Abstract
This work is focused on the proposal of a kinematic modeling and kinematic nonlinear controller to solve problems such as point stabilization, trajectory tracking and path following about of dynamic omnidirectional robot for which will be synthesized in an unified controller. The dynamic compensation controller is considered through of omnidirectional robot-inner-loop system to independently track three velocity commands: front, lateral and angular. This controller is proved in the simulation and with the experimental test with the construction of the robot with mecanum wheels in AB configuration.
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Andaluz, V., Carelli, R., Salinas, L., Toibero, J., Roberti, F.: Visual control with adaptive dynamical compensation for 3D target tracking by mobile manipulators. Mechatronics, 22(4), 491–502 (2012)
Carrillo, A., Pelayo, S., Pelayo, J.: Development of a mobile service robot for classify objects and place them in containers. In: Power, Electronics and Computing (ROPEC) (2016)
Wang, D., Yi, J., Zhao, D.: Teleoperation system of the internet-based omnidirectional mobile robot with a mounted manipulator. In: International Conference on Mechatronics and Automation, pp. 1799–1804, Harbin, China (2007)
Pepe, A., Chiaravalli, D., Melchiorri, C.: A hybrid teleoperation control scheme for a single-arm mobile manipulator with omnidirectional wheels. In: IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS) (2016)
Costa, P., Moreira, N., Campos, D.: Localization and navigation of an omnidirectional mobile robot: the Robot@Factory case study. In: IEEE Revista Iberoamericana de Tecnologias del Aprendizaje (2016)
Jia, Q., Wang, M., Liu, S.: Research and development of Mecanum-wheeled omnidirectional mobile robot implemented by multiple control methods. In: 23rd International Conference on Mechatronics and Machine Vision in Practice (M2VIP) (2016)
Kang, W., Kim, S., Chung, J.: Development of omni-directional mobile robots with Mecanum wheels assisting the disabled in a factory environment. In: International Conference on Control, Automation and Systems (2008)
Diegel, O., Badve, A., Bright, G.: Improved Mecanum wheel design for omni-directional robots. In: Australasian Conference on Robotics and Automation (2002)
Yunan, Z., Shuangshuang, W., Jian, Z.: Research on motion characteristic of omnidirectional robot based on Mecanum wheel. In: Digital Manufacturing and Automation (ICDMA) (2010)
Chao, R., Shugen, M.: Trajectory tracking control of an omnidirectional mobile robot with friction compensation. In: Intelligent Robots and Systems (IROS) (2016)
Veer, A., Shital, S.: Design of robust adaptive controller for a four wheel omnidirectional mobile robot. In: Advances in Computing, Communications and Informatics (ICACCI) (2015)
Jian, W., Sergey, A., Aleksandr, J.: Geometric path following control for an omnidirectional mobile robot. In: 21st International Conference on Methods and Models in Automation and Robotics (MMAR) (2016)
Kanjanawanishkul, K., Zell, A.: Path following for an omnidirectional mobile robot based on model predictive control. In: IEEE International Conference on Robotics and Automation (2009)
Andaluz, V., Ortiz, J., Chicaiza, F., Varela, J., Espinosa, E., Canseco, P.: Adaptive control of the human-wheelchair system through brain signals. In: Kubota, N., Kiguchi, K., Liu, H., Obo, T. (eds.) Intelligent Robotics and Applications, pp. 223–234. Springer, Heidelberg (2016)
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Andaluz, V.H., Carvajal, C.P., Arteaga, O., Pérez, J.A., Valencia, F.S., Solís, L.A. (2017). Unified Dynamic Control of Omnidirectional Robots. In: Gao, Y., Fallah, S., Jin, Y., Lekakou, C. (eds) Towards Autonomous Robotic Systems. TAROS 2017. Lecture Notes in Computer Science(), vol 10454. Springer, Cham. https://doi.org/10.1007/978-3-319-64107-2_55
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DOI: https://doi.org/10.1007/978-3-319-64107-2_55
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