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LUNA, Leonardo Simião de e SAVAZZI, José e CAURIN, Glauco Augusto de Paula. A survey of sensing and interaction in robotic assembly. 2025, Anais.. Piscataway, NJ, USA: Escola de Engenharia de São Carlos, Universidade de São Paulo, 2025. Disponível em: http://dx.doi.org/10.1109/CROS66186.2025.11064863. Acesso em: 06 dez. 2025.
APA
Luna, L. S. de, Savazzi, J., & Caurin, G. A. de P. (2025). A survey of sensing and interaction in robotic assembly. In Proceedings. Piscataway, NJ, USA: Escola de Engenharia de São Carlos, Universidade de São Paulo. doi:10.1109/CROS66186.2025.11064863
NLM
Luna LS de, Savazzi J, Caurin GA de P. A survey of sensing and interaction in robotic assembly [Internet]. Proceedings. 2025 ;[citado 2025 dez. 06 ] Available from: http://dx.doi.org/10.1109/CROS66186.2025.11064863
Vancouver
Luna LS de, Savazzi J, Caurin GA de P. A survey of sensing and interaction in robotic assembly [Internet]. Proceedings. 2025 ;[citado 2025 dez. 06 ] Available from: http://dx.doi.org/10.1109/CROS66186.2025.11064863
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MAITAN, Lucca et al. Optimizing inner force control loop for PMLSM using reinforcement learning. 2025, Anais.. Piscataway, NJ, USA: Escola de Engenharia de São Carlos, Universidade de São Paulo, 2025. Disponível em: http://dx.doi.org/10.1109/CROS66186.2025.11066162. Acesso em: 06 dez. 2025.
APA
Maitan, L., Vergamini, E. G., Thema, M. D. G., Pedro, G. D. G., Negri, J. D., Alves, M. A. do C., et al. (2025). Optimizing inner force control loop for PMLSM using reinforcement learning. In Proceedings. Piscataway, NJ, USA: Escola de Engenharia de São Carlos, Universidade de São Paulo. doi:10.1109/CROS66186.2025.11066162
NLM
Maitan L, Vergamini EG, Thema MDG, Pedro GDG, Negri JD, Alves MA do C, Becker M, Caurin GA de P, Cunha TB. Optimizing inner force control loop for PMLSM using reinforcement learning [Internet]. Proceedings. 2025 ;[citado 2025 dez. 06 ] Available from: http://dx.doi.org/10.1109/CROS66186.2025.11066162
Vancouver
Maitan L, Vergamini EG, Thema MDG, Pedro GDG, Negri JD, Alves MA do C, Becker M, Caurin GA de P, Cunha TB. Optimizing inner force control loop for PMLSM using reinforcement learning [Internet]. Proceedings. 2025 ;[citado 2025 dez. 06 ] Available from: http://dx.doi.org/10.1109/CROS66186.2025.11066162
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DI MARZO, Marcela A. D et al. Nonlinear behavior in aircraft fuel gauge readings: an exploring analysis. 2024, Anais.. Bonn: ICAS, 2024. Disponível em: https://www.icas.org/ICAS_ARCHIVE/ICAS2024/data/preview/ICAS2024_1187.htm. Acesso em: 06 dez. 2025.
APA
Di Marzo, M. A. D., Gonzatto Junior, O. A., Najafabadi, H. N., & Bidinotto, J. H. (2024). Nonlinear behavior in aircraft fuel gauge readings: an exploring analysis. In Proceedings. Bonn: ICAS. Recuperado de https://www.icas.org/ICAS_ARCHIVE/ICAS2024/data/preview/ICAS2024_1187.htm
NLM
Di Marzo MAD, Gonzatto Junior OA, Najafabadi HN, Bidinotto JH. Nonlinear behavior in aircraft fuel gauge readings: an exploring analysis [Internet]. Proceedings. 2024 ;[citado 2025 dez. 06 ] Available from: https://www.icas.org/ICAS_ARCHIVE/ICAS2024/data/preview/ICAS2024_1187.htm
Vancouver
Di Marzo MAD, Gonzatto Junior OA, Najafabadi HN, Bidinotto JH. Nonlinear behavior in aircraft fuel gauge readings: an exploring analysis [Internet]. Proceedings. 2024 ;[citado 2025 dez. 06 ] Available from: https://www.icas.org/ICAS_ARCHIVE/ICAS2024/data/preview/ICAS2024_1187.htm
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JANSSEN, Stefan et al. On the stop band adaptivity range of locally resonant metamaterial resonators with piezoelectric patches: a case study. 2024, Anais.. Leuven, Belgium: Escola de Engenharia de São Carlos, Universidade de São Paulo, 2024. Disponível em: https://repositorio.usp.br/directbitstream/f3f5088c-eb24-42f2-89da-1585e65f6e2e/artigo.pdf. Acesso em: 06 dez. 2025.
