Exploring a Novel Multiple-Query Resistive Grid-Based Planning Method Applied to High-DOF Robotic Manipulators
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Huerta-Chua, J.; Diaz-Arango, G.; Vazquez-Leal, H.; Flores-Mendez, J.; Moreno-Moreno, M.; Ambrosio-Lazaro, R.C.; Hernandez-Mejia, C. Exploring a Novel Multiple-Query Resistive Grid-Based Planning Method Applied to High-DOF Robotic Manipulators. Sensors 2021, 21, 3274. https://doi.org/10.3390/s21093274
Huerta-Chua J, Diaz-Arango G, Vazquez-Leal H, Flores-Mendez J, Moreno-Moreno M, Ambrosio-Lazaro RC, Hernandez-Mejia C. Exploring a Novel Multiple-Query Resistive Grid-Based Planning Method Applied to High-DOF Robotic Manipulators. Sensors. 2021; 21(9):3274. https://doi.org/10.3390/s21093274
Chicago/Turabian StyleHuerta-Chua, Jesus, Gerardo Diaz-Arango, Hector Vazquez-Leal, Javier Flores-Mendez, Mario Moreno-Moreno, Roberto C. Ambrosio-Lazaro, and Carlos Hernandez-Mejia. 2021. "Exploring a Novel Multiple-Query Resistive Grid-Based Planning Method Applied to High-DOF Robotic Manipulators" Sensors 21, no. 9: 3274. https://doi.org/10.3390/s21093274
APA StyleHuerta-Chua, J., Diaz-Arango, G., Vazquez-Leal, H., Flores-Mendez, J., Moreno-Moreno, M., Ambrosio-Lazaro, R. C., & Hernandez-Mejia, C. (2021). Exploring a Novel Multiple-Query Resistive Grid-Based Planning Method Applied to High-DOF Robotic Manipulators. Sensors, 21(9), 3274. https://doi.org/10.3390/s21093274

