一种用于建筑工程的高精度地理信息测绘系统

By using a multi-source spatiotemporal sensing matrix module and an intelligent error compensation system, the problems of low surveying accuracy and difficulty in eliminating cumulative errors in construction engineering have been solved, achieving efficient data processing and real-time monitoring, and improving construction quality and safety.

CN122408712APending Publication Date: 2026-07-17DEZHOU TIANYUAN GRP

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
DEZHOU TIANYUAN GRP
Filing Date
2026-05-25
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing architectural surveying systems suffer from problems such as low surveying accuracy in complex environments, strong reliance on single sensors, low efficiency in heterogeneous data fusion, and difficulty in eliminating accumulated errors.

Method used

Employing a multi-source spatiotemporal sensing matrix module, an environment-adaptive signal reinforcement unit, a distributed heterogeneous data fusion engine, a dynamic collaborative monitoring and benchmarking module, and an intelligent error compensation and closed-loop verification system, the system achieves real-time data processing and intelligent error compensation and closed-loop verification through the deep coupling of high-precision satellite positioning, lidar, inertial navigation, and real-time visual positioning.

Benefits of technology

It improves the data robustness and environmental adaptability of the surveying and mapping system, enables all-weather, high-precision coordinate acquisition, reduces the computational complexity of the algorithm, ensures the long-term stability and spatial consistency of the surveying and mapping results, and improves construction quality and safety.

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Abstract

本发明属于测量及测绘技术领域,具体涉及一种用于建筑工程的高精度地理信息测绘系统。该系统包括:多源时空感知矩阵模块,同步采集空间坐标、点云及影像数据;环境自适应信号补强单元,通过组合导航算法填补信号中断期间的定位空白;分布式异构数据融合引擎,用于异构数据预处理与高保真建模;动态协同监测与对标模块,计算实测模型与设计模型间的空间偏差;智能误差补偿与闭环校核系统,利用全局优化算法消除累积误差。本发明有效解决了复杂环境下测绘精度低和数据融合效率低的问题,实现了全天候、高精度坐标获取与闭环自校准,显著提升了建筑工程测绘的鲁棒性与智能化水平。
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