Casper van Engelenburg
Papers
3
Total Citations
12
H-Index
2
About
Casper van Engelenburg is a pioneering researcher at the intersection of architecture, robotics, and artificial intelligence, with a primary focus on advancing sustainable construction through automation. His work centers on developing Design-to-Robotic-Production (D2RP) and Design-to-Robotic-Assembly (D2RA) frameworks that integrate computer vision and human-robot collaboration to create reconfigurable, circular building systems. Van Engelenburg’s most cited paper (2022, 8 citations) introduces a novel approach for robotic assembly supported by real-time visual feedback, enabling more adaptive and efficient construction processes. His 2024 work on AI-supported human-building interaction (HBI) at the furniture scale (2 citations) demonstrates how sensor-actuator networks can be enhanced with artificial intelligence to create responsive, reconfigurable environments. Additionally, his research on advancing sustainable approaches through D2RP (2 citations) directly addresses the construction sector’s significant carbon footprint—responsible for approximately 40% of global CO2 emissions—by proposing data-driven circular economy strategies. As a key contributor at the Robotic Building lab, van Engelenburg’s work represents a critical step toward automating sustainable architecture, offering scalable solutions for reducing material waste and energy consumption in the built environment.
Research Focus
Key Achievements
Top Papers
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