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Digital aerial imagery of unmanned aerial vehicle for various applications

机译:各种应用的无人机数字航空影像

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Digital aerial imagery (DAI) can be acquired using digital mapping camera attached to light aircraft. The DAI is used for the production of topographic and thematic map. The cost of acquiring DAI is very expensive and suitable for large area coverage. The acquisition of DAI is not economical and suitable for small area coverage. Therefore an alternative method should be used to fulfill this need. There are two alternative methods that can be used for acquisition of DAI which include using a small format digital camera attached to light aircraft and using a small format attached to an unmanned aerial vehicle (UAV). UAV system has been reported used in various and diversified applications such as mapping applications (eg. map revision, landslide, coastal erosion, archaeology, forestry), industrial application (eg. engineering, crash accident), Geographic Information System (GIS) applications and others. In this study, micro unmanned aerial vehicle (UAV) systems which comprise of fixed wing UAV flying and rotary UAV are attached with small format high resolution digital camera to acquire DAI for the purpose of mapping at the flying height of 300m at 100m respectively. The micro UAVs were flown autonomously (i.e automatically) and a series of DAIs of a slope using fixed wing UAV and a stream using rotary UAV were acquired rapidly within short period. Ground control point (GCP) and check point (CP) were established using the Global Positioning System and conventional Total Station techniques around the study area for the slope and stream respectively for the purpose of digital image processing and accuracy assessment. The DAIs were processed to produce photogrammetric output such as digital elevation model (DEM) and orthophoto. All these photogrammetric products were successfully produced and assessed. The achievable accuracy is less than ±1m for slope mapping and ±0.280m for stream mapping. In this study, it is proven that the micro UAV system can be us- d for mapping which cover small area. As conclusion, micro UAV is suitable for mapping small area, rapid data acquisition, accurate, low cost and can be employed for various applications.
机译:可以使用连接到轻型飞机的数字制图相机获取数字航空影像(DAI)。 DAI用于制作地形图和专题图。获取DAI的成本非常昂贵,并且适合大面积覆盖。收购DAI并不经济,并且适合小面积覆盖。因此,应使用替代方法来满足此需求。有两种可用于获取DAI的替代方法,包括使用连接到轻型飞机的小型数码相机和使用连接到无人飞行器(UAV)的小型格式。据报道,无人机系统已用于各种应用程序中,例如制图应用程序(例如,地图修改,滑坡,海岸侵蚀,考古,林业),工业应用程序(例如,工程,撞车事故),地理信息系统(GIS)应用程序和其他。在这项研究中,由固定翼无人飞行器和旋转无人飞行器组成的微型无人机系统与小型高分辨率数码相机相连,以获取DAI,以便分别在100m处的300m飞行高度处进行地图绘制。微型无人机自动(即自动)飞行,并且在短时间内迅速获得了一系列使用固定翼无人机的斜坡DAI和使用旋转无人机的水流的数据。地面控制点(GCP)和检查点(CP)使用全球定位系统和常规全站仪技术在研究区域周围分别建立了坡度和溪流,以进行数字图像处理和精度评估。对DAI进行处理以产生摄影测量输出,例如数字高程模型(DEM)和正射影像。所有这些摄影测量产品均已成功生产和评估。对于坡度映射,可实现的精度小于±1m,对于流映射,可实现的精度小于±0.280m。在这项研究中,已证明微型无人机系统可用于覆盖小面积的地图。综上所述,微型无人机适用于小面积测绘,数据采集快速,准确,成本低廉,可用于各种应用。

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