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UNMANNED AERIAL SYSTEMS IN THE PROCESS OF JURIDICAL VERIFICATION OF CADASTRAL BORDER

机译:在地籍边境的法律核查过程中无人机空中系统

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Quite often in the verification of cadastral borders, owners of the parcels involved are not able to make their attendance at the appointed moment in time. New appointments have to be made in order to complete the verification process, and as a result often costs and throughput times grow beyond what is considered to be acceptable. To improve the efficiency of the verification process an experiment was set up that refrains from the conventional terrestrial methods for border verification. The central research question was formulated as "How useful are Unmanned Aerial Systems in the juridical verification process of cadastral borders of ownership at het Kadaster in the Netherlands?" For the experiment, operational evaluations were executed at two different locations. The first operational evaluation took place at the Pyramid of Austerlitz, a flat area with a 30m high pyramid built by troops of Napoleon, with low civilian attendance. Two subsequent evaluations were situated in a small neighbourhood in the city of Nunspeet, where the cadastral situation recently changed, resulting from twenty new houses that were build. Initially a mini-UAS of the KLPD was used to collect photo datasets with less than lcm spatial resolution. In a later stage the commercial service provider Orbit Gis was hired. During the experiment four different software packages were used for processing the photo datasets into accurate geo-referenced ortho-mosaics. . In this article more details will be described on the experiments carried out. Attention will be paid to the mini-UAS platforms (AscTec Falcon 8, Microdrone MD-4), the cameras used, the photo collection plan, the usage of ground control markers and the calibration of the camera's. Furthermore the results and experiences of the different used SEM software packages (Visual SFM/Bundler, PhotoScan, PhotoModeler and the Orbit software) will be shared.
机译:经常在核查地球边界,所涉及的包裹的业主无法及时出席委任时刻。必须进行新的约会,以便完成验证过程,结果通常成本和吞吐量超出所认为可以接受的内容。为了提高验证过程的效率,建立了实验,从传统的陆地方法进行边界验证。中央研究问题被制定为“无人空中系统在荷兰的HET Kadaster的父亲霸权的法律验证过程中有用的无人核查过程?”对于实验,运营评估在两个不同的位置执行。第一次运营评估发生在Austerlitz的金字塔,一个平坦的区域,拿破仑部队建造了30米的金字塔,平民低位。两次后续的评估位于安妮斯市市的一个小社区,最近发生了肉地位的情况,这是由建造的二十家新房造成的。最初,KLPD的Mini-UA用于收集具有小于LCM空间分辨率的照片数据集。在稍后阶段,商业服务提供商轨道GIS被聘用。在实验期间,使用四种不同的软件包用于将照片数据集处理到准确的地理参考的Ortho-Mosaics中。 。在本文中,将在执行的实验中描述更多细节。将注意到Mini-UAS平台(ASCTEC Falcon 8,Microdrone MD-4),使用的相机,照片收集计划,地面控制标记的使用以及相机的校准。此外,将共享不同使用的SEM软件包(Visual SFM / Bundler,Photoscan,PhotoModer和轨道软件)的结果和经验。

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