19 citations · 35 across the 6 of their papers we have counts for
6 papers
Nonlinear Modes as a Tool for Comparing the Mathematical Structure of Dynamic Models of Soft Robots
Pietro Pustina, Davide Calzolari, Alin Albu-Schäffer +2
Continuum soft robots are nonlinear mechanical systems with theoretically infinite degrees of freedom (DoFs) that exhibit complex behaviors. Achieving motor intelligence under dyna…
AI-enabled Cyber-Physical In-Orbit Factory -- AI approaches based on digital twin technology for robotic small satellite production
Florian Leutert, David Bohlig, Florian Kempf +12
With the ever increasing number of active satellites in space, the rising demand for larger formations of small satellites and the commercialization of the space industry (so-calle…
Towards Safe and Collaborative Robotic Ultrasound Tissue Scanning in Neurosurgery
Michael Dyck, Alistair Weld, Julian Klodmann +6
Intraoperative ultrasound imaging is used to facilitate safe brain tumour resection. However, due to challenges with image interpretation and the physical scanning, this tool has y…
Automated robotic intraoperative ultrasound for brain surgery
Michael Dyck, Alistair Weld, Julian Klodmann +6
During brain tumour resection, localising cancerous tissue and delineating healthy and pathological borders is challenging, even for experienced neurosurgeons and neuroradiologists…
EigenMPC: An Eigenmanifold-Inspired Model-Predictive Control Framework for Exciting Efficient Oscillations in Mechanical Systems
Andre Coelho, Alin Albu-Schaeffer, Arne Sachtler +4
This paper proposes a Nonlinear Model-Predictive Control (NMPC) method capable of finding and converging to energy-efficient regular oscillations, which require no control action t…
Collaborative Robotic Ultrasound Tissue Scanning for Surgical Resection Guidance in Neurosurgery
Alistair Weld, Michael Dyck, Julian Klodmann +5
The aim of this paper is to introduce a robotic platform for autonomous iUS tissue scanning to optimise intraoperative diagnosis and improve surgical resection during robot-assiste…