ScaleFree: Dynamic KDE for Multiscale Point Cloud Exploration in VR
Lixiang Zhao, Fuqi Xie, Tobias Isenberg, Hai-Ning Liang, Lingyun Yu

TL;DR
ScaleFree introduces a GPU-accelerated, adaptive KDE method enabling real-time, multiscale point cloud exploration in VR, effectively handling large datasets and complex structures with improved accuracy and performance.
Contribution
The paper presents a novel GPU-based adaptive KDE algorithm that dynamically generates continuous density fields for multiscale point cloud exploration in VR, overcoming previous computational limitations.
Findings
Achieves significant speedups over CPU baselines.
Improves accuracy and efficiency in multiscale selection tasks.
Enables real-time, interactive exploration of large scientific datasets.
Abstract
We present ScaleFree, a GPU-accelerated adaptive Kernel Density Estimation (KDE) algorithm for scalable, interactive multiscale point cloud exploration. With this technique, we cater to the massive datasets and complex multiscale structures in advanced scientific computing, such as cosmological simulations with billions of particles. Effective exploration of such data requires a full 3D understanding of spatial structures, a capability for which immersive environments such as VR are particularly well suited. However, simultaneously supporting global multiscale context and fine-grained local detail remains a significant challenge. A key difficulty lies in dynamically generating continuous density fields from point clouds to facilitate the seamless scale transitions: while KDE is widely used, precomputed fields restrict the accuracy of interaction and omit fine-scale structures, while…
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Taxonomy
TopicsComputer Graphics and Visualization Techniques · Topological and Geometric Data Analysis · 3D Shape Modeling and Analysis
