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Geometric Positioning for Satellite Imagery without Ground Control Points by Exploiting Repeated Observation

机译:利用重复观测技术对没有地面控制点的卫星影像进行几何定位

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With the development of space technology and the performance of remote sensors, high-resolution satellites are continuously launched by countries around the world. Due to high efficiency, large coverage and not being limited by the spatial regulation, satellite imagery becomes one of the important means to acquire geospatial information. This paper explores geometric processing using satellite imagery without ground control points (GCPs). The outcome of spatial triangulation is introduced for geo-positioning as repeated observation. Results from combining block adjustment with non-oriented new images indicate the feasibility of geometric positioning with the repeated observation. GCPs are a must when high accuracy is demanded in conventional block adjustment; the accuracy of direct georeferencing with repeated observation without GCPs is superior to conventional forward intersection and even approximate to conventional block adjustment with GCPs. The conclusion is drawn that taking the existing oriented imagery as repeated observation enhances the effective utilization of previous spatial triangulation achievement, which makes the breakthrough for repeated observation to improve accuracy by increasing the base-height ratio and redundant observation. Georeferencing tests using data from multiple sensors and platforms with the repeated observation will be carried out in the follow-up research.
机译:随着空间技术的发展和遥感器的性能,世界各地的国家不断发射高分辨率卫星。由于效率高,覆盖范围大,不受空间规则的限制,卫星图像成为获取地理空间信息的重要手段之一。本文探讨了使用没有地面控制点(GCP)的卫星图像进行的几何处理。将空间三角剖分的结果引入地理定位,作为重复观测。通过将块调整与非定向新图像相结合的结果表明,通过重复观察,可以进行几何定位。在常规块调整中需要高精度时,必须使用GCP。在不使用GCP的情况下进行重复观测的直接地理配准的精度要优于传统的正向交点,甚至接近使用GCP的常规块调整。得出的结论是,将现有的定向影像作为重复观测可以提高对先前空间三角测量成果的有效利用,这为重复观测取得突破,通过增加底高比和冗余观测来提高精度。在后续研究中将使用来自多个传感器和平台的数据并进行重复观测进行地理配准测试。

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