Human Aspects in Collaborative Order Picking - What if Robots Learned How to Give Humans a Break?
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[1] Debjit Roy,et al. Estimating performance in a Robotic Mobile Fulfillment System , 2017, Eur. J. Oper. Res..
[2] Nils Boysen,et al. Parts-to-picker based order processing in a rack-moving mobile robots environment , 2017, Eur. J. Oper. Res..
[3] Stephen C. Graves,et al. Velocity‐Based Storage Assignment in Semi‐Automated Storage Systems , 2018 .
[4] Christoph H. Glock,et al. Human factors in order picking: a content analysis of the literature , 2017, Int. J. Prod. Res..
[5] Zhe Yuan,et al. Assignment rules in robotic mobile fulfilment systems for online retailers , 2017, Int. J. Prod. Res..
[6] Yiming Yang,et al. Travel time models for the rack-moving mobile robot system , 2020, Int. J. Prod. Res..
[7] R. Negenborn,et al. Human Aspects in Collaborative Order Picking - Letting Robotic Agents Learn About Human Discomfort , 2020, IEEE International Symposium on Multimedia.
[8] Christoph H. Glock,et al. Incorporating human factors in order picking planning models: framework and research opportunities , 2015 .
[9] Fadel M. Megahed,et al. A data analytic framework for physical fatigue management using wearable sensors , 2020, Expert Syst. Appl..
[10] Armando Barreto,et al. Off-line and On-line Stress Detection Through Processing of the Pupil Diameter Signal , 2013, Annals of Biomedical Engineering.
[11] Debjit Roy,et al. Robot-storage zone assignment strategies in mobile fulfillment systems , 2019, Transportation Research Part E: Logistics and Transportation Review.
[12] Yang Gao,et al. Multiagent Reinforcement Learning With Sparse Interactions by Negotiation and Knowledge Transfer , 2015, IEEE Transactions on Cybernetics.
[13] Nils Boysen,et al. Storage Assignment with Rack-Moving Mobile Robots in KIVA Warehouses , 2018, Transp. Sci..
[14] Kees Jan Roodbergen,et al. Managing warehouse efficiency and worker discomfort through enhanced storage assignment decisions , 2017, Int. J. Prod. Res..