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Multiwavelength-Integrated Optical Beamformer Based on Wavelength Division Multiplexing for 2-D Phased Array Antennas

机译:基于波分复用的二维相控阵天线多波长集成光束形成器

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摘要

A novel, hardware-compressive architecture for broadband and continuously tunable integrated optical true-time-delay beamformers for phased array antennas is proposed and experimentally demonstrated. The novel idea consists in employing the frequency-periodic response of optical ring resonator (ORR) filters in conjunction with on-chip wavelength division multiplexing (WDM), in order to create multiple signal paths on an individual beamformer channel. This novel idea dramatically reduces the network complexity and, in turn, its footprint on the wafer. This allows the integration of an unprecedented number of delay channels on a single chip, ultimately overcoming the main limitation of integrated optical beamformers, that is, the difficulty to feed antenna arrays with many elements using a single integrated chip. A novel beamformer has been realized based on this technique, using the ultra-low-loss TriPleX waveguide platform with CMOS-compatible fabrication equipment, and its functionality is demonstrated over an instantaneous bandwidth from 2 to 10 GHz. This result, at the best of our knowledge, represents at the same time the record instantaneous bandwidth (8 GHz) for an optical beamformer based on ORR, and the first demonstration of an integrated beamformer where the periodic response of ORRs is exploited to process signals from different antenna elements, simultaneously, using a single delay line.
机译:提出并通过实验证明了用于相控阵天线的宽带和连续可调集成光实时延迟波束形成器的新颖,硬件压缩架构。新颖的思想在于将光环形谐振器(ORR)滤波器的频率周期响应与片上波分复用(WDM)结合使用,以便在单个波束形成器通道上创建多个信号路径。这个新颖的想法大大降低了网络复杂性,进而降低了其在晶圆上的占用空间。这允许在单个芯片上集成空前数量的延迟通道,最终克服了集成光束形成器的主要局限性,也就是克服了使用单个集成芯片向天线阵列馈入许多元件的困难。使用具有CMOS兼容制造设备的超低损耗TriPleX波导平台,基于此技术实现了一种新型波束成形器,并在2至10 GHz的瞬时带宽上演示了其功能。据我们所知,此结果同时表示基于ORR的光束形成器的记录瞬时带宽(8 GHz),并且是集成式波束形成器的首次演示,其中利用ORR的周期性响应来处理信号使用一条延迟线同时从不同的天线元件中提取信号。

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