APA
Janssen, S., Schimidt, C. S., Oliveira, L. P. R. de, De Marqui Júnior, C., Claeys, C., & Deckers, E. (2024). On the stop band adaptivity range of locally resonant metamaterial resonators with piezoelectric patches: a case study. In Proceedings. Leuven, Belgium: Escola de Engenharia de São Carlos, Universidade de São Paulo. Recuperado de https://repositorio.usp.br/directbitstream/f3f5088c-eb24-42f2-89da-1585e65f6e2e/artigo.pdf
NLM
Janssen S, Schimidt CS, Oliveira LPR de, De Marqui Júnior C, Claeys C, Deckers E. On the stop band adaptivity range of locally resonant metamaterial resonators with piezoelectric patches: a case study [Internet]. Proceedings. 2024 ;[citado 2025 dez. 06 ] Available from: https://repositorio.usp.br/directbitstream/f3f5088c-eb24-42f2-89da-1585e65f6e2e/artigo.pdf
Vancouver
Janssen S, Schimidt CS, Oliveira LPR de, De Marqui Júnior C, Claeys C, Deckers E. On the stop band adaptivity range of locally resonant metamaterial resonators with piezoelectric patches: a case study [Internet]. Proceedings. 2024 ;[citado 2025 dez. 06 ] Available from: https://repositorio.usp.br/directbitstream/f3f5088c-eb24-42f2-89da-1585e65f6e2e/artigo.pdf
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ROCHA, Lidia et al. Enhancing safety via deep reinforcement learning in trajectory planning for agile flights in unknown environments. 2024, Anais.. Piscataway, NJ, USA: Escola de Engenharia de São Carlos, Universidade de São Paulo, 2024. Disponível em: https://dx.doi.org/10.1109/IROS58592.2024.10801910. Acesso em: 06 dez. 2025.
APA
Rocha, L., Bidinotto, J. H., Heintz, F., Tiger, M., & Vivaldini, K. C. T. (2024). Enhancing safety via deep reinforcement learning in trajectory planning for agile flights in unknown environments. In Proceedings. Piscataway, NJ, USA: Escola de Engenharia de São Carlos, Universidade de São Paulo. doi:10.1109/IROS58592.2024.10801910
NLM
Rocha L, Bidinotto JH, Heintz F, Tiger M, Vivaldini KCT. Enhancing safety via deep reinforcement learning in trajectory planning for agile flights in unknown environments [Internet]. Proceedings. 2024 ;[citado 2025 dez. 06 ] Available from: https://dx.doi.org/10.1109/IROS58592.2024.10801910
Vancouver
Rocha L, Bidinotto JH, Heintz F, Tiger M, Vivaldini KCT. Enhancing safety via deep reinforcement learning in trajectory planning for agile flights in unknown environments [Internet]. Proceedings. 2024 ;[citado 2025 dez. 06 ] Available from: https://dx.doi.org/10.1109/IROS58592.2024.10801910
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MARÃO, Luiz Afonso e CINTRA, Luis Eduardo e CAURIN, Glauco Augusto de Paula. Influence of visual observations’ dimensionality reduction on a deep reinforcement learning controlled terrestrial robot. 2024, Anais.. Piscataway, NJ, USA: Escola de Engenharia de São Carlos, Universidade de São Paulo, 2024. Disponível em: http://dx.doi.org/10.1109/CASE59546.2024.10711704. Acesso em: 06 dez. 2025.
