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用于宽带镜像抑制微波混频的基于光子学的平衡哈特利架构。

Photonics-enabled balanced Hartley architecture for broadband image-reject microwave mixing.

作者信息

Zhu Dan, Chen Wenjuan, Pan Shilong

出版信息

Opt Express. 2018 Oct 15;26(21):28022-28029. doi: 10.1364/OE.26.028022.

Abstract

Conventional image-reject mixing based on Hartley and Weaver architectures cannot deal with the mixing spurs generated by the nonlinearity of the mixer, leading to a fundamental restriction on the instantaneous bandwidth and frequency tuning range. This paper proposes and demonstrates a new architecture for broadband image-reject mixing enabled uniquely by photonics. The RF signal and the electrical LO signal are converted into the optical domain and are then launched into the signal and LO ports of a 90-degree optical hybrid, respectively. The optical hybrid coupler introduces 0, π, π/2 and 3π/2 phase shifts to the input signals, so a new dimension for additional balanced detection is enabled, which can dramatically remove the undesirable mixing spurs and the common-mode noises. As a result, the proposed architecture suppresses the downconverted image and the nonlinear mixing spurs simultaneously, enabling a truly wideband microwave frequency mixer. A theoretical and experimental investigation is performed. More than 60-dB image rejection and mixing spur suppression is achieved over a 40-GHz working frequency range.

摘要

基于哈特利和韦弗架构的传统镜像抑制混频无法处理由混频器非线性产生的混频杂散信号,这导致对瞬时带宽和频率调谐范围存在根本限制。本文提出并演示了一种全新的、独特的基于光子学的宽带镜像抑制混频架构。射频信号和电本地振荡器(LO)信号被转换到光域,然后分别注入到一个90度光混合器的信号端口和本地振荡器端口。光混合耦合器给输入信号引入0、π、π/2和3π/2的相移,从而开启了一个用于额外平衡检测的新维度,这可以显著消除不需要的混频杂散信号和共模噪声。结果,所提出的架构同时抑制了下变频镜像信号和非线性混频杂散信号,实现了一个真正的宽带微波频率混频器。进行了理论和实验研究。在40吉赫兹的工作频率范围内实现了超过60分贝的镜像抑制和混频杂散抑制。

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