Follow
Prof. Mini Chakravarthini Rai (previous surname Saaj)
Prof. Mini Chakravarthini Rai (previous surname Saaj)
Global Chair in Robotic Engineering
Verified email at lincoln.ac.uk - Homepage
Title
Cited by
Cited by
Year
Finite element analysis and design optimization of a pneumatically actuating silicone module for robotic surgery applications
Y Elsayed, A Vincensi, C Lekakou, T Geng, CM Saaj, T Ranzani, ...
Soft Robotics 1 (4), 255-262, 2014
2342014
A new algorithm for discrete-time sliding-mode control using fast output sampling feedback
MC Saaj, B Bandyopadhyay, H Unbehauen
IEEE Transactions on industrial electronics 49 (3), 518-523, 2002
1412002
Terrain trafficability analysis and soil mechanical property identification for planetary rovers: A survey
S Chhaniyara, C Brunskill, B Yeomans, MC Matthews, C Saaj, S Ransom, ...
Journal of Terramechanics 49 (2), 115-128, 2012
1062012
Spacecraft formation flying using Lorentz forces
MA Peck, B Streetman, CM Saaj, V Lappas
Journal of the British Interplanetary Society 60, 263-267, 2007
1052007
Dynamic modeling of fiber-reinforced soft manipulator: A visco-hyperelastic material-based continuum mechanics approach
SM Mustaza, Y Elsayed, C Lekakou, C Saaj, J Fras
Soft robotics 6 (3), 305-317, 2019
722019
Characterisation of martian soil simulants for the ExoMars rover testbed
C Brunskill, N Patel, TP Gouache, GP Scott, CM Saaj, M Matthews, L Cui
Journal of Terramechanics 48 (6), 419-438, 2011
562011
Spacecraft swarm navigation and control using artificial potential field and sliding mode control
CM Saaj, V Lappas, V Gazi
2006 IEEE International Conference on Industrial Technology, 2646-2651, 2006
562006
Combined Nonlinear Controller for a Controlled-Floating Space Robot
A Seddaoui, CM Saaj
Journal of Guidance, Control, and Dynamics 42 (8), 1878-1885, 2019
452019
Soil simulant sourcing for the ExoMars rover testbed
TP Gouache, N Patel, C Brunskill, GP Scott, CM Saaj, M Matthews, L Cui
Planetary and Space Science 59 (8), 779-787, 2011
382011
Walking planetary rovers–experimental analysis and modelling of leg thrust in loose granular soils
B Yeomans, CM Saaj, M Van Winnendael
Journal of Terramechanics 50 (2), 107-120, 2013
322013
Hybrid propulsion system for formation flying using electrostatic forces
CM Saaj, V Lappas, H Schaub, D Izzo
Aerospace Science and Technology 14 (5), 348-355, 2010
312010
Terrain interaction prediction for bioinspired planetary exploration rovers
BSCMS Brian Yeomans
Bioinspiration and Biomimetics 9 (016009), 2014
292014
Design optimisation of soft silicone pneumatic actuators using finite element analysis
Y Elsayed, C Lekakou, T Geng, CM Saaj
2014 IEEE/ASME International Conference on Advanced Intelligent Mechatronics …, 2014
282014
Collision-free optimal trajectory generation for a space robot using genetic algorithm
A Seddaoui, CM Saaj
Acta Astronautica 179, 311-321, 2021
272021
Trafficability assessment of deformable terrain through hybrid wheel-leg sinkage detection
MM Francisco Comin, William Lewinger, Chakravarthini Saaj
Journal of Field Robotics, 2016
26*2016
Measuring and simulating the effect of variations in soil properties on microrover trafficability
G Scott, C Saaj
AIAA SPACE 2009 Conference & Exposition, 6468, 2009
262009
Algorithm for computing sliding mode control and switching surface from output samples
B Bandyopadhyay, VK Thakar, CM Saaj, S Janardhanan
Proc. 8th IEEE Variable Structure Systems Workshop 31, 2004
262004
Models for slip estimation and soft terrain characterization with multilegged wheel–legs
FJ Comin, CM Saaj
IEEE Transactions on Robotics 33 (6), 1438-1452, 2017
202017
A unified system identification approach for a class of pneumatically-driven soft actuators
X Wang, T Geng, Y Elsayed, C Saaj, C Lekakou
Robotics and Autonomous Systems 63, 136-149, 2015
202015
Towards robotic on-orbit assembly of large space telescopes: Mission architectures, concepts, and analyses
A Nanjangud, CI Underwood, CP Bridges, CM Saaj, S Eckersley, ...
Proceedings of the International Astronautical Congress, IAC, 1-25, 2019
192019
The system can't perform the operation now. Try again later.
Articles 1–20