APA
Marão, L. A., Cintra, L. E., & Caurin, G. A. de P. (2024). Influence of visual observations’ dimensionality reduction on a deep reinforcement learning controlled terrestrial robot. In Proceedings. Piscataway, NJ, USA: Escola de Engenharia de São Carlos, Universidade de São Paulo. doi:10.1109/CASE59546.2024.10711704
NLM
Marão LA, Cintra LE, Caurin GA de P. Influence of visual observations’ dimensionality reduction on a deep reinforcement learning controlled terrestrial robot [Internet]. Proceedings. 2024 ;[citado 2025 dez. 06 ] Available from: http://dx.doi.org/10.1109/CASE59546.2024.10711704
Vancouver
Marão LA, Cintra LE, Caurin GA de P. Influence of visual observations’ dimensionality reduction on a deep reinforcement learning controlled terrestrial robot [Internet]. Proceedings. 2024 ;[citado 2025 dez. 06 ] Available from: http://dx.doi.org/10.1109/CASE59546.2024.10711704
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MOSQUERA SÁNCHEZ, Jaime Alberto e DE MARQUI JÚNIOR, Carlos. A nonlinear electroelastic metastructure for broadband wave attenuation. 2022, Anais.. Leuven, Belgium: Escola de Engenharia de São Carlos, Universidade de São Paulo, 2022. Disponível em: https://repositorio.usp.br/directbitstream/dd703e86-1710-45be-b538-2ec0eb9d1eeb/Engineering_Village_detailed_7-11-2024_18241981.pdf. Acesso em: 06 dez. 2025.
APA
Mosquera Sánchez, J. A., & De Marqui Júnior, C. (2022). A nonlinear electroelastic metastructure for broadband wave attenuation. In Proceedings. Leuven, Belgium: Escola de Engenharia de São Carlos, Universidade de São Paulo. Recuperado de https://repositorio.usp.br/directbitstream/dd703e86-1710-45be-b538-2ec0eb9d1eeb/Engineering_Village_detailed_7-11-2024_18241981.pdf
NLM
Mosquera Sánchez JA, De Marqui Júnior C. A nonlinear electroelastic metastructure for broadband wave attenuation [Internet]. Proceedings. 2022 ;[citado 2025 dez. 06 ] Available from: https://repositorio.usp.br/directbitstream/dd703e86-1710-45be-b538-2ec0eb9d1eeb/Engineering_Village_detailed_7-11-2024_18241981.pdf
Vancouver
Mosquera Sánchez JA, De Marqui Júnior C. A nonlinear electroelastic metastructure for broadband wave attenuation [Internet]. Proceedings. 2022 ;[citado 2025 dez. 06 ] Available from: https://repositorio.usp.br/directbitstream/dd703e86-1710-45be-b538-2ec0eb9d1eeb/Engineering_Village_detailed_7-11-2024_18241981.pdf
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ROSA, M. I. N. et al. Wave propagation in elastic quasicrystals. 2022, Anais.. Spain: Escola de Engenharia de São Carlos, Universidade de São Paulo, 2022. Disponível em: https://repositorio.usp.br/directbitstream/2e12a8e5-81cf-491a-b63b-f172b300c2ca/scopus.pdf. Acesso em: 06 dez. 2025.
APA
Rosa, M. I. N., Beli, D., De Marqui Júnior, C., & Ruzzene, M. (2022). Wave propagation in elastic quasicrystals. In Proceedings. Spain: Escola de Engenharia de São Carlos, Universidade de São Paulo. Recuperado de https://repositorio.usp.br/directbitstream/2e12a8e5-81cf-491a-b63b-f172b300c2ca/scopus.pdf
NLM
Rosa MIN, Beli D, De Marqui Júnior C, Ruzzene M. Wave propagation in elastic quasicrystals [Internet]. Proceedings. 2022 ;[citado 2025 dez. 06 ] Available from: https://repositorio.usp.br/directbitstream/2e12a8e5-81cf-491a-b63b-f172b300c2ca/scopus.pdf
Vancouver
Rosa MIN, Beli D, De Marqui Júnior C, Ruzzene M. Wave propagation in elastic quasicrystals [Internet]. Proceedings. 2022 ;[citado 2025 dez. 06 ] Available from: https://repositorio.usp.br/directbitstream/2e12a8e5-81cf-491a-b63b-f172b300c2ca/scopus.pdf
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LAHR, Gustavo José Giardini et al. A hybrid model-based evolutionary optimization with passive boundaries for physical human-robot interaction. 2022, Anais.. Piscataway, NJ, USA: IEEE, 2022. Disponível em: https://doi.org/10.1109/ICRA46639.2022.9811606. Acesso em: 06 dez. 2025.
