Coherent Microwave Photonic Links With Increased Transmission Capacity

Long Huang, Zhenguo Lu, Ke Wu, J. Yao
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Abstract

Two microwave photonic links (MPLs) with increased transmission capacity based on coherent detection and digital signal processing are proposed. In the first MPL, two microwave vector signals at the same microwave carrier frequency are applied to a dual-drive Mach-Zehnder modulator (DD-MZM) to modulate the two signals on an optical carrier. After transmission over a single-mode fiber, the optical signal is received at a coherent receiver. To recover the two microwave vector signals, a DSP algorithm is developed. Full recovery of the microwave vector signals free from the joint phase noise between the transmitter and the local oscillator laser sources is realized. In the second MPL, the DD-MZM is replaced by a dual-parallel DD-MZM, to which four microwave vector signals are applied. Again, a DSP algorithm is developed. Full recovery of the microwave vector signals free from the joint phase noise is realized. For the MPLs, error-free transmission is experimentally demonstrated.
增加传输容量的相干微波光子链路
提出了基于相干检测和数字信号处理的两种提高传输容量的微波光子链路。在第一种MPL中,将相同微波载波频率的两个微波矢量信号应用于光载波上的双驱动马赫-曾德尔调制器(DD-MZM)进行调制。通过单模光纤传输后,光信号被相干接收器接收。为了恢复两个微波矢量信号,提出了一种DSP算法。实现了不受发射机和本振激光源联合相位噪声影响的微波矢量信号的完全恢复。在第二个MPL中,DD-MZM被双并联DD-MZM取代,其中四个微波矢量信号被应用。再次,开发了一种DSP算法。实现了不受联合相位噪声影响的微波矢量信号的完全恢复。实验证明了MPLs的无差错传输。
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