and then the powers of the two branches are compared to obtain the amplitude comparison function (ACF), which provides the frequency-amplitude mapping. The measurement system is significantly simplified since only one polarization modulator (PolM) and one single laser source are required. In addition, our scheme achieves a larger ACF slope, which significantly increases the measurement resolution. In the simulation, a frequency measurement over the range of 3-42.8 GHz with measurement errors within +/- 0.1 GHz is achieved by optimizing the dc bias voltage applied to the PolM and the polarization angle. This scheme provides a reference for measuring the unknown instantaneous frequency of the received signal from a radar system. (C) 2020 Optical Society of America
机译:本文介绍了一种简单的光子辅助瞬时微波频率测量方法,可调测量范围。在我们的方案中,对上部和下部分支执行不同的偏振处理,然后比较两个分支的功率以获得提供频率幅度映射的幅度比较函数(ACF)。测量系统显着简化,因为只需要一个偏振调制器(POLM)和一个单一激光源。此外,我们的计划实现了更大的ACF斜率,显着提高了测量分辨率。在模拟中,通过优化施加到POLM的DC偏置电压和偏振角来实现在+/- 0.1GHz内的测量误差范围内的频率测量。该方案提供了用于测量来自雷达系统的接收信号的未知瞬时频率的参考。 (c)2020美国光学学会

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    《Applied optics》 |2020年第7期|共9页
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