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arXiv AI

Polymorphic Fourier-Based Encoding of Geospatial Objects for GeoAI Applications

By Advanced AI EditorMay 13, 2025No Comments2 Mins Read
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[Submitted on 27 Aug 2024 (v1), last revised 11 May 2025 (this version, v2)]

View a PDF of the paper titled Poly2Vec: Polymorphic Fourier-Based Encoding of Geospatial Objects for GeoAI Applications, by Maria Despoina Siampou and 4 other authors

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Abstract:Encoding geospatial objects is fundamental for geospatial artificial intelligence (GeoAI) applications, which leverage machine learning (ML) models to analyze spatial information. Common approaches transform each object into known formats, like image and text, for compatibility with ML models. However, this process often discards crucial spatial information, such as the object’s position relative to the entire space, reducing downstream task effectiveness. Alternative encoding methods that preserve some spatial properties are often devised for specific data objects (e.g., point encoders), making them unsuitable for tasks that involve different data types (i.e., points, polylines, and polygons). To this end, we propose Poly2Vec, a polymorphic Fourier-based encoding approach that unifies the representation of geospatial objects, while preserving the essential spatial properties. Poly2Vec incorporates a learned fusion module that adaptively integrates the magnitude and phase of the Fourier transform for different tasks and geometries. We evaluate Poly2Vec on five diverse tasks, organized into two categories. The first empirically demonstrates that Poly2Vec consistently outperforms object-specific baselines in preserving three key spatial relationships: topology, direction, and distance. The second shows that integrating Poly2Vec into a state-of-the-art GeoAI workflow improves the performance in two popular tasks: population prediction and land use inference.

Submission history

From: Maria Despoina Siampou [view email]
[v1]
Tue, 27 Aug 2024 06:28:35 UTC (4,398 KB)
[v2]
Sun, 11 May 2025 20:07:55 UTC (3,201 KB)



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