Digital twin-driven deep reinforcement learning for adaptive task allocation in robotic construction

Author:

Lee Dongmin,Lee SangHyun,Masoud Neda,Krishnan M.S.,Li Victor C.

Publisher

Elsevier BV

Subject

Artificial Intelligence,Information Systems,Building and Construction

Reference78 articles.

1. 2019 Worker Shortage Survey Analysis, 2019. https://www.agc.org/sites/default/files/Files/Communications/2019 Worker Shortage Survey Analysis.pdf.

2. An Aging Workforce and Injury in the Construction Industry;Schwatka;Epidemiol. Rev.,2012

3. F. Barbosa, J. Woetzel, J. Mischke, M. Ribeirinho, M. Sridhar, M. Parsons, N. Bertram, S. Brown, Reinventing Construction: A Route To Higher Productivity, McKinsey & Company. (2017) 12. http://www.mckinsey.com/industries/capital-projects-and-infrastructure/our-insights/reinventing-construction-through-a-productivity-revolution%0Awww.revalue.dk.

4. An adaptive deep reinforcement learning framework enables curling robots with human-like performance in real-world conditions;Won;Sci. Rob.,2020

5. An adaptive deep reinforcement learning approach for MIMO PID control of mobile robots;Carlucho;ISA Trans.,2020

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