后差分方法在空中三角测量POS数据精度优化中的应用
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青海省核工业地质局 青海西宁 810006

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TP35

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Application of post difference method in accuracy optimization of POS data in aerial triangulation
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Qinghai Provincial Nuclear Industrial Geological Bureau Xining , 810006,China

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    摘要:

    针对大范围、复杂的野外测量环境下,多点布设外业测控点,难度较大,且耗时耗力的问题,文章以后差分方法优化POS数据精度为研究基点,基于后差分原理,进行两层面创新。首先,基于外方位元素对POS数据精度的影响,利用相机延迟测定及控制技术获取真实的POS数据,并融合码伪距和载波相位双差方程,通过建构基于UbloxN-M8T芯片的后差分GNSS模块,来消除POS数据误差;同时,使用联立GPS与IMU观测值方程的光束法区域网平差模型,通过平差循环迭代运算,获取精度最优的POS数据,并据此,在不同的控制点方案下生成DOM正射影像,通过成像精度测评,得出后差分可显著提升POS数据精度,且在极少控制点、无架构航线下的效用更为明显。

    Abstract:

    in view of the large-scale and complex field measurement environment, it is difficult and time-consuming to set up field measurement and control points at multiple points. In this paper, the optimization of POS data accuracy by differential method is the research base point, and two-level innovation is carried out based on the post difference principle. Firstly, based on the influence of external orientation elements on the accuracy of POS data, the real POS data is obtained by using camera delay measurement and control technology, and the double difference equation of code pseudo range and carrier phase is fused. The post differential GNSS module based on ubloxn-m8t chip is constructed to eliminate the error of POS data. At the same time, the bundle method area network adjustment model of simultaneous GPS and IMU observation equation is used Through the evaluation of imaging accuracy, it is concluded that the post difference can significantly improve the accuracy of POS data, and the utility is more obvious under few control points and no structure routes.

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朱杰.后差分方法在空中三角测量POS数据精度优化中的应用[J].电子测量技术,2022,45(19):101-105

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  • 在线发布日期: 2024-03-29
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