LightPath: Lightweight and Scalable Path Representation Learning
Sean Bin Yang, Jilin Hu, Chenjuan Guo, Bin Yang, Christian S., Jensen

TL;DR
LightPath is a novel framework for path representation learning that emphasizes lightweight design and scalability, enabling efficient processing in resource-constrained environments without sacrificing accuracy.
Contribution
The paper introduces a scalable, resource-efficient path representation learning framework with a sparse auto-encoder, relational reasoning, and knowledge distillation, addressing limitations of prior accuracy-focused methods.
Findings
Achieves high accuracy with reduced resource consumption.
Demonstrates scalability to longer paths.
Outperforms existing methods in efficiency and effectiveness.
Abstract
Movement paths are used widely in intelligent transportation and smart city applications. To serve such applications, path representation learning aims to provide compact representations of paths that enable efficient and accurate operations when used for different downstream tasks such as path ranking and travel cost estimation. In many cases, it is attractive that the path representation learning is lightweight and scalable; in resource-limited environments and under green computing limitations, it is essential. Yet, existing path representation learning studies focus on accuracy and pay at most secondary attention to resource consumption and scalability. We propose a lightweight and scalable path representation learning framework, termed LightPath, that aims to reduce resource consumption and achieve scalability without affecting accuracy, thus enabling broader applicability. More…
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Taxonomy
TopicsTraffic Prediction and Management Techniques · Transportation Planning and Optimization · Infrastructure Maintenance and Monitoring
MethodsEmirates Airlines Office in Dubai · Knowledge Distillation · Focus
