The Development of an UAV Borne Direct Georeferenced Photogrammetric Platform for Ground Control Point Free Applications

Разработка бортовой фотограмметрической платформы с прямой геопривязкой на БПЛА для приложений без наземных контрольных точек
Kai‐Wei Chiang, Meng-Lun Tsai, Chien-Hsun Chu
2012-07-04

Direct GeoreferencingGPS single frequency carrier phaseGround Control Point free applicationsMEMS INS/GPS integrationUAV borne photogrammetric platform
To facilitate applications such as environment detection or disaster monitoring, the development of rapid low cost systems for collecting near real time spatial information is very critical. Rapid spatial information collection has become an emerging trend for remote sensing and mapping applications. In this study, a fixed-wing Unmanned Aerial Vehicle (UAV)-based spatial information acquisition platform that can operate in Ground Control Point (GCP) free environments is developed and evaluated. The proposed UAV based photogrammetric platform has a Direct Georeferencing (DG) module that includes a low cost Micro Electro Mechanical Systems (MEMS) Inertial Navigation System (INS)/Global Positioning System (GPS) integrated system. The DG module is able to provide GPS single frequency carrier phase measurements for differential processing to obtain sufficient positioning accuracy. All necessary calibration procedures are implemented. Ultimately, a flight test is performed to verify the positioning accuracy in DG mode without using GCPs. The preliminary results of positioning accuracy in DG mode illustrate that horizontal positioning accuracies in the x and y axes are around 5 m at 300 m flight height above the ground. The positioning accuracy of the z axis is below 10 m. Therefore, the proposed platform is relatively safe and inexpensive for collecting critical spatial information for urgent response such as disaster relief and assessment applications where GCPs are not available.
1
A fixed-wing UAV photogrammetric platform with Direct Georeferencing (DG) was developed for Ground Control Point (GCP) free environments.
2
All necessary sensor and system calibration procedures were implemented for the platform.
3
Flight tests show vertical (z) positioning accuracy below 10 m at 300 m flight height.
4
Flight tests without using GCPs show horizontal positioning accuracies of about 5 m in x and y at 300 m flight height.
5
The DG module integrates a low-cost MEMS INS/GPS system providing single-frequency GPS carrier phase measurements for differential processing.
6
The platform is presented as relatively safe and inexpensive for rapid spatial information collection in urgent response and disaster applications where GCPs are unavailable.

Fixed-wing UAV-based direct-georeferenced photogrammetric spatial information acquisition platform with MEMS INS/GPS DG module

Positioning and georeferencing accuracy of the DG photogrammetric platform in GCP-free operation (horizontal ~5 m at 300 m AGL, vertical <10 m), including GPS single-frequency carrier phase processing and calibration performance

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2012-07-04
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Kai‐Wei Chiang
Meng-Lun Tsai
Chien-Hsun Chu
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