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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Optical up-conversion on continuously variable true-time-delay lines based on chirped fiber gratings for millimeter-wave optical beamforming networks
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Optical up-conversion on continuously variable true-time-delay lines based on chirped fiber gratings for millimeter-wave optical beamforming networks

机译:基于chi光纤光栅的连续可变实时延迟线上的光上转换,用于毫米波光束形成网络

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摘要

An electrooptical up-converting modulation scheme has been considered on chirped-fiber-grating-based (CFG) true-time-delay lines for optical beamforming networks. A rigorous analytical study about the effect of both the up-conversion process and CFG dispersion on the amplitude and delay of detected signal is presented. Simulations and measurements show that the bandwidth limitation of the delay line due to the fiber grating dispersion is clearly improved if compared to the conventional intensity modulation scheme, while the time-delay performance over a 2-30 GHz bandwidth is maintained (/spl sigma//sub max/=/spl plusmn/1 ps). This new concept is used on an optical beamforming network architecture for a millimeter-wave (15-25 GHz) phased array antenna showing a promising performance.
机译:已经在基于chi光纤光栅(CFG)的真实时间延迟线上考虑了电光学上转换调制方案,以用于波束形成网络。对上转换过程和CFG色散对检测信号的幅度和延迟的影响进行了严格的分析研究。仿真和测量表明,与传统的强度调制方案相比,由于光纤光栅色散引起的延迟线带宽限制得到了明显改善,同时在2-30 GHz带宽上保持了时延性能(/ spl sigma / / sub max / = / spl plusmn / 1 ps)。此新概念用于毫米波(15-25 GHz)相控阵天线的光束成形网络体系结构,显示出令人鼓舞的性能。

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