基于软件开发框架(Qt)的航空放射性测量测线离线编辑软件开发OA
Development of an offline flight line editing software for airborne radioactive survey based on development framework(Qt)
航空放射性测量是资源勘查与环境监测的重要手段,其作业流程中,飞行测线数据的预处理长期依赖人工操作,工作效率低.尤其是在无人机或无人值守作业模式下,操作员无法实时管理测线数据,导致后期必须手动删除无效航迹点位的数据、修正线号,工作繁复且易错.为此,设计并实现了一套基于Qt框架的测线裁剪与线号自动匹配软件.该软件采用C++语言开发,利用Qt框架实现设计线与航迹的可视化叠加显示,并支持交互式裁剪.软件通过项目文件(.proj)统一管理测区数据,其JSON结构集成了设计线信息、架次数据及编辑状态,支持完整工作流程的保存与恢复.核心功能包括:基于多边形选区与基点号范围内的数据裁剪、线号自动匹配和重复飞行测线的线号编制,以及批量线号编辑与数据导出.此软件有效解决了传统作业中人工裁剪效率低、线号管理容易混乱的问题,实现了航测数据预处理的自动化与可视化.实际应用表明,该软件显著提升了数据处理的效率,为航空放射性测量无人化作业提供可靠技术支撑.
Airborne radiation survey serves as a crucial technique for resource exploration and environmental monitoring.However,the preprocessing of flight line data within its operational workflow has long relied on manual operations,resulting in low efficiency.Particularly under unmanned aerial vehicle(UAV)or unattended operation modes,operators are unable to manage line data in real time.This necessitates the manual removal of invalid track points and correction of line numbers during post-processing,which is a tedious and error-prone task.To address these issues,this paper presents the design and implementation of a flight line clipping and line number auto-matching software based on the Qt framework.Developed in the C++language,the software utilizes the Qt framework to achieve visualized overlay display of designed lines and flight tracks,and supports interactive clipping.It employs a project file(.proj)to uniformly manage survey area data.The JSON-structured project file integrates design line information,flight sortie data,and editing status,supporting the saving and restoration of the complete workflow.Core functionalities include:data clipping based on polygonal selection and point number range,automatic line number matching,line number assignment for repeated flight lines,as well as batch line number editing and data export.This software effectively tackles the problems of low efficiency in manual clipping and chaotic line number management inherent in traditional workflows,realizing the automation and visualization of airborne survey data preprocessing.Ractical application has demonstrated that the software significantly enhances data processing efficiency,providing reliable technical support for the unmanned operation of airborne radiation surveys.
邓雪莹;张文峰;王浩然;安政伟;宋振涛
核工业航测遥感中心,河北 石家庄 050002||中核集团核应急航空监测工程技术研究中心,河北 石家庄 050002核工业航测遥感中心,河北 石家庄 050002||中核集团核应急航空监测工程技术研究中心,河北 石家庄 050002核工业航测遥感中心,河北 石家庄 050002||中核集团核应急航空监测工程技术研究中心,河北 石家庄 050002核工业航测遥感中心,河北 石家庄 050002||中核集团核应急航空监测工程技术研究中心,河北 石家庄 050002核工业航测遥感中心,河北 石家庄 050002||中核集团核应急航空监测工程技术研究中心,河北 石家庄 050002
天文与地球科学
航空放射性测量测线裁剪软件开发框架(Qt)可视化交互自动化
airborne radiation surveyflight line clippingdevelopment framework(Qt)visual interactionautomation
《世界核地质科学》 2026 (1)
79-87,9
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