CubeletWorld: A New Abstraction for Scalable 3D Modeling
Azlaan Mustafa Samad, Hoang H. Nguyen, Lukas Berg, Henrik M\"uller, Yuan Xue, Daniel Kudenko, Zahra Ahmadi

TL;DR
CubeletWorld introduces a 3D grid-based abstraction for urban data modeling that enhances scalability, privacy, and generalizability in city planning and prediction tasks.
Contribution
It presents a novel cubelet-based framework for representing urban environments, enabling privacy-preserving analysis and scalable modeling without agent-driven sensing.
Findings
Effective prediction of cubelet states in urban environments.
Handling sparsity and scalability challenges in high-resolution models.
Enhanced privacy and generalizability over existing methods.
Abstract
Modern cities produce vast streams of heterogeneous data, from infrastructure maps to mobility logs and satellite imagery. However, integrating these sources into coherent spatial models for planning and prediction remains a major challenge. Existing agent-centric methods often rely on direct environmental sensing, limiting scalability and raising privacy concerns. This paper introduces CubeletWorld, a novel framework for representing and analyzing urban environments through a discretized 3D grid of spatial units called cubelets. This abstraction enables privacy-preserving modeling by embedding diverse data signals, such as infrastructure, movement, or environmental indicators, into localized cubelet states. CubeletWorld supports downstream tasks such as planning, navigation, and occupancy prediction without requiring agent-driven sensing. To evaluate this paradigm, we propose the…
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Taxonomy
TopicsHuman Mobility and Location-Based Analysis · Privacy-Preserving Technologies in Data · 3D Modeling in Geospatial Applications
