Papers
5
Total Citations
65
H-Index
4
About
Robin Scott’s research bridges space robotics, precision agriculture, and urban search and rescue (USAR), with a focus on developing novel mechanical systems for challenging environments. His most cited work, “External Force Estimation for Teleoperation Based on Proprioceptive Sensors” (2014, 22 citations), introduces a sensorless method for force feedback in telerobotic control within radioactive settings, eliminating the need for costly force/torque sensors. This contribution is critical for enhancing operator situational awareness in hazardous operations. Scott also led the design of the AgriRover (2020, 21 citations), a mechatronic platform repurposing space robotics technology for precision farming, demonstrating cross-domain innovation. His earlier work includes the sweep-extend mechanism (2011, 11 citations), a 10-bar linkage inspired by biological burrowing, and the Bidi-bot (2012, 7 citations), a debris-clearing mechanism for mobile search and rescue robots. These designs address mobility and penetration challenges in unstructured terrains, from collapsed buildings to loose debris. Scott’s research is characterized by practical, biologically inspired solutions that advance robotic autonomy and safety in extreme environments.
Research Focus
Key Achievements
Top Papers
- 1External Force Estimation for Teleoperation Based on Proprioceptive Sensors22 citations · 2014
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- 5A Novel USAR Digging Mechanism4 citations · 2006