APA
Lahr, G. J. G., Garcia, H. B., Ajoudani, A., Cunha, T. B., & Caurin, G. A. de P. (2022). A hybrid model-based evolutionary optimization with passive boundaries for physical human-robot interaction. In Proceedings. Piscataway, NJ, USA: IEEE. doi:10.1109/ICRA46639.2022.9811606
NLM
Lahr GJG, Garcia HB, Ajoudani A, Cunha TB, Caurin GA de P. A hybrid model-based evolutionary optimization with passive boundaries for physical human-robot interaction [Internet]. Proceedings. 2022 ;[citado 2025 dez. 06 ] Available from: https://doi.org/10.1109/ICRA46639.2022.9811606
Vancouver
Lahr GJG, Garcia HB, Ajoudani A, Cunha TB, Caurin GA de P. A hybrid model-based evolutionary optimization with passive boundaries for physical human-robot interaction [Internet]. Proceedings. 2022 ;[citado 2025 dez. 06 ] Available from: https://doi.org/10.1109/ICRA46639.2022.9811606
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SCHIMIDT, C. e DE MARQUI JÚNIOR, Carlos e OLIVEIRA, Leopoldo Pisanelli Rodrigues de. Broadening noise reduction via graded smart metamaterials. 2022, Anais.. Leuven, Belgium: Escola de Engenharia de São Carlos, Universidade de São Paulo, 2022. Disponível em: https://repositorio.usp.br/directbitstream/45572c8b-898d-4462-83be-67564d3b4783/Engineering_Village_detailed_7-11-2024_1730534.pdf. Acesso em: 06 dez. 2025.
APA
Schimidt, C., De Marqui Júnior, C., & Oliveira, L. P. R. de. (2022). Broadening noise reduction via graded smart metamaterials. In Proceedings. Leuven, Belgium: Escola de Engenharia de São Carlos, Universidade de São Paulo. Recuperado de https://repositorio.usp.br/directbitstream/45572c8b-898d-4462-83be-67564d3b4783/Engineering_Village_detailed_7-11-2024_1730534.pdf
NLM
Schimidt C, De Marqui Júnior C, Oliveira LPR de. Broadening noise reduction via graded smart metamaterials [Internet]. Proceedings. 2022 ;[citado 2025 dez. 06 ] Available from: https://repositorio.usp.br/directbitstream/45572c8b-898d-4462-83be-67564d3b4783/Engineering_Village_detailed_7-11-2024_1730534.pdf
Vancouver
Schimidt C, De Marqui Júnior C, Oliveira LPR de. Broadening noise reduction via graded smart metamaterials [Internet]. Proceedings. 2022 ;[citado 2025 dez. 06 ] Available from: https://repositorio.usp.br/directbitstream/45572c8b-898d-4462-83be-67564d3b4783/Engineering_Village_detailed_7-11-2024_1730534.pdf
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BELI, Danilo et al. High-order wave directionality and topological valley modes in elastic quasicrystals. 2022, Anais.. Leuven, Belgium: Escola de Engenharia de São Carlos, Universidade de São Paulo, 2022. Disponível em: https://repositorio.usp.br/directbitstream/367d0aeb-d686-414a-b9fb-b0d399e01e8f/Engineering_Village_detailed_7-11-2024_18381049.pdf. Acesso em: 06 dez. 2025.
