Photonics-enabled biorthogonal Hartley architecture for image-reject mixer with high image rejection ratio

Hezhan Yuan, Dan Zhu, Xiaopeng Hu, Chao Zhang, Hai Xiao, S. Pan
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Abstract

A photonics-enabled biorthogonal Hartley architecture for image-reject mixer with high image rejection ratio is proposed and experimentally demonstrated. By introducing the biorthogonal structure based on microwave photonics, the power imbalance and the phase inaccuracy of the balanced Hartley structure can be effectively cancelled, and the image rejection ratio will be effectively improved. A proof of concept experiment is taken. The image-reject ratio of 79.48 dB is achieved based on the photonics-based biorthogonal structure. As compared with the balanced Hartley structure, 29-dB improvement with the image rejection ratio is realized.
用于高图像抑制比的图像抑制混频器的光子双正交哈特利结构
提出了一种具有高图像抑制比的光子双正交哈特利结构,并进行了实验验证。通过引入基于微波光子学的双正交结构,可以有效地消除平衡哈特利结构的功率不平衡和相位不精确,有效地提高像抑制比。进行了概念验证实验。基于光子双正交结构实现了79.48 dB的图像抑制比。与平衡的Hartley结构相比,实现了29 db的图像抑制比提升。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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