光纤衍射光栅在光纤无线通信中的超快用户定位和光束导向

Chaitanya K. Mididoddi, Guoqing Wang, U. Habib, Hongxia Zhang, Chao Wang
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引用次数: 5

摘要

波长控制激光束导向已成功应用于室内光无线通信。在这里,我们展示了基于实时波长监测的OWC超快速用户定位(每秒5000万次扫描)。介绍了一种单独的时间拉伸脉冲激光源,实现了超快光波长(即光束)扫描。色散不平衡马赫-曾德干涉配置在拉伸光脉冲中产生啁啾编码。通过实时瞬时微波频率检测来检测携带用户位置信息的远程用户反射的光波长。这种新方法可以在通信c波段同时实现超高速用户定位和数据传输。进行了概念验证实验来验证所提出的方法。
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Ultrafast User Localization and Beam Steering in Optical Wireless Communication Using an In-Fibre Diffraction Grating
Wavelength-controlled laser beam steering has been successfully demonstrated for indoor optical wireless communications (OWC). Here we demonstrate ultrafast user localization (50 million scans per second) in OWC based on real-time wavelength monitoring. A separate time stretched pulsed laser source is introduced to implement ultrafast optical wavelength (hence optical beam) scanning. A dispersion unbalanced Mach-Zehnder interferometric configuration creates chirped encoding in stretch optical pulses. The reflected optical wavelength from a remote user carrying the location information of the user is detected by real-time instantaneous microwave frequency detection. This new approach facilitates simultaneous ultrafast user localization and data transmission at communication C-band. A proof-of-concept experiment is carried out to verify the proposed approach.
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