Jaeger Irina, Stiens Johan, Zhang Lixao, Islam Saiful, Koers Gaetan, Vounckx Roger
Lab for Micro- and Photonelectronics, Electronics and Information Processing Department, Vrije Universiteit Brussel, Brussels, Belgium.
J Opt Soc Am A Opt Image Sci Vis. 2008 Jul;25(7):1716-21. doi: 10.1364/josaa.25.001716.
Imaging concealed objects with millimeter-wave coherent radiation is accompanied by speckle. Like all interference phenomena, speckle depends on three light parameters of the millimeter-wave laser beam--phase, wavelength, and angle of incidence--and can be reduced by the diversity of these three parameters. Diversity tools to improve images of concealed objects have been compared. We report measurements, simulations, and image reconstruction results over the whole W-band (75-110 GHz) and demonstrate where each tool works the best. Multiphase diversity is successful in reducing speckle contrast: multiangle to improve the image quality, and multispectral to recognize a small object's features. A simple postprocessing eliminates the areas still covered by interference.
利用毫米波相干辐射对隐藏物体进行成像时会出现散斑。与所有干涉现象一样,散斑取决于毫米波激光束的三个光参数——相位、波长和入射角——并且可以通过这三个参数的多样性来降低。我们比较了用于改善隐藏物体图像的分集工具。我们报告了在整个W波段(75 - 110 GHz)的测量、模拟和图像重建结果,并展示了每种工具在何处效果最佳。多相位分集在降低散斑对比度方面很成功:多角度分集可提高图像质量,多光谱分集可识别小物体的特征。一种简单的后处理消除了仍被干扰覆盖的区域。