APA
Beli, D., Rosa, M. I. N., De Marqui Júnior, C., & Ruzzene, M. (2022). High-order wave directionality and topological valley modes in elastic quasicrystals. In Proceedings. Leuven, Belgium: Escola de Engenharia de São Carlos, Universidade de São Paulo. Recuperado de https://repositorio.usp.br/directbitstream/367d0aeb-d686-414a-b9fb-b0d399e01e8f/Engineering_Village_detailed_7-11-2024_18381049.pdf
NLM
Beli D, Rosa MIN, De Marqui Júnior C, Ruzzene M. High-order wave directionality and topological valley modes in elastic quasicrystals [Internet]. Proceedings. 2022 ;[citado 2025 dez. 06 ] Available from: https://repositorio.usp.br/directbitstream/367d0aeb-d686-414a-b9fb-b0d399e01e8f/Engineering_Village_detailed_7-11-2024_18381049.pdf
Vancouver
Beli D, Rosa MIN, De Marqui Júnior C, Ruzzene M. High-order wave directionality and topological valley modes in elastic quasicrystals [Internet]. Proceedings. 2022 ;[citado 2025 dez. 06 ] Available from: https://repositorio.usp.br/directbitstream/367d0aeb-d686-414a-b9fb-b0d399e01e8f/Engineering_Village_detailed_7-11-2024_18381049.pdf
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LAHR, Gustavo José Giardini et al. Genetic approach for coupled dynamics optimization in a multiple degree-of-freedom system. 2020, Anais.. Piscataway, NJ, USA: IEEE, 2020. Disponível em: https://repositorio.usp.br/directbitstream/30798964-bff5-41c0-9fdf-b2dd7dd03e9d/09307457.pdf. Acesso em: 06 dez. 2025.
APA
Lahr, G. J. G., Marão, L. A. B., Garcia, H. B., Cunha, T. B., & Caurin, G. A. de P. (2020). Genetic approach for coupled dynamics optimization in a multiple degree-of-freedom system. In Proceedings. Piscataway, NJ, USA: IEEE. Recuperado de https://repositorio.usp.br/directbitstream/30798964-bff5-41c0-9fdf-b2dd7dd03e9d/09307457.pdf
NLM
Lahr GJG, Marão LAB, Garcia HB, Cunha TB, Caurin GA de P. Genetic approach for coupled dynamics optimization in a multiple degree-of-freedom system [Internet]. Proceedings. 2020 ;[citado 2025 dez. 06 ] Available from: https://repositorio.usp.br/directbitstream/30798964-bff5-41c0-9fdf-b2dd7dd03e9d/09307457.pdf
Vancouver
Lahr GJG, Marão LAB, Garcia HB, Cunha TB, Caurin GA de P. Genetic approach for coupled dynamics optimization in a multiple degree-of-freedom system [Internet]. Proceedings. 2020 ;[citado 2025 dez. 06 ] Available from: https://repositorio.usp.br/directbitstream/30798964-bff5-41c0-9fdf-b2dd7dd03e9d/09307457.pdf
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BOCCATO, Bruno Ribeiro e BRAVO MOSQUERA, Pedro David e CATALANO, Fernando Martini. Experimental assessment of a non-conventional fighter aircraft: effects of canard on the performance of a dorsal intake. 2019, Anais.. Reston, VA, USA: AIAA, 2019. Disponível em: https://doi.org/10.2514/6.2019-4200. Acesso em: 06 dez. 2025.
APA
Boccato, B. R., Bravo Mosquera, P. D., & Catalano, F. M. (2019). Experimental assessment of a non-conventional fighter aircraft: effects of canard on the performance of a dorsal intake. In Proceedings. Reston, VA, USA: AIAA. doi:10.2514/6.2019-4200
NLM
Boccato BR, Bravo Mosquera PD, Catalano FM. Experimental assessment of a non-conventional fighter aircraft: effects of canard on the performance of a dorsal intake [Internet]. Proceedings. 2019 ;[citado 2025 dez. 06 ] Available from: https://doi.org/10.2514/6.2019-4200
Vancouver
Boccato BR, Bravo Mosquera PD, Catalano FM. Experimental assessment of a non-conventional fighter aircraft: effects of canard on the performance of a dorsal intake [Internet]. Proceedings. 2019 ;[citado 2025 dez. 06 ] Available from: https://doi.org/10.2514/6.2019-4200
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MARÃO, Luiz Afonso et al. Deep reinforcement learning control of an autonomous wheeled robot in a challenge task: combined visual and dynamics sensoring. 2019, Anais.. Los Alamitos: IEEE, 2019. Disponível em: https://doi.org/10.1109/ICAR46387.2019.8981598. Acesso em: 06 dez. 2025.
