Papers
17
Total Citations
1,487
H-Index
12
About
Arne Bilberg is a leading researcher in advanced manufacturing, human-robot collaboration (HRC), and intelligent automation, whose work has fundamentally shaped how industry approaches the integration of humans and robots in production environments. Based at the University of Southern Denmark, Bilberg has pioneered the application of digital twin technology to collaborative robotics, with his landmark 2019 paper "Digital Twin Driven Human–Robot Collaborative Assembly" amassing 387 citations and establishing a foundational framework for simulation-based design of hybrid workspaces. His early contributions to tactile sensing — particularly flexible sensor design for object classification — demonstrated remarkable versatility, earning over 270 citations across two related publications. Bilberg's prolific 2019 output, spanning virtual reality in manufacturing, complexity-based task allocation, and reference models for human-robot interaction, reflects a sustained effort to make collaborative robots practically deployable in real industrial settings. His lean automation framework (2017) further bridges theoretical research and shop-floor implementation. With a cumulative citation count exceeding 1,400 across his top works, Bilberg's research has profoundly influenced how engineers and manufacturers conceptualize flexible, human-centered automation — making his scholarship essential reading for anyone entering the fields of smart manufacturing or collaborative robotics.
Research Focus
Key Achievements
Top Papers
- 1Digital twin driven human–robot collaborative assembly387 citations · 2019
- 2
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- 4Digital twins of human robot collaboration in a production setting189 citations · 2018
- 5Complexity-based task allocation in human-robot collaborative assembly169 citations · 2019
- 6Developing a reference model for human–robot interaction69 citations · 2019
- 7
- 8Classification of rigid and deformable objects using a novel tactile sensor56 citations · 2011
- 9
- 10Advances in machine vision for flexible feeding of assembly parts27 citations · 2019