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全光和宽带微波基波/谐波I/Q下变频器。

All-optical and broadband microwave fundamental/sub-harmonic I/Q down-converters.

作者信息

Gao Yongsheng, Wen Aijun, Jiang Wei, Fan Yangyu, He You

出版信息

Opt Express. 2018 Mar 19;26(6):7336-7350. doi: 10.1364/OE.26.007336.

Abstract

Microwave I/Q down-converters are frequently used in image-reject super heterodyne receivers, zero intermediate frequency (zero-IF) receivers, and phase/frequency discriminators. However, due to the electronic bottleneck, conventional microwave I/Q mixers face a serious bandwidth limitation, I/Q imbalance, and even-order distortion. In this paper, photonic microwave fundamental and sub-harmonic I/Q down-converters are presented using a polarization division multiplexing dual-parallel Mach-Zehnder modulator (PDM-DPMZM). Thanks to all-optical manipulation, the proposed system features an ultra-wide operating band (7-40 GHz in the fundamental I/Q down-converter, and 10-40 GHz in the sub-harmonic I/Q down-converter) and an excellent I/Q balance (maximum 0.7 dB power imbalance and 1 degree phase imbalance). The conversion gain, noise figure (NF), even-order distortion, and spurious free dynamic range (SFDR) are also improved by LO power optimization and balanced detection. Using the proposed system, a high image rejection ratio is demonstrated for a super heterodyne receiver, and good EVMs over a wide RF power range is demonstrated for a zero-IF receiver. The proposed broadband photonic microwave fundamental and sub-harmonic I/Q down-converters may find potential applications in multi-band satellite, ultra-wideband radar and frequency-agile electronic warfare systems.

摘要

微波I/Q下变频器常用于镜像抑制超外差接收机、零中频(零IF)接收机以及鉴相器/鉴频器中。然而,由于电子瓶颈问题,传统的微波I/Q混频器面临严重的带宽限制、I/Q失衡以及偶次失真。本文提出了一种采用偏振分复用双平行马赫曾德尔调制器(PDM-DPMZM)的光子微波基波和亚谐波I/Q下变频器。得益于全光操作,所提出的系统具有超宽的工作频段(基波I/Q下变频器为7-40GHz,亚谐波I/Q下变频器为10-40GHz)以及出色的I/Q平衡(最大功率失衡为0.7dB,相位失衡为1度)。通过本振功率优化和平衡检测,转换增益、噪声系数(NF)、偶次失真以及无杂散动态范围(SFDR)也得到了改善。利用所提出的系统,在超外差接收机中展示了高镜像抑制比,在零IF接收机中展示了在宽射频功率范围内良好的误差向量幅度(EVM)。所提出的宽带光子微波基波和亚谐波I/Q下变频器可能在多频段卫星、超宽带雷达以及频率捷变电子战系统中找到潜在应用。

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