APA
Marão, L. A., Casteluci, L. C., Godoy, R. V. de, Garcia, H. B., Magalhães, D. V., & Caurin, G. A. de P. (2019). Deep reinforcement learning control of an autonomous wheeled robot in a challenge task: combined visual and dynamics sensoring. In Proceedings. Los Alamitos: IEEE. doi:10.1109/ICAR46387.2019.8981598
NLM
Marão LA, Casteluci LC, Godoy RV de, Garcia HB, Magalhães DV, Caurin GA de P. Deep reinforcement learning control of an autonomous wheeled robot in a challenge task: combined visual and dynamics sensoring [Internet]. Proceedings. 2019 ;[citado 2025 dez. 06 ] Available from: https://doi.org/10.1109/ICAR46387.2019.8981598
Vancouver
Marão LA, Casteluci LC, Godoy RV de, Garcia HB, Magalhães DV, Caurin GA de P. Deep reinforcement learning control of an autonomous wheeled robot in a challenge task: combined visual and dynamics sensoring [Internet]. Proceedings. 2019 ;[citado 2025 dez. 06 ] Available from: https://doi.org/10.1109/ICAR46387.2019.8981598
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REIS, Danillo Cafaldo dos et al. A study on the 3D effects of slat cove fillers. 2019, Anais.. Reston, VA, USA: AIAA, 2019. Disponível em: https://doi.org/10.2514/6.2019-2406. Acesso em: 06 dez. 2025.
APA
Reis, D. C. dos, Coelho, E. L. C., Pereira, L. T. L., Catalano, F. M., & Lima, L. S. de M. (2019). A study on the 3D effects of slat cove fillers. In Proceedings. Reston, VA, USA: AIAA. doi:10.2514/6.2019-2406
NLM
Reis DC dos, Coelho ELC, Pereira LTL, Catalano FM, Lima LS de M. A study on the 3D effects of slat cove fillers [Internet]. Proceedings. 2019 ;[citado 2025 dez. 06 ] Available from: https://doi.org/10.2514/6.2019-2406
Vancouver
Reis DC dos, Coelho ELC, Pereira LTL, Catalano FM, Lima LS de M. A study on the 3D effects of slat cove fillers [Internet]. Proceedings. 2019 ;[citado 2025 dez. 06 ] Available from: https://doi.org/10.2514/6.2019-2406
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MATHIAS, Marlon Sproesser e MEDEIROS, Marcello Augusto Faraco de. Global instability analysis of a boundary layer flow over a small cavity. 2019, Anais.. Reston, VA, USA: AIAA, 2019. Disponível em: https://doi.org/10.2514/6.2019-3535. Acesso em: 06 dez. 2025.
APA
Mathias, M. S., & Medeiros, M. A. F. de. (2019). Global instability analysis of a boundary layer flow over a small cavity. In Proceedings. Reston, VA, USA: AIAA. doi:10.2514/6.2019-3535
NLM
Mathias MS, Medeiros MAF de. Global instability analysis of a boundary layer flow over a small cavity [Internet]. Proceedings. 2019 ;[citado 2025 dez. 06 ] Available from: https://doi.org/10.2514/6.2019-3535
Vancouver
Mathias MS, Medeiros MAF de. Global instability analysis of a boundary layer flow over a small cavity [Internet]. Proceedings. 2019 ;[citado 2025 dez. 06 ] Available from: https://doi.org/10.2514/6.2019-3535
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RIBEIRO, Daniel Garcia e BRAVO MOSQUERA, Pedro David e CERÓN MUÑOZ, Hernán Darío. Heat transfer effects on aerodynamic performance of a S809 airfoil for wind turbine application. 2019, Anais.. Reston, VA, USA: AIAA, 2019. Disponível em: https://repositorio.usp.br/directbitstream/558bdbaf-a0df-406a-aee5-d60273db8fa1/trabalho%2001%20-%20Heat%20transfer%20effects%20on%20aerodynamic%20performance%20of%20a%20S809%20airfoil%20for%20wind%20turbine%20application%20%28AIAA%20Propulsion%20and%20Energy%202019%20Forum%29.pdf. Acesso em: 06 dez. 2025.
