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METHOD AND DEVICE OF DETERMINATION OF ASTRONOMICAL AZIMUTH

机译:天文学方位角的确定方法和装置

摘要

FIELD: physics; measuring.;SUBSTANCE: invention concerns to field of astronomo-geodetic measurings and can be used for definition of azimuthal directions on ground reference points for the solution of practical problems of navigation and ballistics. The method and the device of definition of an astronomical azimuth are intended for definition of an azimuth from measuring of time of cross by a star of the vertical plane transiting through a perpendicular to the first mirror. The astronomical azimuth of a perpendicular is spotted from evaluations with use of known formular dependence at known latitude, a longitude of an installation site of an astroviewfinder both hour coal and declination of an observable star. For measurement accuracy magnification lean against a standing in perpendicular space to a mirror smooth surface. For this purpose an input stream from a star in a horizontal plane before a telescope divide into two. The first is reflected from a smooth surface and guided to a telescope. Second is reflected twice. In a vertical plane both streams are equally canted to an impinging stream. In a horizontal plane both streams are equally canted to a perpendicular to a smooth surface of the first mirror, but have opposite signs. In this case in telescope focus it is formed two images of the same star. At its motion both images converge to the vertical plane transiting through a perpendicular to a smooth surface of the first mirror. Measuring, time is yielded nonsinglely on a relative position of two images. In the device before a telescope the optical block consisting of two devices is erected. In a vertical plane both device carry out function of the flat mirror canted in this plane to a direction on a star. In a horizontal plane the first mirror guides a stream from a star to a telescope as a flat mirror under a double corner to an impinging stream. The second device contains two mirrors under 90° corner to each other. Having reflected twice, light from a star will be spread in a horizontal plane in a direction opposite to a direction of slope. Levelling element of the device the spots during the moments of measuring of time of cross by a star of the vertical plane transiting through a perpendicular to a smooth surface of the first mirror, a standing of the specified perpendicular concerning horizon.;EFFECT: measurement accuracy increase.;12 cl, 10 dwg
机译:领域:物理学;物质:本发明涉及天文大地测量的领域,并且可以用于定义地面参考点上的方位角方向,以解决导航和弹道的实际问题。定义天文方位角的方法和设备旨在通过测量垂直平面的星通过垂直于第一反射镜的星的穿越时间来确定方位角。垂直线的天文方位角是通过在已知纬度,天文取景器安装地点的经度,小时煤量和可观测星体偏角的情况下使用已知公式依赖关系的评估中发现的。为了提高测量精度,放大倍率要靠在垂直于镜面光滑表面的空间中。为此目的,望远镜将水星中来自恒星的输入流分成两部分。第一个从光滑的表面反射并被引导至望远镜。二是体现两次。在垂直平面上,两个流均相等地倾斜为撞击流。在水平面中,两个流均相等地倾斜到垂直于第一反射镜的平滑表面,但具有相反的符号。在这种情况下,在望远镜聚焦时会形成同一颗恒星的两个图像。两个图像在其运动时会聚到垂直平面,该垂直平面通过垂直于第一反射镜的光滑表面的方向。测量时,仅在两个图像的相对位置上产生时间。在望远镜之前的设备中,安装了由两个设备组成的光学模块。在垂直平面中,两个装置都执行在该平面中倾斜成星形的平面镜的功能。在水平面中,第一面反射镜将恒星流从望远镜引导到望远镜,而双角下方的平面镜则将其引导到撞击流。第二个设备包含两个90度以下的镜子。互相角。经过两次反射后,来自恒星的光将在水平面内以与倾斜方向相反的方向传播。该设备的水准元件在测量时间的瞬间,该点被垂直平面的星状穿过垂直于第一反射镜的光滑表面的垂直平面的恒星穿过,该垂直高度与水平线垂直;效果:测量精度增加; 12 cl,10 dwg

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