A bidirectional discrete flow matching model, SynBridge, predicts reaction products and reactants on graph representations and reports state-of-the-art Top-k accuracy on USPTO-50K, USPTO-MIT, and Pistachio.
A Recursive Logit Model with Choice Aversion and Its Application to Transportation Networks
1 Pith paper cite this work. Polarity classification is still indexing.
abstract
We propose a recursive logit model which captures the notion of choice aversion by imposing a penalty term that accounts for the dimension of the choice set at each node of the transportation network. We make three contributions. First, we show that our model overcomes the correlation problem between routes, a common pitfall of traditional logit models, and that the choice aversion model can be seen as an alternative to these models. Second, we show how our model can generate violations of regularity in the path choice probabilities. In particular, we show that removing edges in the network may decrease the probability for existing paths. Finally, we show that under the presence of choice aversion, adding edges to the network can make users worse off. In other words, a type of Braess's paradox can emerge outside of congestion and can be characterized in terms of a parameter that measures users' degree of choice aversion. We validate these contributions by estimating this parameter over GPS traffic data captured on a real-world transportation network.
citation-role summary
citation-polarity summary
fields
cs.LG 1years
2025 1verdicts
CONDITIONAL 1roles
background 1polarities
unclear 1representative citing papers
citing papers explorer
-
SynBridge: Bridging Reaction States via Discrete Flow for Bidirectional Reaction Prediction
A bidirectional discrete flow matching model, SynBridge, predicts reaction products and reactants on graph representations and reports state-of-the-art Top-k accuracy on USPTO-50K, USPTO-MIT, and Pistachio.