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Coded Aperture Subreflector Array for High Resolution Radar Imaging

机译:高分辨率雷达成像的编码孔径子反射器阵列

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HRL Laboratories has been developing a new approach for high resolution radar imaging on stationary platforms. High angular resolution is achieved by operating at 235 GHz and using a scalable tile phased array architecture that has the potential to realize thousands of elements at an affordable cost. HRL utilizes aperture coding techniques to minimize the size and complexity of the RF electronics needed for beamforming, and wafer level fabrication and integration allow tiles containing 1024 elements to be manufactured with reasonable costs. This paper describes the results of an initial feasibility study for HRL's Coded Aperture Subreflector Array (CASA) approach for a 1024 element micromachined antenna array with integrated single-bit phase shifters. Two candidate electronic device technologies were evaluated over the 170 - 260 GHz range, GaN HEMT transistors and GaAs Schottky diodes. Array structures utilizing silicon micromachining and die bonding were evaluated for etch and alignment accuracy. Finally, the overall array efficiency was estimated to be about 37% (not including spillover losses) using full wave array simulations and measured device performance, which is a reasonable value at 235 GHz. Based on the measured data we selected GaN HEMT devices operated passively with 0V drain bias due to their extremely low DC power dissipation.
机译:HRL实验室一直在开发一种用于在固定平台上进行高分辨率雷达成像的新方法。通过在235 GHz的频率下运行并使用可扩展的瓦片相控阵架构来实现高角度分辨率,该架构具有以可承受的成本实现数千个元件的潜力。 HRL利用孔径编码技术来最小化波束形成所需的RF电子设备的尺寸和复杂性,并且晶圆级制造和集成允许以合理的成本制造包含1024个元素的瓷砖。本文介绍了HRL的编码孔径子反射器阵列(CASA)方法用于集成有单个位移相器的1024元素微加工天线阵列的初步可行性研究结果。在170-260 GHz范围内评估了两种候选电子设备技术,即GaN HEMT晶体管和GaAs肖特基二极管。对利用硅微机械加工和管芯键合的阵列结构的蚀刻和对准精度进行了评估。最后,使用全波阵列仿真和测得的器件性能估计,整个阵列效率约为37%(不包括溢出损耗),这在235 GHz时是一个合理的值。根据测量数据,我们选择了GaN HEMT器件,因为它们具有极低的直流功耗,因此可在0V漏极偏置下无源运行。

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