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Alignment and testing of instrument landing systems

机译:仪器着陆系统的对准和测试

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摘要

The standard method of aligning instrument landing systems is a visual one using a theodolite to observe an aircraft flying on the localizer and glide-path beams. This method is not altogether satisfactory because it is too much dependent upon good weather and results in a great deal of flying. An improved method has been developed which is based upon aerial photography. Since photographs are taken at about 1000ft above ground level, the weather requirement is reduced to conditions in which the cloud base exceeds this figure. Moreover, the flying time is only about one-fifth of that required by the visual method. The errors inherent in the photographic method of glide-path alignment are numerically the same as those for the visual method, but for localizer alignment an error-reducing process can be applied which reduces the region of uncertainty to about half that of the visual method. Special ground equipment has been developed for measuring essential parameters of the beams before flying begins. This reduces the probability that the equipment will fail to meet its alignment specification during a flight check.
机译:对准仪器着陆系统的标准方法是使用经纬仪观察在定位器和滑行光束上飞行的飞机的视觉方法。这种方法并不完全令人满意,因为它过多地依赖于良好的天气并导致大量飞行。已经开发了一种基于航空摄影的改进方法。由于照片是在地面上方约1000英尺处拍摄的,因此天气要求降低到云量超过此数字的条件。而且,飞行时间仅为视觉方法所需时间的五分之一。滑行路径对准的照相方法固有的误差在数值上与视觉方法相同,但是对于定位器对准,可以应用减少误差的过程,该过程将不确定性区域减小到视觉方法的大约一半。已经开发了特殊的地面设备,用于在飞行开始之前测量光束的基本参数。这样可以减少设备在飞行检查期间无法满足其对齐规格的可能性。

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