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Spatial and temporal processes visualization for marine environmental data using particle system

机译:使用粒子系统对海洋环境数据进行时空过程可视化

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摘要

Many observation methods have been employed to monitor the changes in the ecological environment. Marine environment monitoring data have characteristics of complex diversity, high spatial-resolution, high time-frequency, and multi-level free-surface depth. In this study, we constructed a three-dimensional temporal-spatial visualization model to express the spatial-temporal variations using particle system. For the temporal dimension, we visualized the dynamic real-time changes by changing properties such as particle color, displacement, and size by calculating the difference between the data at adjacent points in time in different frames. To achieve high quality dynamic display, we introduced the CUDA (Compute Unified Device Architecture) parallel computing model to realize large-scale particle change visualization. This model reduced the CPU load and significantly improved the frame rate. Moreover, this model provides virtual simulation and user interaction rendering, which can dynamically change the environment data type, rendering mode, drawing profiles, and other functions. Finally, we integrated the model as a system component into China's offshore environmental data monitoring and management platform.
机译:已经采用了许多观察方法来监测生态环境的变化。海洋环境监测数据具有多样性多样,空间分辨率高,时频高,自由表面深度多层次的特点。在这项研究中,我们构建了一个三维时空可视化模型来表达使用粒子系统的时空变化。对于时间维度,我们通过计算不同帧中相邻时间点的数据之间的差异,通过更改诸如粒子颜色,位移和大小之类的属性来可视化动态实时变化。为了实现高质量的动态显示,我们引入了CUDA(计算机统一设备架构)并行计算模型,以实现大规模的粒子变化可视化。该模型减少了CPU负载并显着提高了帧速率。而且,该模型提供了虚拟仿真和用户交互渲染,可以动态更改环境数据类型,渲染模式,图形轮廓和其他功能。最后,我们将该模型作为系统组件集成到了中国的离岸环境数据监控和管理平台中。

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