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Learning to Solve Routing Problems via Distributionally Robust Optimization

Yuan Jiang, Yaoxin Wu, Zhiguang Cao, Jie Zhang

2022Proceedings of the AAAI Conference on Artificial Intelligence29 citationsDOIOpen Access PDF

Abstract

Recent deep models for solving routing problems always assume a single distribution of nodes for training, which severely impairs their cross-distribution generalization ability. In this paper, we exploit group distributionally robust optimization (group DRO) to tackle this issue, where we jointly optimize the weights for different groups of distributions and the parameters for the deep model in an interleaved manner during training. We also design a module based on convolutional neural network, which allows the deep model to learn more informative latent pattern among the nodes. We evaluate the proposed approach on two types of well-known deep models including GCN and POMO. The experimental results on the randomly synthesized instances and the ones from two benchmark dataset (i.e., TSPLib and CVRPLib) demonstrate that our approach could significantly improve the cross-distribution generalization performance over the original models.

Topics & Concepts

GeneralizationBenchmark (surveying)Computer scienceExploitConvolutional neural networkArtificial intelligenceDeep learningRobust optimizationRouting (electronic design automation)Mathematical optimizationMachine learningVehicle routing problemMathematicsComputer networkGeodesyComputer securityMathematical analysisGeographyInfrastructure Maintenance and MonitoringMachine Learning and ELMText and Document Classification Technologies
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