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A 17 element linear array parallel scan compact MMW focal plane array imaging system

机译:一个17元线性阵列并行扫描压缩MMW焦平面阵列成像系统

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In this paper, a 17 element linear array parallel scan compact millimeter wave focal plane array imaging system is realized by adding a scanning planar mirror and a fixed planar mirror in front of the improved Reverse-Microscope system, which is composed of an objective lens and an extended hemispherical lens. For improved Reverse-Microscope system (IRMS), the profile of objective lens is optimized to reduce aberrations and the field-of-view is extended to ±8°, which is much larger than that of common Reverse-Microscope system (RMS). For incident wave with different incident angles, the contour diagrams of electric field in the focal plane of the imaging system are calculated by ray-tracing method and Stratton-Chu vector diffraction integral formula. The numerical results show that the 17 element linear array parallel scan imaging system has good imaging performance.
机译:本文通过在改进的反向显微镜系统前面添加扫描平面镜和固定的平面镜,实现了17个元件线性阵列并联扫描紧凑型毫米波焦平面阵列成像系统。延伸的半球形镜头。对于改进的反向显微镜系统(IRMS),物镜的轮廓经过优化以减少像差,视场延伸到±8°,远大于普通反向显微镜系统(RMS)。对于具有不同入射角的入射波,通过射线跟踪方法和Stratton-Chu向量衍射整体式计算成像系统的焦平面中的电场轮廓图。数值结果表明,17元线性阵列并行扫描成像系统具有良好的成像性能。

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