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Stochastic ridesharing equilibrium problem with compensation optimization
Tongfei Li
,
Min Xu
, Huijun Sun
, Jie Xiong
, Xueping Dou
Department of Industrial and Systems Engineering
The Hong Kong Polytechnic University
Research output
:
Journal article publication
›
Journal article
›
Academic research
›
peer-review
29
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Citations (Scopus)
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Dive into the research topics of 'Stochastic ridesharing equilibrium problem with compensation optimization'. Together they form a unique fingerprint.
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Keyphrases
Equilibrium Problem
100%
Ridesharing
100%
Travellers
66%
Equilibrium Principle
66%
Stochastic User Equilibrium
50%
Multiple Objective Optimization
50%
Politicians
33%
Route Choice
33%
Mode Choice
33%
Decision-making Problem
33%
Cost Function
16%
Travel Cost
16%
Rational Pricing
16%
Variational Inequality
16%
Numerical Experiments
16%
Information-centric
16%
Optimization Model
16%
Value of Time
16%
User Equilibrium
16%
Pareto Optimal Solution
16%
Experiment-based
16%
Pollution Emission
16%
Choice Behavior
16%
Car Ownership
16%
Effective Decision-making
16%
Complementarity Constraints
16%
Behavior-based
16%
Total Travel Cost
16%
Mathematical Problems
16%
Wardrop User Equilibrium
16%
Traffic-related Air Pollution
16%
Traffic Manager
16%
Decision-making Strategy
16%
Traffic Rules
16%
Perceived Information
16%
Mixed Complementarity Problem
16%
Improved Non-dominated Sorting Genetic Algorithm
16%
Air Pollution Emissions
16%
Urban Traffic Pollution
16%
Urban Traffic System
16%
Traveler Heterogeneity
16%
Urban Congestion
16%
Engineering
Policy Maker
100%
Making Problem
100%
Urban Traffic
100%
Bi-Objective Optimization
100%
Numerical Experiment
50%
Non-Dominated Sorting Genetic Algorithm II
50%
Objective Optimization
50%
Cost Function
50%
Pareto Optimal Solution
50%
Air Pollution
50%
Equilibrium Model
50%
Economics, Econometrics and Finance
Cost Function
100%
Equilibrium Model
100%
Traffic Congestion
100%
Pricing
100%
Ownership
100%
Genetic Algorithm
100%
Computer Science
Choice Behavior
100%
Decision-Making
100%
Objective Optimization
100%
Single Objective
33%
Desired Solution
33%
Non-Dominated Sorting Genetic Algorithm II
33%
Traffic Manager
33%
Pareto-optimality
33%
Mathematical Problem
33%
Equilibrium Model
33%
Air Pollution
33%
Mathematics
Equilibrium Problem
100%
Stochastics
100%
Route Choice
50%
Complementarity Problem
25%
Cost Function
25%
Asymmetric
25%
Pareto Optimal
25%
Minimizes
25%
Variational Inequality
25%
Numerical Experiment
25%
Genetic Algorithm
25%
Equilibrium Model
25%
Social Sciences
Stochastics
100%
Decision Making
100%
Optimization Model
66%
Urban Traffic
33%
Traffic Congestion
16%
Air Pollution
16%
Ownership
16%
Pricing
16%
Genetic Algorithm
16%
Equilibrium Model
16%