Abo-Shanab, R., & Sepehri, N. (2005). Tip-over stability of manipulator-like mobile hydraulic machines. Journal of Dynamic Systems, Measurement and Control , 127 (2), 295-301. https://doi.org/10.1115/1.1898239
Acosta, J., Andaluz, V., González-de-Rivera, G., & Garrido, J. (2019). Energy-saver mobile manipulator based on numerical methods. Electronics , 8 (1100), 1-26. https://doi.org/10.3390/electronics8101100
Beck, C., Miro, J., & Dissanayake, G. (2009). Trajectory optimisation for increased stability of mobile robots operating in uneven terrains. IEEE International Conference on Control and Automation, (págs. 1913-1919). Christchurch. https://doi.org/10.1109/ICCA.2009.5410513
[+]
Abo-Shanab, R., & Sepehri, N. (2005). Tip-over stability of manipulator-like mobile hydraulic machines. Journal of Dynamic Systems, Measurement and Control , 127 (2), 295-301. https://doi.org/10.1115/1.1898239
Acosta, J., Andaluz, V., González-de-Rivera, G., & Garrido, J. (2019). Energy-saver mobile manipulator based on numerical methods. Electronics , 8 (1100), 1-26. https://doi.org/10.3390/electronics8101100
Beck, C., Miro, J., & Dissanayake, G. (2009). Trajectory optimisation for increased stability of mobile robots operating in uneven terrains. IEEE International Conference on Control and Automation, (págs. 1913-1919). Christchurch. https://doi.org/10.1109/ICCA.2009.5410513
Ben-Tzvi, P. (2010). Experimental validation and field performance metrics of a hybrid mobile robot mechanism. Journal of Field Robotics , 27 (3), 250-267. https://doi.org/10.1002/rob.20337
Budynas, R., & Nisbett, K. (2008). Diseño en Ingeniería Mecánica de Shigley (8va edición ed.). México: McGraw-Hil/Interamericana Editores.
Choi, B., Park, G., & Lee, Y. (2018). Practical control of a rescue robot while maneuvering on uneven terrain. Journal of Mechanical Science and Technology , 32 (5), 2021-2028. https://doi.org/10.1007/s12206-018-0410-7
Ding, X., Liu, Y., Hou, J., & Ma, Q. (2019). Online dynamic tip-over avoidance for a wheeled mobile manipulator with an improved tip-over moment stability criterion. IEEE Access , 7, 67632 - 67645. https://doi.org/10.1109/ACCESS.2019.2915115
García, J. M., Bohórquez, A., & Valero, A. (2020). Suspension effect in tip-over stability and steerability of robots moving on sloping terrains. IEEE Latin America Transactions , 18 (8), 1381-1389. https://doi.org/10.1109/TLA.2020.9111673
García, J. M., Martínez, J. L., Mandow, A., & García-Cerezo, A. (2017b). Caster-leg aided maneuver for negotiating surface discontinuities with a wheeled skid-steer mobile robot. Robotics and Autonomous Systems , 91, 25-37. https://doi.org/10.1016/j.robot.2016.12.007
García, J. M., Martínez, J. L., Mandow, A., & García-Cerezo, A. (2017c). Slide-Down Prevention for Wheeled Mobile Robots on Slopes. 3rd International Conference on Mechatronics and Robotics Engineering, (págs. 1-6). Paris. https://doi.org/10.1145/3068796.3068820
García, J. M., Martínez, J. L., Mandow, A., & García-Cerezo, A. (2015b). Steerability analysis on slopes of a mobile robot with a ground contact arm. Proc. 23rd Mediterranean Conference on Control and Automation, (págs. 267-272). Torremolinos. https://doi.org/10.1109/MED.2015.7158761
García, J. M., Medina, I., Cerezo, A. G., & Linares, A. (2015a). Improving the static stability of a mobile manipulator using its end effector in contact with the ground. IEEE Latin American Transactions , 13 (10), 3228-3234. https://doi.org/10.1109/TLA.2015.7387226
García, J. M., Medina, I., Martínez, J. L., García-Cerezo, A., Linares, A., & Porras, C. (2017a). Lázaro: Robot Móvil dotado de Brazo para Contacto con el Suelo. Revista Iberoamericana de Automática e Informática Industrial , 14, 174-183. https://doi.org/10.1016/j.riai.2016.09.012
Ghaffari, A., Meghdari, A., Naderi, D., & Eslami, S. (2008). Tipover stability enhancement of wheeled mobile manipulators using an adaptive neuro- fuzzy inference controller system. World academy of science, engineering and technology, (págs. 241-247).
Go, Y., Yin, X., & Bowling, A. (2006). Navigability of multi-legged robots. IEEE/ASME Transactions on Mechatronics , 11 (1), 1-8. https://doi.org/10.1109/TMECH.2005.863361
Hatano, M., & Obara, H. (2003). Stability evaluation for mobile manipulators using criteria based on reaction. SICE Annual Conference, (págs. 2050-2055). Fukui.
He, L. (2012). Tip-over avoidance algorithm for modular mobile manipulator. First International Conference on Innovative Engineering Systems, (págs. 115-120). Alexandria. https://doi.org/10.1109/ICIES.2012.6530855
Kim, J., Chung, W., Youm, Y., & Lee, B. (2002). Real-time ZMP compensation method using null motion for mobile manipulators. IEEE International Conference on Robotics & Automation, (págs. 1967-1972). Washington. https://doi.org/10.1109/ROBOT.2002.1014829
Meghdari, A., Naderi, D., & Alam, M. (2005). Neural-network-based observer for real-time tipover estimation. Mechatronics , 15, 989-1004. https://doi.org/10.1016/j.mechatronics.2005.03.005
Montaño, J., Palmer, A., Sesé, A., & Cajal, B. (2013). Using the R-MAPE index as a resistant measure of forecast accuracy. Psicothema , 25 (4), 500-506. DOI: 10.7334/psicothema2013.23.
Morales, J., Martínez, J. L., Mandow, A., Serón, J., & García-Cerezo, A. (2013). Static tip-over stability analysis for a robotic vehicle with a single-axle trailer on slopes based on altered supporting polygons. IEEE/ASME Transactions on Mechatronics , 18 (2), 697-705. https://doi.org/10.1109/TMECH.2011.2181955
Pedrero, J., Pleguezuelos, M., & Muñoz, M. (2009). Simplified calculation method for the efficiency of involute spur gears. ASME 2009 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference, (págs. 131-138). San Diego. https://doi.org/10.1115/DETC2009-87179
Verstraten, T., Furnémont, R., Mathijssen, G., Vanderborght, B., & Lefeber, D. (2016). Energy consumption of geared DC motors in dynamic applications: comparing modeling approaches. IEEE Robotics and Automation Letters , 1 (1), 524 - 530. https://doi.org/10.1109/LRA.2016.2517820
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