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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >60-GHz Ultra-Wideband Radio-Over-Fiber System Using a Novel Photonic Monocycle Generation
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60-GHz Ultra-Wideband Radio-Over-Fiber System Using a Novel Photonic Monocycle Generation

机译:使用新型光子单周期产生器的60 GHz超宽带光纤无线电系统

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摘要

An impulse-radio ultra-wideband (UWB) photonic generation system targeting high user density in-flight communications with simultaneous ranging capabilities in the 60-GHz radio band is proposed and demonstrated experimentally and the implementation cost is analyzed. Impulse-radio UWB monocycles are employed for signaling. The monocycles are generated employing a pulsed laser and a differential photoreceiver with phase shifting. Optical frequency up-conversion is performed employing a low-frequency RF carrier and a Mach–Zehnder electrooptical modulator operating in the nonlinear regime. In the experiment, Gaussian monocycles at a 1.244-Gbit/s data rate with 3.8-GHz bandwidth are generated and up-converted to 57 GHz. The performance of the 57-GHz UWB signal after the transmission over a standard single-mode fiber at in-cabin distances up to 100 m is studied. The experimental results show that good quality UWB pulses can be obtained with the proposed system. The impact of the system parameters on performance including wireless transmission and associated cost is analyzed, indicating that a high number of UWB access nodes can be cost-effectively supported by the proposed system.
机译:提出并针对60 GHz无线频段的同时测距功能,针对高用户密度空中通信的脉冲无线电超宽带(UWB)光子生成系统进行了实验演示,并分析了实现成本。脉冲无线电UWB单周期用于信令。使用脉冲激光和具有相移的差分光接收器生成单周期。使用低频RF载波和在非线性状态下工作的Mach-Zehnder电光调制器执行光频率上变频。在实验中,以1.244 Gbit / s的数据速率和3.8 GHz带宽生成高斯单周期信号,并将其上变频至57 GHz。研究了通过标准单模光纤以高达100 m的机舱内距离传输后的57 GHz UWB信号的性能。实验结果表明,所提出的系统可以获得高质量的UWB脉冲。分析了系统参数对包括无线传输和相关成本在内的性能的影响,表明所提出的系统可以经济高效地支持大量的UWB接入节点。

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