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High capacity optical beam forming for phased arrays with fiber gratings and frequency conversion for beat noise control

机译:用于具有光纤光栅的相控阵的大容量光束形成和用于拍音控制的频率转换

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摘要

A new wavelength division multiplexing grating-based beam-forming architecture for phased arrays that can achieve the minimum possible number of optical interconnects is presented. A reduction in interconnect hardware of 99.6% is obtained for a 512-beam array, which is, as far as we know, the lowest number of interconnects reported to date. Analysis of the ultimate beam capacity limit of the beam former shows that the beat noise interference limitation is the most important factor. We present a new hybrid frequency-converting optical beam former that removes the fundamental beat noise limitation. This frequency downconverts the rf signal to an intermediate frequency before performing the true-time-delay equalization in the optical domain. The resulting advantage of reduced optical bandwidth per channel enables more wavelengths to be used for a given wavelength span, resulting in an increased beam capacity. A greater than sevenfold increase in beam capacity is demonstrated through the use of the frequency conversion technique, with 960 beams synthesized at 12.4 GHz, showing a 99.8% reduction in required interconnects.
机译:提出了一种新的基于波分复用光栅的相控阵波束形成架构,该架构可实现最少数量的光学互连。对于512束阵列,互连硬件的数量减少了99.6%,据我们所知,这是迄今为止报告的最少数量的互连。对波束形成器的极限波束容量极限的分析表明,拍音干扰干扰极限是最重要的因素。我们提出了一种新的混合频率转换光束形成器,它消除了基本的拍频噪声限制。该频率将rf信号下变频为中频,然后在光域中执行实时延时均衡。减少每个通道的光带宽的最终好处是,对于给定的波长范围,可以使用更多的波长,从而增加了光束容量。通过使用频率转换技术,光束容量增加了七倍以上,在12.5 GHz上合成了960束光束,所需互连减少了99.8%。

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