研究目的
Investigating the integration of ZY3-02 stereo images and laser altimeter data for improved Earth topographic modeling through a combined adjustment model with one constraint in image space.
研究成果
The proposed combined adjustment model effectively reduces inconsistencies between stereo images and laser altimeter data, significantly improving elevation accuracy. The improved height accuracy is insensitive to the number and location of LAPs. Incorporating additional PCPs can enhance planimetric accuracy, though the results are slightly lower than those achieved with GCPs. The approach demonstrates potential for high-precision Earth topographic modeling without extensive ground control data.
研究不足
The study's limitations include the dependency on the accuracy of laser altimeter data and the potential error when the local surface interpolated from laser altimeter data cannot accurately describe the real surface. Additionally, the method's effectiveness is contingent on the availability of sufficient laser ground points.
1:Experimental Design and Method Selection:
The study designed a combined adjustment model with one constraint in image space for integrating ZY3-02 stereo images and laser altimeter data. The geometric models for stereo images and laser altimeter data were built first, followed by the introduction of laser ranging information to construct the combined adjustment model.
2:Sample Selection and Data Sources:
Datasets from several areas (Songshan, Tianjin, Dengfeng, and Taihang) were collected as experimental data. These datasets included ZY3-02 stereo images and laser altimeter data.
3:List of Experimental Equipment and Materials:
The ZY3-02 satellite's triple linear array cameras (TLCs) and laser altimeter were the primary equipment used. The laser altimeter's design parameters included a laser pulse width of 7 ns, repetitive frequency of 2 Hz, and ranging accuracy of 1 m under specific conditions.
4:Experimental Procedures and Operational Workflow:
The workflow involved building geometric models, obtaining tie points from stereo images, calculating ground coordinates of LAPs, establishing observation equations for the combined adjustment model, and iterating until residuals met the threshold.
5:Data Analysis Methods:
The study analyzed the positioning accuracy under different adjustment schemes, including free-net block adjustment, block adjustment with GCPs, and combined adjustment using LAPs and PCPs.
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