Abstract:
This paper studies a robotic mobile fulfillment system (RMFS) featured by robots transporting movables shelves to order pickers. The RMFS can increase productivity, reduc...Show MoreMetadata
Abstract:
This paper studies a robotic mobile fulfillment system (RMFS) featured by robots transporting movables shelves to order pickers. The RMFS can increase productivity, reduce costs, increase order picking accuracy, and improve operational flexibility. We build queue network models to describe the RMFS with two protocols in sharing robots for pickers, propose the corresponding algorithms, conduct numerical analyses, and evaluate the performance of the RMFS by calculating the throughput time. We then calculate the optimal number and the velocity of robots, and provide the effective design rules for the RMFS.
Published in: IEEE Transactions on Engineering Management ( Volume: 64, Issue: 1, February 2017)
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- IEEE Keywords
- Index Terms
- Queueing System ,
- Velocity Of The Robot ,
- Throughput Time ,
- Analytical Results ,
- Simulation Results ,
- Time-variant ,
- Time Delay ,
- Time Model ,
- Decreasing Function ,
- Network Operators ,
- Online Shopping ,
- Feasible Set ,
- Poisson Process ,
- Service Time ,
- Stability Analysis Of Systems ,
- Robot Model ,
- Average Bias ,
- Automated Guided Vehicles ,
- Order Fulfilment ,
- Systemic Congestion
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Queueing System ,
- Velocity Of The Robot ,
- Throughput Time ,
- Analytical Results ,
- Simulation Results ,
- Time-variant ,
- Time Delay ,
- Time Model ,
- Decreasing Function ,
- Network Operators ,
- Online Shopping ,
- Feasible Set ,
- Poisson Process ,
- Service Time ,
- Stability Analysis Of Systems ,
- Robot Model ,
- Average Bias ,
- Automated Guided Vehicles ,
- Order Fulfilment ,
- Systemic Congestion
- Author Keywords