面向输电线路建设规划的三维可视化交互系统研究OA
Research on 3D Visualization Interactive System for Transmission Line Construction Planning
现有输电线路建设规化方法仅将二维数据进行简单堆叠后叠加至三维模型进行渲染,未实现多源数据在时空层面的深度融合,可视化效果较差.为此,设计面向输电线路建设规划的三维可视化交互系统,利用地理信息系统(geographic information system,GIS)空间库与线路工程库双核存储单元,经双通道千兆光纤网络与至强E5 服务器架构实现多源数据整合及二次校验;构建熵维度评价模块,借助ASExporer分析平台、高性能服务器集群及实现输电规划多源协同分析,设计三维可视化展示模块,将三维渲染引擎与工程建模工具链集成在三维可视化展示模块中,实现场景图纸一致性、电网参数同步及动态特效驱动.通过能量管理系统(energy management system,EMS)与GIS数据库融合管理,经数据融合计算处理实现电压分布特征三维可视化;依托多源数据关联模型量化耦合度评估先验知识丰富度;利用多源数据采集与协议传输,结合三维引擎计算解析,生成三维路径模型.结果表明,数据采集与展示模块各项操作目标均达成;性能检验表明,模型精度达厘米级,总存储占 313.3 GB,经多技术优化实现交互流畅与存储高效利用.
The existing standardization methods for transmission line construction only simply stack 2D data and overlay it onto a 3D model for rendering,without achieving deep fusion of multi-source data at the spatiotemporal level,resulting in poor visualization effects.For this purpose,it designs a 3D visualization interactive system for transmission line construction planning.Utilizing dual core storage units of GIS spatial library and line engineering library,it achieves multi-source data integration and secondary verification through dual channel gigabit fiber optic network and Xeon E5 server architecture.It constructs an entropy dimension evaluation module,utilizing the ASExporer analysis platform,high-performance server clusters,and implementing multi-source collaborative analysis for transmission planning.It designs a 3D visualization display module that integrates the 3D rendering engine and engineering modeling toolchain into the 3D visualization display module,achieving consistency in scene drawings,synchronization of power grid parameters,and dynamic special effects driving.By integrating EMS(energy management system)and GIS databases for manage-ment,it achieves 3D visualization of voltage distribution characteristics through data fusion calculation and processing.It quantifies the coupling degree and evaluates the prior knowledge richness based on multi-source data association models.Using multi-source data collection and protocol transmission,combined with 3D engine calculation and analysis,it generates a 3D path model.The results indicate that it achieves all operational objectives of the data collection and display module.Performance testing shows that the model accuracy reaches centimeter level,with a total storage usage of 313.3 GB.Through multi technology optimization,it achieves smooth interaction and efficient storage utilization.
金坚;陈成;冯雷;黄秦豪;周秀芳
中国能源建设集团浙江省电力设计院有限公司,浙江 杭州 310012中国能源建设集团浙江省电力设计院有限公司,浙江 杭州 310012中国能源建设集团浙江省电力设计院有限公司,浙江 杭州 310012中国能源建设集团浙江省电力设计院有限公司,浙江 杭州 310012中国能源建设集团浙江省电力设计院有限公司,浙江 杭州 310012
信息技术与安全科学
输电线路三维可视化联合熵空间耦合
transmission lines3D visualizationjoint entropyspatially coupled
《东北电力技术》 2026 (2)
1-5,5
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