Papers
14
Total Citations
380
H-Index
7
About
Oliver Porges is a robotics researcher whose work spans space robotics, robotic manipulation, and autonomous systems — fields in which he has made substantial contributions recognized by over 360 cumulative citations. His most influential work addresses the unique challenges of operating robots in extraterrestrial and orbital environments, including the landmark "Towards Autonomous Planetary Exploration" (2017, 88 citations), which tackles the formidable engineering constraints imposed by deep-space communication delays and harsh planetary conditions. His development of the OOS-SIM facility (2015, 78 citations) provided the global space robotics community with a critical ground-based simulation platform for testing on-orbit servicing missions. Porges also advanced foundational techniques in robotic reachability and capability analysis (2013, 64 citations), enabling more intelligent placement and motion planning for manipulator systems. His applied work contributed directly to ESA's e.deorbit mission concept, designing robotic systems capable of capturing and de-orbiting defunct satellites like ENVISAT. Beyond space applications, Porges has explored humanoid robot teleoperation for assistive living, integrated grasp-motion planning, and multi-contact locomotion — demonstrating a breadth of expertise that bridges theoretical robotics with real-world, high-stakes deployment.
Research Focus
Key Achievements
Top Papers
- 1Towards Autonomous Planetary Exploration88 citations · 2017
- 2
- 3Reachability and Capability Analysis for Manipulation Tasks64 citations · 2013
- 4
- 5Integrated grasp and motion planning using independent contact regions33 citations · 2014
- 6Reachability and Dexterity: Analysis and Applications for Space Robotics24 citations · 2015
- 7Multi-contact planning and control for a torque-controlled humanoid robot20 citations · 2016
- 8
- 9Robotic Capture and De-Orbit of a Heavy, Uncooperative and Tumbling Target in Low Earth Orbit7 citations · 2015
- 10Interpreting Manipulation Actions: From Language to Execution6 citations · 2015