Papers
43
Total Citations
1,395
H-Index
18
About
Lorenzo Marconi is a prominent robotics and control systems researcher whose work has fundamentally shaped the field of aerial robotics and human-robot collaboration. Based at the University of Bologna, Marconi has made landmark contributions to the design, modeling, and control of aerial manipulators — innovative systems combining quadrotor UAVs with robotic arms capable of physical interaction with their environment. His 2014 prototype development paper (164 citations) and complementary work on impedance control and contact inspection have established foundational frameworks that researchers worldwide continue to build upon. Marconi's research extends beyond aerial manipulation into critical real-world applications, most notably search and rescue robotics. His leadership in the European SHERPA project (129 citations) demonstrated visionary thinking about mixed ground-aerial robotic platforms supporting rescue teams in hazardous alpine environments. His multi-drone control architecture work further advances human-robot teaming in emergency scenarios. With contributions spanning tactile sensing, suspended load transportation, and ducted fan control, Marconi's portfolio reflects remarkable breadth. Accumulating over 960 citations across his most recognized works alone, his research has consistently bridged theoretical control engineering with practical robotic deployment, making him an essential reference for anyone studying autonomous aerial systems, physical human-robot interaction, or field robotics.
Research Focus
Key Achievements
Top Papers
- 1
- 2Modeling and control of a flying robot for contact inspection140 citations · 2012
- 3
- 4Modelling and control of a flying robot interacting with the environment104 citations · 2011
- 5Slip detection by tactile sensors: algorithms and experimental results94 citations · 2002
- 6Impedance control of an aerial manipulator87 citations · 2012
- 7Nested saturation control of an UAV carrying a suspended load77 citations · 2014
- 8
- 9
- 10Aerial service robotics: The AIRobots perspective40 citations · 2012