A new era of airborne city mapping

案例分析

Citymapper

Author:Penny Boviatsou

Using a professional workflow solution as part of airborne mapping applications is as important as high-end sensor technology. In urban environments, this becomes even more apparent. They are subject to rapid changes and thus have a higher need for up-to-date data for:

  1. Navigation
  2. Planning purposes and
  3. 可视化。

In addition, 3D mapping projects over metropolitan areas generate large amounts of data that need to be processed within reasonable timelines.

为了满足绘制专业人士有效的数据收集和快速吞吐量的需求,而不会丧失质量,Leica Geosystems已介绍莉卡实体, a tightly integrated solution combining efficient imaging and LiDAR data collection with theLeica CityMapperwith the post-processing workflow for high volume production,Leica HxMap.


Acquiring and processing LiDAR data across the US

Citymapper

Leica Geosystems与国际资产完整性和地理智能解决方案提供商Fugro合作开始acquiring and processing data over multiple cities and coastal regions across the US.

Using CityMapper, Fugro conductedaerial surveys over some of North America’s most densely populated urban centres,以支持他们的地理空间映射ping services. As the world’s first hybrid airborne sensor combining oblique and nadir imaging as well as a LiDAR system into one instrument, the CityMapper enables significant time and cost savings by flying once to collect both imagery and LiDAR data. All collected LiDAR and imaging data can be processed in the one unified workflow solution, Leica HxMap.

“We have a long history working with Leica Geosystems sensors, because they are so reliable. CityMapper has proven no different,”Fugro计划经理Mike Wernau说。“The platform's superior design, coupled with Leica Geosystems’ newest version of HxMap, amplifies our ability to create highly accurate, feature-rich geospatial content.”

The results of the airborne surveys were post-processed using the latest version of Leica HxMap, the unified high-performance multi-sensor workflow. Within a single and familiar interface common to processing other Leica Geosystems airborne sensors, all typical data products, from orthophotos and oblique images to point clouds, 3D meshes and models, can be quickly and efficiently produced.

通用传感器后处理软件的最新更新是,添加了激光点云的生成,校准,带状匹配和查看到当前的图像处理能力。Leica HXMAP版本2.2还包含了CityMapper和Leica Spl100单光子激光雷达传感器的增强噪声过滤。

“HxMap v2.2 is extremely powerful, as it establishes a single environment to process our CityMapper oblique and nadir imagery, point cloud and terrain data all at once,”said Wernau.“The products derived from the Leica RealCity workflow serve as the foundation for our land and property solutions, delivering real value to our customers in state and local government, insurance, and land-use management.”


Exciting CityMapper results in Bordeaux

Citymapper

波尔多市是法国最令人兴奋,最充满活力和充满活力的城市之一。它是法国西南部Gironde部门Garonne河上的港口城市。波尔多及其郊区是波尔多梅托波尔的中心,约有760,000名居民。

波尔多是世界上主要的葡萄酒产业资本。它是全球主要葡萄酒博览会,Vinexpo和都会区的葡萄酒经济体的所在地,每年需要145亿欧元。在2007年,经过将近十年的基础设施升级,波尔多被联合国教科文组织视为其巨大的启蒙时代城市核心的世界遗产。巴黎之后,波尔多拥有法国任何城市的保存历史建筑数量最多。

In 2017, APEI (Aéro Photo Europe Investigation), a well-recognised French aerial survey company specialising in the airborne acquisition of geospatial data using innovative techniques and equipment, worked together with the Direction de l'Information Géographique (D.I.G.) de Bordeaux Métropole for Bordeaux’s city mapping project. APEI deliveredAero三角式斜图像captured with Leica CityMapper and Bordeaux will use these images to create a 3D city model.

挖。de BordeauxMétropole负责管理波尔多大都市中使用的地理信息系统的参考层。该项目被飞行only 2 days(10th and 11th March 2017) with a twin piston-engine Partenavia P68C, registered F-HPEI.

“The system uses Leica PAV100 and Leica FlightPro which are part of the Leica airborne common platform. It makes it really easy for our staff to operate and the training has been performed in only 2 hours. We used the Leica PodLifter which is specifically designed to lower the camera into the PAV100 to get full view for oblique capture. It was a very useful feature,”APEI首席执行官兼技术经理Bruno Callabat说。


空中现实捕获bob综合app赌博

Citymapper

查看特定的用例,并将图像生成点云的结果与融合成像和激光雷达数据产生的点云进行比较,好处是明显的。在许多国家 /地区,城市地区的35%都被树木覆盖。因此,图像点云在建筑物上非常密集,但是树下街道和表面的数字高程模型受到干扰。相比之下,CityMapper的LiDAR穿过树木,并产生具有扁平的地面地面的准确地面模型。在建筑物上有阴影或表面不规则的区域,图像点云中的建筑边缘可能是蓬松的。借助融合成像和激光雷达工作流程,这些边缘更加清晰,模型更准确。

It is a natural next step to improve image based point clouds with LiDAR-based point clouds, adding accuracy and additional information to help create the best 3D model possible. As urban environments change so rapidly, it is desired that image data and LiDAR data are collected at the same time, a requirement that gave birth to the Leica CityMapper, the world’s first hybrid airborne sensor specifically designed for urban planning application. The simultaneous acquisition of nadir and oblique image data as well as LiDAR data offers the most cost-effective way to generate a comprehensive geospatial base map for city planners and those who are engaged in urban mapping.

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