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New strategies for combining GNSS and photogrammetric data.

机译:组合GNSS和摄影测量数据的新策略。

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摘要

The basic concept of integrating GNSS and photogrammetry dates back more than 30 years and for at least the past decade it has been ubiquitous in both aerial and terrestrial mapping. Throughout all its history the basic technique for integrating the two technologies has been the same: GNSS data is post-processed using a Kalman filter yielding positions and these positions are then used as constraining information in a photogrammetric least-squares bundle adjustment. As evidenced by its long and essentially unaltered use the existing strategy works well, nevertheless it has some drawbacks. From a theoretical perspective, the integration is sub-optimal while the information flow is only in the one direction. From an operational perspective, the current approach is unwieldy: (at least) two processing packages are required.;The first strategy introduces two-way communication between the GNSS and photogrammetric processors, while the second strategy introduces measurement-level integration within a single processor. The combined adjustment also allows some more flexible GNSS processing options; for instance, a non-fixed base station or the use of observations when there are less than the 4 normally required. Testing of the inter-processor communication strategy showed that it could help GNSS positioning following signal outages, yet this improvement does not necessarily translate into improved photogrammetric mapping accuracy.;Testing of the combined adjustment demonstrated how photogrammetric control could replace a fixed GNSS base station, and how use of use of GNSS observations during partial signal blockages (when they would otherwise be discarded) could help bound the mapping and exposure position error growth. The combined adjustment testing also showed that the exposure positions derived from a typical aerial block of imagery have too much noise to substantially improve the GNSS positioning; consequently, mapping accuracy also does not improve.;The objective of the research contained within this work is to examine new strategies for integrating GNSS and photogrammetric data that alleviate the aforementioned limitations of the current integration strategy. Specifically, two new integration strategies are introduced, implemented, and tested: (1) Inter-processor communication between a kinematic GNSS Kalman filter and a photogrammetric bundle adjustment. (2) A combined least-squares adjustment of both GNSS and photogrammetric observations.
机译:集成GNSS和摄影测量的基本概念可以追溯到30年前,并且至少在过去的十年中,它在空中和地面测绘中无处不在。纵观其历史,整合这两种技术的基本技术都是相同的:使用Kalman滤波器产生位置的GNSS数据进行后处理,然后将这些位置用作摄影测量最小二乘束调整中的约束信息。长期的,基本上不变的使用证明了现有策略的有效性,但是它也有一些缺点。从理论上讲,集成是次优的,而信息流仅在一个方向上。从操作的角度来看,当前的方法笨拙:(至少)需要两个处理程序包;第一种策略引入了GNSS与摄影测量处理器之间的双向通信,而第二种策略引入了单个处理器内的测量级集成。组合的调整还允许一些更灵活的GNSS处理选项;例如,非固定基站或在少于通常需要的4个时使用观测。对处理器间通信策略的测试表明,它可以在信号中断后帮助GNSS定位,但是这种改进并不一定意味着可以提高摄影测量映射的准确性。;组合调整的测试证明了摄影测量控制可以如何代替固定的GNSS基站,以及在部分信号阻塞期间(否则将被丢弃)如何使用GNSS观测值可以帮助限制映射和曝光位置误差的增长。组合调整测试还显示,源自典型航空影像的曝光位置噪声太大,无法充分改善GNSS定位;因此,制图精度也没有提高。这项工作中包含的研究目标是研究减轻GNSS和摄影测量数据集成的新策略,以减轻当前集成策略的上述局限性。具体来说,引入,实施和测试了两种新的集成策略:(1)运动型GNSS卡尔曼滤波器和摄影测量束调整之间的处理器间通信。 (2)GNSS和摄影测量观测值的最小二乘组合调整。

著录项

  • 作者

    Ellum, Cameron MacKenzie.;

  • 作者单位

    University of Calgary (Canada).;

  • 授予单位 University of Calgary (Canada).;
  • 学科 Engineering Electronics and Electrical.;Computer Science.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 222 p.
  • 总页数 222
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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