JOURNAL ARTICLE

Resource Constrained Deep Reinforcement Learning

Abhinav BhatiaPradeep VarakanthamAkshat Kumar

Year: 2018 Journal:   arXiv (Cornell University) Vol: 29 Pages: 610-620   Publisher: Cornell University

Abstract

In urban environments, supply resources have to be constantly matched to the "right" locations (where customer demand is present) so as to improve quality of life. For instance, ambulances have to be matched to base stations regularly so as to reduce response time for emergency incidents in EMS (Emergency Management Systems); vehicles (cars, bikes, scooters etc.) have to be matched to docking stations so as to reduce lost demand in shared mobility systems. Such problem domains are challenging owing to the demand uncertainty, combinatorial action spaces (due to allocation) and constraints on allocation of resources (e.g., total resources, minimum and maximum number of resources at locations and regions). Existing systems typically employ myopic and greedy optimization approaches to optimize allocation of supply resources to locations. Such approaches typically are unable to handle surges or variances in demand patterns well. Recent research has demonstrated the ability of Deep RL methods in adapting well to highly uncertain environments. However, existing Deep RL methods are unable to handle combinatorial action spaces and constraints on allocation of resources. To that end, we have developed three approaches on top of the well known actor critic approach, DDPG (Deep Deterministic Policy Gradient) that are able to handle constraints on resource allocation. More importantly, we demonstrate that they are able to outperform leading approaches on simulators validated on semi-real and real data sets.

Keywords:
Computer science Reinforcement learning Resource allocation Resource management (computing) Mathematical optimization Greedy algorithm Resource (disambiguation) Operations research Distributed computing Artificial intelligence Computer network Engineering Mathematics

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Citation History

Topics

Traffic control and management
Physical Sciences →  Engineering →  Control and Systems Engineering
Transportation and Mobility Innovations
Physical Sciences →  Engineering →  Automotive Engineering

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