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Compensation of gravitational deformations of large reflector antennas using radio holography

机译:利用无线电全息法补偿大型反射器天线的重力变形

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Large fully steerable reflector-type antennas have gravitational deformations of main mirror surface and supports of subreflector. These deformations are variable depending on elevation angle and may reduce antenna gain on high frequencies significantly. To prevent the gain fall the homologous principle is employed at large reflectors design, according to which a main mirror has different focal length and position at various elevation angles. Accordingly, a subbreflector should be moved to proper location at each antenna angle position. This paper presents algorithms of experimental determination of optimal subreflector position at elevation angles range providing maximum gain for given antenna. Results of radioholography measurements and the data of mirror system geometry are used as basis.
机译:大型的完全可转向反射型天线在主镜面和副反射镜的支撑处会产生重力变形。这些变形会根据仰角而变化,并且可能会大大降低高频天线的增益。为了防止增益下降,在大的反射镜设计中采用了同源原理,根据该原理,主镜在不同的仰角处具有不同的焦距和位置。因此,应该在每个天线角度位置将次反射器移至正确的位置。本文提出了在仰角范围内实验确定最佳次反射器位置的算法,可为给定天线提供最大增益。放射线照相术的测量结果和镜系统几何数据用作基础。

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