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Unmanned Aerial Vehicles-Platforms, Applications, Security and Services

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Unmanned Aerial Vehicles-Platforms, Applications, Security and Services

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Tavares De Araujo Cesariny Calafate, CM.; Tropea, M. (2020). Unmanned Aerial Vehicles-Platforms, Applications, Security and Services. Electronics. 9(6):1-3. https://doi.org/10.3390/electronics9060975

Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/10251/165769

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Título: Unmanned Aerial Vehicles-Platforms, Applications, Security and Services
Autor: Tavares De Araujo Cesariny Calafate, Carlos Miguel Tropea, Mauro
Entidad UPV: Universitat Politècnica de València. Departamento de Informática de Sistemas y Computadores - Departament d'Informàtica de Sistemes i Computadors
Fecha difusión:
Derechos de uso: Reconocimiento (by)
Fuente:
Electronics. (eissn: 2079-9292 )
DOI: 10.3390/electronics9060975
Editorial:
MDPI AG
Versión del editor: https://doi.org/10.3390/electronics9060975
Tipo: Artículo

References

Stellin, M., Sabino, S., & Grilo, A. (2020). LoRaWAN Networking in Mobile Scenarios Using a WiFi Mesh of UAV Gateways. Electronics, 9(4), 630. doi:10.3390/electronics9040630

Hiba, A., Sántha, L. M., Zsedrovits, T., Hajder, L., & Zarandy, A. (2020). Onboard Visual Horizon Detection for Unmanned Aerial Systems with Programmable Logic. Electronics, 9(4), 614. doi:10.3390/electronics9040614

Tropea, M., Fazio, P., De Rango, F., & Cordeschi, N. (2020). A New FANET Simulator for Managing Drone Networks and Providing Dynamic Connectivity. Electronics, 9(4), 543. doi:10.3390/electronics9040543 [+]
Stellin, M., Sabino, S., & Grilo, A. (2020). LoRaWAN Networking in Mobile Scenarios Using a WiFi Mesh of UAV Gateways. Electronics, 9(4), 630. doi:10.3390/electronics9040630

Hiba, A., Sántha, L. M., Zsedrovits, T., Hajder, L., & Zarandy, A. (2020). Onboard Visual Horizon Detection for Unmanned Aerial Systems with Programmable Logic. Electronics, 9(4), 614. doi:10.3390/electronics9040614

Tropea, M., Fazio, P., De Rango, F., & Cordeschi, N. (2020). A New FANET Simulator for Managing Drone Networks and Providing Dynamic Connectivity. Electronics, 9(4), 543. doi:10.3390/electronics9040543

Chen, C.-L., Deng, Y.-Y., Weng, W., Chen, C.-H., Chiu, Y.-J., & Wu, C.-M. (2020). A Traceable and Privacy-Preserving Authentication for UAV Communication Control System. Electronics, 9(1), 62. doi:10.3390/electronics9010062

Khan, M. A., Qureshi, I. M., Ullah, I., Khan, S., Khanzada, F., & Noor, F. (2019). An Efficient and Provably Secure Certificateless Blind Signature Scheme for Flying Ad-Hoc Network Based on Multi-Access Edge Computing. Electronics, 9(1), 30. doi:10.3390/electronics9010030

Wubben, J., Fabra, F., Calafate, C. T., Krzeszowski, T., Marquez-Barja, J. M., Cano, J.-C., & Manzoni, P. (2019). Accurate Landing of Unmanned Aerial Vehicles Using Ground Pattern Recognition. Electronics, 8(12), 1532. doi:10.3390/electronics8121532

Zhou, Y., Wu, C., Wu, Q., Eli, Z. M., Xiong, N., & Zhang, S. (2019). Design and Analysis of Refined Inspection of Field Conditions of Oilfield Pumping Wells Based on Rotorcraft UAV Technology. Electronics, 8(12), 1504. doi:10.3390/electronics8121504

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