首页> 外文会议>Conference on Optoelectronic Integrated Circuits VI; 20040126; San Jose,CA; US >Switched optical polymeric waveguide true-time-delay lines for wideband photonics phased array antennas
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Switched optical polymeric waveguide true-time-delay lines for wideband photonics phased array antennas

机译:宽带光子相控阵天线的交换式光聚合物波导真时延线

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It has been realized that the lack of enabling technology of beam forming and steering devices significantly slows down the process of implementing wideband phased array antenna systems. In this paper, we present our research in developing an integrated electro-optic switched true-time-delay module as a broadband beam forming device for wideband phased array antennas. The unique feature of our approach is that both the true-time-delay waveguide circuit and electro-optic switching elements are monolithically integrated in a single substrate. As a result, this integration significantly reduces the device size while eliminating the most difficult packaging problem associated with the delicate interfaces between optical fibers and optical switches. Such a monolithic approach offers greater precision for the RF phase control than the fiber-delay-lines thanks to the sub-micrometer accuracy of lithography-defined polymeric waveguides. More important, the proposed optical switched true-time-delay network requires very low electrical power consumption due to the low power consumption of electrically-switchable waveguide gratings. Furthermore, the electrically-switchable waveguide gratings have a very fast switching speed (<50 μs) that is at least 100 time faster than any existing commercial optical switching matrix. Photonic phased array antenna based on optical true-time delay lines offers improved performance and reduced weight and power consumption over existing parabolic dish antenna presently used for communications.
机译:已经认识到,缺乏波束形成和操纵装置的启用技术会大大减慢实现宽带相控阵天线系统的过程。在本文中,我们介绍了我们在开发集成电光开关实时延迟模块中的研究成果,该模块可作为宽带相控阵天线的宽带波束成形设备。我们方法的独特之处在于,实时延迟波导电路和电光开关元件均被单片集成在单个基板中。结果,这种集成大大减小了设备尺寸,同时消除了与光纤和光开关之间的精密接口相关的最困难的封装问题。由于光刻定义的聚合物波导具有亚微米级的精度,因此这种单片方法为RF相位控制提供了比光纤延迟线更高的精度。更重要的是,由于电可切换波导光栅的功耗低,因此提出的光开关实时延迟网络需要非常低的功耗。此外,电开关波导光栅具有非常快的开关速度(<50μs),比任何现有的商用光学开关矩阵快至少100倍。与目前用于通信的现有抛物面碟形天线相比,基于光学实时延迟线的光子相控阵天线可提供更高的性能,并减少重量和功耗。

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