MAAIGTOct 16, 2012

Toward Large-Scale Agent Guidance in an Urban Taxi Service

arXiv:1210.4849v15 citations
Originality Incremental advance
AI Analysis

This addresses resource wastage in urban taxi services, though it appears incremental in applying existing multiagent planning methods to this domain.

The paper tackles the problem of empty taxi cruising in urban taxi services by analyzing driver behavior and proposing intelligent agent guidance systems. Empirical results show both cooperative and game-theoretic formulations significantly improve service efficiency.

Empty taxi cruising represents a wastage of resources in the context of urban taxi services. In this work, we seek to minimize such wastage. An analysis of a large trace of taxi operations reveals that the services' inefficiency is caused by drivers' greedy cruising behavior. We model the existing system as a continuous time Markov chain. To address the problem, we propose that each taxi be equipped with an intelligent agent that will guide the driver when cruising for passengers. Then, drawing from AI literature on multiagent planning, we explore two possible ways to compute such guidance. The first formulation assumes fully cooperative drivers. This allows us, in principle, to compute systemwide optimal cruising policy. This is modeled as a Markov decision process. The second formulation assumes rational drivers, seeking to maximize their own profit. This is modeled as a stochastic congestion game, a specialization of stochastic games. Nash equilibrium policy is proposed as the solution to the game, where no driver has the incentive to singly deviate from it. Empirical result shows that both formulations improve the efficiency of the service significantly.

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