GOF-TTE: Generative Online Federated Learning Framework for Travel Time Estimation
Zhiwen Zhang, Hongjun Wang, Jiyuan Chen, Zipei Fan, Xuan Song, Ryosuke, Shibasaki

TL;DR
GOF-TTE introduces a federated learning framework that preserves user privacy, models real-time traffic, and personalizes travel time predictions, demonstrating effectiveness on real-world taxi datasets.
Contribution
The paper proposes a novel federated learning framework with an online generative model for real-time traffic inference and personalized travel time estimation, addressing privacy and non-IID data challenges.
Findings
Effective travel time estimation on real-world datasets
Enhanced privacy through differential privacy mechanisms
Personalized models improve prediction accuracy
Abstract
Estimating the travel time of a path is an essential topic for intelligent transportation systems. It serves as the foundation for real-world applications, such as traffic monitoring, route planning, and taxi dispatching. However, building a model for such a data-driven task requires a large amount of users' travel information, which directly relates to their privacy and thus is less likely to be shared. The non-Independent and Identically Distributed (non-IID) trajectory data across data owners also make a predictive model extremely challenging to be personalized if we directly apply federated learning. Finally, previous work on travel time estimation does not consider the real-time traffic state of roads, which we argue can significantly influence the prediction. To address the above challenges, we introduce GOF-TTE for the mobile user group, Generative Online Federated Learning…
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Taxonomy
TopicsTraffic Prediction and Management Techniques · Human Mobility and Location-Based Analysis · Transportation Planning and Optimization
MethodsEmirates Airlines Office in Dubai · Balanced Selection
