Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Lee, Young-Chul
and
Velinsky, Steven A.
2009.
Motion of a Ball Wheel Based Omnidirectional Platform Over Uneven Terrain.
Mechanics Based Design of Structures and Machines,
Vol. 37,
Issue. 3,
p.
371.
Ball, David M
Lehnert, Chris F
and
Wyeth, Gordon F
2010.
A practical implementation of a continuous isotropic spherical omnidirectional drive.
p.
3775.
Kumagai, Masaaki
2010.
Development of a ball drive unit using partially sliding rollers — An alternative mechanism for semi-omnidirectional motion —.
p.
3352.
Ganji, Farid
and
Velinsky, Steven A.
2011.
Optimal Actuation for an Omnidirectional Mobile Platform with Three Ball Wheels.
Mechanics Based Design of Structures and Machines,
Vol. 39,
Issue. 1,
p.
1.
Chu, Baeksuk
and
Sung, Young Whee
2013.
Development of Educational Robot Platform Based on Omni-directional Mobile Mechanism.
Journal of the Korean Society for Precision Engineering,
Vol. 30,
Issue. 11,
p.
1161.
Kim, Dong Won
Igor, Yugay
Kang, Eun Seok
and
Jung, Seul
2013.
Design and Control of an Omni-directional Cleaning Robot Based on Landmarks.
Journal of Korean Institute of Intelligent Systems,
Vol. 23,
Issue. 2,
p.
100.
Wang, Hao
Kong, Lingyu
Chen, Genliang
and
Zhao, Yong
2015.
Design of an Actuation Device With the Capability of Automatically Distributing External Load Based on Stability Theorems.
Journal of Mechanical Design,
Vol. 137,
Issue. 8,
Ozgur, Ayberk
Johal, Wafa
and
Dillenbourg, Pierre
2016.
Permanent magnet-assisted omnidirectional ball drive.
p.
1061.
Wada, Masayoshi
and
Kato, Kosuke
2016.
Kinematic modeling and simulation of active-caster robotic drive with a ball transmission (ACROBAT-S).
p.
4455.
Runge, Gundula
Borchert, Gunnar
Henke, Patrick
and
Raatz, Annika
2016.
Design and Testing of a 2-DOF Ball Drive.
Journal of Intelligent & Robotic Systems,
Vol. 81,
Issue. 2,
p.
195.
Kato, Kosuke
and
Wada, Masayoshi
2017.
Kinematic analysis and simulation of active-caster robotic drive with ball transmission (ACROBAT-S).
Advanced Robotics,
Vol. 31,
Issue. 7,
p.
355.
Lu, Zhiguo
Lin, Menglei
Wang, Shixiong
Zhang, Yichen
and
Yu, Yongji
2019.
Research on a New-Style Under-Actuated Omnidirectional Mobile Robot Based on Special Coupling Drive System.
IEEE Access,
Vol. 7,
Issue. ,
p.
152138.
Ueda, Tomoka
Nagata, Masanobu
Katoh, Tatsuya
and
Matsuo, Kazunori
2019.
A Study of Removable Omnidirectional Automotive Mechanism for Movement Efficiency.
p.
1.
Kato, Kosuke
and
Wada, Masayoshi
2020.
ACROBAT-S Omnidirectional Mobile Robot Prototype : And Study on Ball Drive Mechanism.
p.
105.
Filomeno Amador, Luis Daniel
and
Castillo Castañeda, Eduardo
2022.
Kinematic and dynamic analysis of an omnidirectional mobile platform driven by a spherical wheel.
Mechanical Sciences,
Vol. 13,
Issue. 1,
p.
31.
Kimura, Kenji
and
Ishii, Kazuo
2022.
Roller’s Kinetic Energy Efficency Problem in Upper Hemisphere.
p.
1.
Arbatsofla, S. Moghtader
Mazinan, A. H.
Mahmoodabadi, M. J.
and
Nekoui, M. A.
2023.
Fuzzy fractional-order adaptive robust feedback linearization control optimized by the multi-objective artificial hummingbird algorithm for a nonlinear ball–wheel system.
Journal of the Brazilian Society of Mechanical Sciences and Engineering,
Vol. 45,
Issue. 11,