-
Aminata Diouf, Bruno Belzile, Maarouf Saad, David St-Onge, “Spherical rolling robots—Design, modeling, and control: A systematic literature review”, Robotics and Autonomous Systems, 175 (2024), 104657
-
D. Spitaleri, G. Pepe, M. Laurenza, S. Milana, A. Carcaterra, 2024 13th International Workshop on Robot Motion and Control (RoMoCo), 2024, 243
-
Alexander P. Ivanov, “On the bifurcations of the phase portrait of gyrostat”, Nonlinear Dyn, 112:20 (2024), 17989
-
Bernard Brogliato, “Modeling, analysis and control of robot–object nonsmooth underactuated Lagrangian systems: A tutorial overview and perspectives”, Annual Reviews in Control, 55 (2023), 297
-
Seyed Amir Tafrishi, Mikhail Svinin, Motoji Yamamoto, Yasuhisa Hirata, “A geometric motion planning for a spin-rolling sphere on a plane”, Applied Mathematical Modelling, 121 (2023), 542
-
A.P. Ivanov, “Attenuation control of gyrostat without energy supply”, International Journal of Non-Linear Mechanics, 154 (2023), 104441
-
Yu. L. Karavaev, “Spherical Robots:
An Up-to-Date Overview of Designs and Features”, Rus. J. Nonlin. Dyn., 18:4 (2022), 709–750
-
G. R. Saypulaev, B. I. Adamov, A. I. Kobrin, “Comparative Analysis of the Dynamics of a Spherical
Robot with a Balanced Internal Platform Taking into
Account Different Models of Contact Friction”, Rus. J. Nonlin. Dyn., 18:5 (2022), 803–815
-
Alexander A. Kilin, Elena N. Pivovarova, “Motion control of the spherical robot rolling on a vibrating plane”, Applied Mathematical Modelling, 109 (2022), 492
-
A. V. Borisov, E. A. Mikishanina, “Dynamics of the Chaplygin Ball with Variable Parameters”, Rus. J. Nonlin. Dyn., 16:3 (2020), 453–462
-
Fasso F., Passarella S., Zoppello M., “Control of Locomotion Systems and Dynamics in Relative Periodic Orbits”, J. Geom. Mech., 12:3 (2020), 395–420
-
Borisov A.V., Ivanov A.P., “Adaptation of the Jellett Integral to the Case of Rolling Friction”, Dokl. Phys., 65:7 (2020), 252–254
-
Vakhtang Putkaradze, Stuart M. Rogers, “On the Normal Force and Static Friction Acting on a Rolling Ball Actuated by Internal Point Masses”, Regul. Chaotic Dyn., 24:2 (2019), 145–170
-
Bizyaev I.A. Borisov V A. Kozlov V.V. Mamaev I.S., “Fermi-Like Acceleration and Power-Law Energy Growth in Nonholonomic Systems”, Nonlinearity, 32:9 (2019), 3209–3233
-
Borisov A., Kilin A., Karavaev Yu., Klekovkin A., “Stabilization of the Motion of a Spherical Robot Using Feedbacks”, Appl. Math. Model., 69 (2019), 583–592
-
Ivanov A.P., “Rolling Friction”, Dokl. Phys., 64:3 (2019), 129–133
-
Borisov A. Kilin A. Mamaev I., “Invariant Submanifolds of Genus 5 and a Cantor Staircase in the Nonholonomic Model of a Snakeboard”, Int. J. Bifurcation Chaos, 29:3 (2019), 1930008
-
Ivanova T.B. Kilin A.A. Pivovarova E.N., “Controlled Motion of a Spherical Robot With Feedback. II”, J. Dyn. Control Syst., 25:1 (2019), 1–16
-
T. B. Ivanova, A. A. Kilin, E. N. Pivovarova, “Controlled motion of a spherical robot with feedback. I”, J. Dyn. Control Syst., 24:3 (2018), 497–510
-
A. R. Chowdhury, G. S. Soh, Sh. Foong, K. L. Wood, “Implementation of caterpillar inspired rolling gait and nonlinear control strategy in a spherical robot”, J. Bionic Eng., 15:2, SI (2018), 313–328