Konrad Banachowicz
Papers
14
Total Citations
202
H-Index
9
About
Konrad Banachowicz is a robotics researcher whose work centers on advancing control systems for service and assistive robots, with a particular focus on impedance control, redundant manipulators, and autonomous interaction with human environments. His most influential contributions address the challenging problem of robots performing dexterous, contact-rich tasks—most notably, opening doors and cabinets using impedance-controlled, 7-DOF redundant arms. His 2013 paper on this topic (25 citations) and its 2014 follow-up on multi-sensory feedback control (27 citations) have become foundational references in the field. Banachowicz also made significant strides in robot control system modeling, developing the Embodied Agent-based Robot control system modelling Language (EARL) in 2020 (15 citations), which facilitates model-driven software development for complex robotic systems. His work on grasp planning under external wrenches (2015, 16 citations) further demonstrates his commitment to real-world manipulation. With a total of over 175 citations across his most-cited papers, Banachowicz has established himself as a key figure in variable structure control and reactive torque-based task hierarchies, contributing to the broader goal of making service robots safe, adaptable, and capable of operating in unstructured human environments.
Research Focus
Key Achievements
Top Papers
- 1Variable structure robot control systems: The RAPP approach35 citations · 2017
- 2Multi-sensory Feedback Control in Door Approaching and Opening27 citations · 2014
- 3Opening a door with a redundant impedance controlled robot25 citations · 2013
- 4
- 5EARL—Embodied Agent-Based Robot Control Systems Modelling Language15 citations · 2020
- 6Research Oriented Motor Controllers for Robotic Applications14 citations · 2012
- 7Two Mode Impedance Control of Velma Service Robot Redundant Arm14 citations · 2015
- 8Distributed NAO robot navigation system in the hazard detection application12 citations · 2016
- 93D Camera and Lidar Utilization for Mobile Robot Navigation9 citations · 2013
- 10