APA
Ribeiro, D. G., Bravo Mosquera, P. D., & Cerón Muñoz, H. D. (2019). Heat transfer effects on aerodynamic performance of a S809 airfoil for wind turbine application. In Proceedings. Reston, VA, USA: AIAA. Recuperado de https://repositorio.usp.br/directbitstream/558bdbaf-a0df-406a-aee5-d60273db8fa1/trabalho%2001%20-%20Heat%20transfer%20effects%20on%20aerodynamic%20performance%20of%20a%20S809%20airfoil%20for%20wind%20turbine%20application%20%28AIAA%20Propulsion%20and%20Energy%202019%20Forum%29.pdf
NLM
Ribeiro DG, Bravo Mosquera PD, Cerón Muñoz HD. Heat transfer effects on aerodynamic performance of a S809 airfoil for wind turbine application [Internet]. Proceedings. 2019 ;[citado 2025 dez. 06 ] Available from: https://repositorio.usp.br/directbitstream/558bdbaf-a0df-406a-aee5-d60273db8fa1/trabalho%2001%20-%20Heat%20transfer%20effects%20on%20aerodynamic%20performance%20of%20a%20S809%20airfoil%20for%20wind%20turbine%20application%20%28AIAA%20Propulsion%20and%20Energy%202019%20Forum%29.pdf
Vancouver
Ribeiro DG, Bravo Mosquera PD, Cerón Muñoz HD. Heat transfer effects on aerodynamic performance of a S809 airfoil for wind turbine application [Internet]. Proceedings. 2019 ;[citado 2025 dez. 06 ] Available from: https://repositorio.usp.br/directbitstream/558bdbaf-a0df-406a-aee5-d60273db8fa1/trabalho%2001%20-%20Heat%20transfer%20effects%20on%20aerodynamic%20performance%20of%20a%20S809%20airfoil%20for%20wind%20turbine%20application%20%28AIAA%20Propulsion%20and%20Energy%202019%20Forum%29.pdf
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
ABNT
MARÃO, Luiz Afonso Batalha et al. Deep reinforcement learning control of autonomous terrestrial wheeled robots in a challenge task. 2019, Anais.. São Bernardo do Campo, SP: FEI, 2019. Disponível em: https://repositorio.usp.br/directbitstream/3a152ae1-f99a-4754-a6db-950a7ca2e41d/trabalho%2001%20Deep%20Reinforcement%20Learning%20Control%20of%20Autonomous%20Terrestrial%20Wheeled%20Robots%20in%20a%20Challenge%20Task%20II%20WORKSHOP%20BRASILEIRO%20DE%20ROB%C3%94S%20HUMANOIDES%20%28BRAHUR%29%20E%20III%20WORKSHOP%20BRASILEIRO%20DE%20ROB%C3%94S%20DE%20SERVI%C3%87O%20%28BRAS.pdf. Acesso em: 06 dez. 2025.
APA
Marão, L. A. B., Garcia, H. B., Casteluci, L. C., Magalhães, D. V., & Caurin, G. A. de P. (2019). Deep reinforcement learning control of autonomous terrestrial wheeled robots in a challenge task. In Proceedings. São Bernardo do Campo, SP: FEI. Recuperado de https://repositorio.usp.br/directbitstream/3a152ae1-f99a-4754-a6db-950a7ca2e41d/trabalho%2001%20Deep%20Reinforcement%20Learning%20Control%20of%20Autonomous%20Terrestrial%20Wheeled%20Robots%20in%20a%20Challenge%20Task%20II%20WORKSHOP%20BRASILEIRO%20DE%20ROB%C3%94S%20HUMANOIDES%20%28BRAHUR%29%20E%20III%20WORKSHOP%20BRASILEIRO%20DE%20ROB%C3%94S%20DE%20SERVI%C3%87O%20%28BRAS.pdf
NLM
Marão LAB, Garcia HB, Casteluci LC, Magalhães DV, Caurin GA de P. Deep reinforcement learning control of autonomous terrestrial wheeled robots in a challenge task [Internet]. Proceedings. 2019 ;[citado 2025 dez. 06 ] Available from: https://repositorio.usp.br/directbitstream/3a152ae1-f99a-4754-a6db-950a7ca2e41d/trabalho%2001%20Deep%20Reinforcement%20Learning%20Control%20of%20Autonomous%20Terrestrial%20Wheeled%20Robots%20in%20a%20Challenge%20Task%20II%20WORKSHOP%20BRASILEIRO%20DE%20ROB%C3%94S%20HUMANOIDES%20%28BRAHUR%29%20E%20III%20WORKSHOP%20BRASILEIRO%20DE%20ROB%C3%94S%20DE%20SERVI%C3%87O%20%28BRAS.pdf
