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FlexiReg: Flexible Urban Region Representation Learning

About

The increasing availability of urban data offers new opportunities for learning region representations, which can be used as input to machine learning models for downstream tasks such as check-in or crime prediction. While existing solutions have produced promising results, an issue is their fixed formation of regions and fixed input region features, which may not suit the needs of different downstream tasks. To address this limitation, we propose a model named FlexiReg for urban region representation learning that is flexible with both the formation of urban regions and the input region features. FlexiReg is based on a spatial grid partitioning over the spatial area of interest. It learns representations for the grid cells, leveraging publicly accessible data, including POI, land use, satellite imagery, and street view imagery. We propose adaptive aggregation to fuse the cell representations and prompt learning techniques to tailor the representations towards different tasks, addressing the needs of varying formations of urban regions and downstream tasks. Extensive experiments on five real-world datasets demonstrate that FlexiReg outperforms state-of-the-art models by up to 202% in term of the accuracy of four diverse downstream tasks using the produced urban region representations.

Fengze Sun, Yanchuan Chang, Egemen Tanin, Shanika Karunasekera, Jianzhong Qi• 2025

Related benchmarks

TaskDatasetResultRank
Check-in PredictionNYC Target from CHI & SF
R^20.754
24
Carbon PredictionNYC Target from CHI & SF
R^20.467
16
Nightlight PredictionNYC Target from CHI & SF
R^20.859
16
Population PredictionNYC Target from CHI & SF
R^20.733
16
Service Call PredictionNYC Target from CHI & SF
R^20.669
16
Crime PredictionNYC Target from CHI & SF
R^20.708
16
Crime PredictionChicago Crime (test)
MAE61.7
11
Service Call PredictionChicago Service Call (test)
MAE121.1
11
Check-in PredictionChicago Check-in (test)
MAE922
11
Check-in PredictionNYC
MAE187.3
8
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