测绘通报 ›› 2026, Vol. 0 ›› Issue (4): 54-59.doi: 10.13474/j.cnki.11-2246.2026.0408

• 测绘地理信息赋能低空经济 • 上一篇    下一篇

面向低空复杂环境的多源异构数据的时空立方体聚合与存算一体化方法

郭为人1, 徐斌峰2, 刘柄宏2, 王建邦2, 郝君3   

  1. 1. 温州市自然资源和规划信息中心, 浙江 温州 325000;
    2. 浙江省测绘科学技术研究院, 浙江 杭州 310000;
    3. 浙江安防职业技术学院, 浙江 温州 325000
  • 收稿日期:2025-01-14 发布日期:2026-05-12
  • 通讯作者: 刘柄宏。E-mail:234237775@qq.com
  • 作者简介:郭为人(1969—),男,高级工程师,主要从事地理信息系统研究工作。E-mail:gwr@vip.163.com

Spatio-temporal cube aggregation and integrated storage and computation method for multi-source heterogeneous data in complex low-altitude environments

GUO Weiren1, XU Binfeng2, LIU Binghong2, WANG Jianbang2, HAO Jun3   

  1. 1. Wenzhou Natural Resources and Planning Information Center, Wenzhou 325000, China;
    2. Zhejiang Academy of Surveying and Mapping, Hangzhou 310000, China;
    3. Zhejiang College of Security Technology, Wenzhou 325000, China
  • Received:2025-01-14 Published:2026-05-12

摘要: 针对低空复杂环境下多源异构数据立体融合困难与高并发存取瓶颈问题,本文提出了一种基于GeoSOT-3D的低空时空立方体聚合模型(LAST-Cube)。首先,构建面向近地密集障碍环境的高精度立体剖分体系,提出了静态障碍物保守体素化与动态流数据时空管映射算法,建立了多源异构数据的逻辑归一化表达机制;然后,设计动静分离的双表存储架构与顾及负载均衡的时空线性化RowKey,基于HBase构建存算一体化检索机制。试验验证表明,该方法在亿级轨迹规模下的写入吞吐量较PostGIS提升约13倍,并在复杂立体碰撞检测中实现了毫秒级响应。该模型有效解决了低空大数据的时空融合与高效计算难题,可为低空空域的精细化管控提供有力支撑。

关键词: 低空经济, GeoSOT-3D, 时空立方体, 多源异构数据, 存算一体化

Abstract: To address the difficulties in 3D fusion of multi-source heterogeneous data and bottlenecks in high-concurrency access within complex low-altitude environments,a Low-Altitude Spatio-Temporal Cube aggregation model (LAST-Cube)based on GeoSOT-3D is proposed.First,a high-precision 3D subdivision framework for near-ground dense obstacle environments was constructed.Algorithms for conservative voxelization of static obstacles and spatio-temporal tube mapping for dynamic flow data were developed to establish a logical normalization mechanism for heterogeneous data.Second,a dual-table storage architecture with dynamic-static separation and a spatio-temporal linearized RowKey considering load balancing were designed,creating a storage-computation integrated retrieval mechanism based on HBase.Experiments demonstrate that the write throughput of the proposed method is approximately 13 times higher than that of PostGIS under a scale of hundreds of millions of trajectories,and it achieves millisecond-level response times for complex 3D collision detection.The proposed model effectively resolves the challenges of efficient organization and computation of low-altitude data,providing robust support for the refined management and control of low-altitude airspace.

Key words: low-altitude economy, GeoSOT-3D, spatio-temporal cube, multi-source heterogeneous data, storage-computation integration

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