Vancouver
Marão LAB, Garcia HB, Casteluci LC, Magalhães DV, Caurin GA de P. Deep reinforcement learning control of autonomous terrestrial wheeled robots in a challenge task [Internet]. Proceedings. 2019 ;[citado 2025 dez. 06 ] Available from: https://repositorio.usp.br/directbitstream/3a152ae1-f99a-4754-a6db-950a7ca2e41d/trabalho%2001%20Deep%20Reinforcement%20Learning%20Control%20of%20Autonomous%20Terrestrial%20Wheeled%20Robots%20in%20a%20Challenge%20Task%20II%20WORKSHOP%20BRASILEIRO%20DE%20ROB%C3%94S%20HUMANOIDES%20%28BRAHUR%29%20E%20III%20WORKSHOP%20BRASILEIRO%20DE%20ROB%C3%94S%20DE%20SERVI%C3%87O%20%28BRAS.pdf
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
ABNT
GIGENA CUENCA, Rafael e GRECO JÚNIOR, Paulo Celso e MARTÍNEZ ROCAMORA JUNIOR, Bernardo. Parametric investigation of EESC-USP aeroacoustic fan rig. 2018, Anais.. Edinburgh, UK: ICAS, 2018. Disponível em: https://repositorio.usp.br/directbitstream/dac92081-b591-461c-b6c2-36d72d42eab6/AP8F33~1.PDF. Acesso em: 06 dez. 2025.
APA
Gigena Cuenca, R., Greco Júnior, P. C., & Martínez Rocamora Junior, B. (2018). Parametric investigation of EESC-USP aeroacoustic fan rig. In Proceedings. Edinburgh, UK: ICAS. Recuperado de https://repositorio.usp.br/directbitstream/dac92081-b591-461c-b6c2-36d72d42eab6/AP8F33~1.PDF
NLM
Gigena Cuenca R, Greco Júnior PC, Martínez Rocamora Junior B. Parametric investigation of EESC-USP aeroacoustic fan rig [Internet]. Proceedings. 2018 ;[citado 2025 dez. 06 ] Available from: https://repositorio.usp.br/directbitstream/dac92081-b591-461c-b6c2-36d72d42eab6/AP8F33~1.PDF
Vancouver
Gigena Cuenca R, Greco Júnior PC, Martínez Rocamora Junior B. Parametric investigation of EESC-USP aeroacoustic fan rig [Internet]. Proceedings. 2018 ;[citado 2025 dez. 06 ] Available from: https://repositorio.usp.br/directbitstream/dac92081-b591-461c-b6c2-36d72d42eab6/AP8F33~1.PDF
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
ABNT
REGO, Leandro Falcão Loureiro et al. Aerodynamic and aeroacoustic experimental investigation of a simplified nose landing gear. 2018, Anais.. Reston, VA, USA: AIAA, 2018. Disponível em: https://doi.org/10.2514/6.2018-0759. Acesso em: 06 dez. 2025.
APA
Rego, L. F. L., Pereira, L. T. L., Catalano, F. M., Speth, R., Bent, P., & Fregnani, J. A. (2018). Aerodynamic and aeroacoustic experimental investigation of a simplified nose landing gear. In Proceedings. Reston, VA, USA: AIAA. doi:10.2514/6.2018-0759
NLM
Rego LFL, Pereira LTL, Catalano FM, Speth R, Bent P, Fregnani JA. Aerodynamic and aeroacoustic experimental investigation of a simplified nose landing gear [Internet]. Proceedings. 2018 ;[citado 2025 dez. 06 ] Available from: https://doi.org/10.2514/6.2018-0759
Vancouver
Rego LFL, Pereira LTL, Catalano FM, Speth R, Bent P, Fregnani JA. Aerodynamic and aeroacoustic experimental investigation of a simplified nose landing gear [Internet]. Proceedings. 2018 ;[citado 2025 dez. 06 ] Available from: https://doi.org/10.2514/6.2018-0759