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Drone-Based Material Transfer System in a Robotic Mobile Fulfillment Center

Andy Ham

Year
2019
Citations
31

Abstract

Deploying unmanned aerial vehicles, also known as drones, for final-mile delivery in logistics operations has inspired this research. One conceivable scenario is to use the drone to transfer jobs in a robotic mobile fulfillment center. Each job might be characterized by origin, destination, time window, and precedence relation. In particular, a take-away conveyor is continuously pushing forward shipping cartons, wherein drones must pick up jobs and drop them off to the cartons within the time window since the cartons would be closed and labeled at the end of the conveyor. Furthermore, each job contains two subtransfers for drone: flight from drone's current location to pickup location and flight to dropoff location. Two exact approaches are proposed-a mixed integer programming and a constraint programming-and tested for a real-time perspective.

Keywords

DroneCartonPickupComputer scienceWindow (computing)EngineeringLast mile (transportation)Mobile robotReal-time computingSimulation

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