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首页> 外文期刊>Photonics Technology Letters, IEEE >Overcoming Tap-Delay-Variation Induced Distortion in Microwave Photonic Filters
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Overcoming Tap-Delay-Variation Induced Distortion in Microwave Photonic Filters

机译:克服微波光子滤波器中的抽头延迟变化引起的失真

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摘要

A new technique to realize a multiple-tap microwave photonic Alter that is free of the limitations of tap-delay-variation induced Alter distortion, which enables it to operate at high microwave frequencies, is presented. It is based on a technique using a wideband high-order dispersion compensator to cancel the group delay variations of the primary optical fiber dispersive delay line. The compensator, implemented using a programmable Fourier-domain dynamic wavelength processor incorporating liquid crystal on silicon pixels, provides a tailored optical phase profile to effectively cancel out the tap-delay variations originating from the primary fiber delay line. Experimental results verify the new technique and demonstrate a 20-tap microwave photonic bandpass filter obtained using a multi-frequency laser source with equally spaced lines, which operates to 20 GHz without any radio frequency distortion.
机译:提出了一种实现多抽头微波光子Alter的新技术,该技术不受抽头延迟变化引起的Alter失真的限制,从而使其能够在高微波频率下工作。它基于一种使用宽带高阶色散补偿器的技术来消除初级光纤色散延迟线的群时延变化。使用在硅像素上结合液晶的可编程傅立叶域动态波长处理器实现的补偿器可提供量身定制的光学相位轮廓,以有效抵消源自主光纤延迟线的抽头延迟变化。实验结果验证了这项新技术,并演示了使用具有等间隔线的多频激光源获得的20抽头微波光子带通滤波器,该滤波器在20 GHz的频率下工作,不会产生任何射频失真。

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