Route-cost-assignment with joint user and operator behavior as a many-to-one stable matching assignment game
arXiv:1711.11230 · doi:10.1016/j.trb.2019.04.008
Abstract
We propose a generalized market equilibrium model using assignment game criteria for evaluating transportation systems that consist of both operators' and users' decisions. The model finds stable pricing, in terms of generalized costs, and matches between user populations in a network to set of routes with line capacities. The proposed model gives a set of stable outcomes instead of single point pricing that allows operators to design ticket pricing, routes/schedules that impact access/egress, shared policies that impact wait/transfer costs, etc., based on a desired mechanism or policy. The set of stable outcomes is proven to be convex from which assignment-dependent unique user-optimal and operator-optimal outcomes can be obtained. Different user groups can benefit from using this model in a prescriptive manner or within a sequential design process. We look at several different examples to test our model: small examples of fixed transit routes and a case study using a small subset of taxi data in NYC. The case study illustrates how one can use the model to evaluate a policy that can require passengers to walk up to 1 block away to meet with a shared taxi without turning away passengers.
References in corpus (4)
- A dynamic ridesharing dispatch and idle vehicle repositioning strategy with integrated transit transfers
- A Decomposition Algorithm to Solve the Multi-Hop Peer-to-Peer Ride-Matching Problem
- Fair cost allocation for ridesharing services - modeling, mathematical programming and an algorithm to find the nucleolus
- Network learning via multi-agent inverse transportation problems
Cited by in corpus (12)
- Decentralized Ride-Sharing and Vehicle-Pooling Based on Fair Cost-Sharing Mechanisms
- A many-to-many assignment game and stable outcome algorithm to evaluate collaborative Mobility-as-a-Service platforms
- A user-operator assignment game with heterogeneous user groups for empirical evaluation of a microtransit service in Luxembourg
- On-demand Mobility-as-a-Service platform assignment games with guaranteed stable outcomes
- Design and Stability Analysis of a Shared Mobility Market
- Mobility operator service capacity sharing contract design to risk-pool against network disruptions
- A stochastic user-operator assignment game for microtransit service evaluation: A case study of Kussbus in Luxembourg
- Book-Ahead & Supply Management for Ridesourcing Platforms
- Distance-based subsidy rate design to incentivize ride-hail access to advanced air mobility hubs
- Bilevel subsidy-enabled mobility hub network design with perturbed utility coalitional choice-based assignment
- Integrated ridesharing services with chance-constrained dynamic pricing and demand learning
- How to split the costs among travellers sharing a ride? Aligning system's optimum with users' equilibrium