基于时间线与观测数据产品结合的二维综合气象观测平台

Mengxing Xu, Hongbin Wang
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引用次数: 0

摘要

将当前气象观测平台所依赖的一维时间轴转化为二维坐标系,即一维,增加多源观测仪器、数据和产品。这个维度显示在某个时间节点发生的观测。多源观测同时垂直排列,以图标或颜色区分。本研究通过实时高效的局部多级细节加载和大规模三维空间数据的自适应多级缓存实现场景的实时显示和渲染,结合OpenGL+Shader的CPU/GPU图形硬件加速渲染技术实现多源观测信息的动态交互。平台从时间的一维升级到时间和观测的二维,大大扩展了自变量的选择和变化空间,因变量的容量也大大增加。理论上,它可以容纳各种观测数据和产品。通过在一个页面上的无缝连接,可以自由调度、切换和叠加各种观测信息,使业务研究人员能够高效、集中地获取全面的气象观测数据产品,并进行分析和应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Two-dimensional Comprehensive Meteorological Observation Platform Based on Combination of Timeline and Observation Data Products
The one-dimensional time axis on which the current meteorological observation platform depends is transformed into a two-dimensional coordinate system, i.e. one dimension, multi-source observation instruments, data and products are added. This dimension shows the observation occurring at a certain time node. The multi-source observations at the same time are vertically arranged to be distinguished by icons or colors. In this study, real-time display and rendering of scenes are realized through real-time efficient local multi-level of detail loading and adaptive multi-level caching of large-scale 3D spatial data and the dynamic interaction of multi-source observation information is realized by combining the CPU/GPU graphics hardware accelerated rendering technology of OpenGL+Shader. The platform is upgraded from one dimension of time to two dimensions of time and observation, which greatly expands the selection and change space of independent variables, thus the capacity of dependent variables is also greatly increased. Theoretically, it can accommodate all kinds of observation data and products. Through seamless connection on one page, it can freely schedule, switch and superimpose all kinds of observation information, enabling business researchers to efficiently and intensively obtain comprehensive meteorological observation data products, and carry out analysis and application.
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