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Infrared/microwave (IR/MW) micromirror array beam combiner design and analysis

机译:红外/微波(IR / MW)微镜阵列合束器的设计与分析

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摘要

We investigated the design method of an infrared (IR)/microwave (MW) micromirror array type of beam combiner. The size of micromirror is in microscopic levels and comparable to MW wavelengths, so that the MW will not react in these dimensions, whereas the much shorter optical wavelengths will be reflected by them. Hence, the MW multilayered substrate was simplified and designed using transmission line theory. The beam combiner used an IR wavefront-division imaging technique to reflect the IR radiation image to the unit under test (UUT)'s pupil in a parallel light path. In addition, the boresight error detected by phase monopulse radar was analyzed using a moment-of method (MoM) and multilevel fast multipole method (MLFMM) acceleration technique. The boresight error introduced by the finite size of the beam combiner was less than 1°. Finally, in order to verify the wavefront-division imaging technique, a prototype of a micromirror array was fabricated, and IR images were tested. The IR images obtained by the thermal imager verified the correctness of the wavefront-division imaging technique.
机译:我们研究了红外(IR)/微波(MW)微镜阵列型光束组合器的设计方法。微镜的尺寸在微观水平上,与MW波长相当,因此MW在这些尺寸下不会发生反应,而更短的光波长将被它们反射。因此,使用传输线理论简化并设计了MW多层基板。光束组合器使用红外波前分割成像技术将红外辐射图像以平行光路反射到被测单元(UUT)的瞳孔。此外,使用矩量法(MoM)和多级快速多极子方法(MLFMM)加速技术分析了相位单脉冲雷达检测到的视轴误差。光束组合器的有限尺寸引起的视轴误差小于1°。最后,为了验证波前分割成像技术,制造了微镜阵列的原型,并测试了红外图像。通过热成像仪获得的红外图像验证了波前分束成像技术的正确性。

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