VIDEO PORTERO USANDO TARJETAS RASPBERRY PI 3 (VIDEO INTERCOM USING RASPBERRY PI 3 CARDS)

José Ignacio Vega Luna, Gerardo Salgado Guzmán, Mario Alberto Lagos Acosta, Francisco Javier Sánchez Rangel, José Francisco Cosme Aceves

Resumen


Se presenta el desarrollo de un video portero para edificios de oficinas integrado por un módulo maestro y tres módulos esclavos. El módulo maestro, instalado en la puerta del edificio, está compuesto por: una tarjeta Raspberry Pi, una cámara de video, una pantalla táctil, un micrófono USB y una bocina. Los módulos esclavos, instalados en las oficinas del edificio, están compuestos por: una tarjeta Raspberry Pi, una pantalla táctil, un micrófono USB y una bocina. Las funciones del video portero son: anunciar al visitante con un tono de timbre y comunicarlo con el residente a través de transmisión de audio y video en tiempo real, abrir la puerta y permitir al visitante registrar un mensaje. Se logró un alcance de 45 metros con línea de vista en la comunicación WiFi entre los módulos y el punto de acceso y un retraso máximo de la señal de video de 50 ms.

The development of a video intercom for office buildings is presented, composed of a master module and three slave modules. The master module, installed in the door of the building, is composed of: a Raspberry Pi card, a video camera, a touch screen, a USB microphone and a speaker. The slave modules, installed in the offices of the building, are composed of: a Raspberry Pi card, a touch screen, a USB microphone and a speaker. The functions of the video intercom are: announce the visitor with a ring tone and communicate it with the resident through audio and video transmission in real time, open the door and allow the visitor to register a message. A range of 45 meters was achieved with line of sight in the WiFi communication between the modules and the access point and a maximum delay of the 50 ms video signal.


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Referencias


Arnold, O., Kirsch, L. & Schulz, A. An interactive concierge for independent living. IEEE 3rd Global Conference on Consumer Electronics (GCCE) Proceedings. Tokyo, Japan. Oct., 2014.

Banu, V. C., Costea, I. M. & Nemtanu, F. C. Intelligent video surveillance system. IEEE 23rd International Symposium for Design and Technology in Electronic Packaging (SIITME) Proceedings. Constanta, Romania. Oct., 2017.

Chang, K. C., Liu, P. K. & Yu, C. S. Design of real-time video streaming and object tracking system for home care services. IEEE International Conference on Consumer Electronics-Taiwan (ICCE-TW) Proceedings. Nantou, Taiwan. May, 2016.

Conci, N., De Natale, F. G. & Messelodi, S. An integrated framework for video surveillance in complex environments. IEEE International Smart Cities Conference (ISC2) Proceedings. Trento, Italy. Sept., 2016.

Gatimu, K., Dhamodaran, A. & Johnson, T. Experimental study of low-latency HD VoD streaming using flexible dual TCP-UDP streaming protocol. 15th IEEE Annual Consumer Communications & Networking Conference (CCNC) Proceedings. Las Vegas, NV, USA. Jan., 2018.

Joshi, N. B. & Nalbalwar, S. L. A fall detection and alert system for an elderly using computer vision and Internet of Things. 2nd IEEE International Conference on Recent Trends in Electronics, Information & Communication Technology (RTEICT) Proceedings. Bangalore, India. May, 2017.

Konda, K. R., Tefera, Y. T. & Conci, N. Real-time moving object detection and segmentation in H.264 video streams. IEEE International Symposium on Broadband Multimedia Systems and Broadcasting (BMSB) Proceedings. Cagliari, Italy. June, 2017.

Myakala, P. R., Nalumachu, R. & Sharma, S. A low cost intelligent smart system for real time infant monitoring and cry detection. TENCON 2017-IEEE Region 10 Conference Proceedings. Penang, Malaysia. Nov., 2017.

Nightingale, J., Salva-Garcia, P. & Alcaraz Calero, J. M. 5G-QoE: QoE Modelling for Ultra-HD Video Streaming in 5G Networks. IEEE Transactions on Broadcasting. (Early Access), 2018.

Quadri, S. A. & Sathish, P. IoT based home automation and surveillance system. International Conference on Intelligent Computing and Control Systems (ICICCS) Proceedings. Madurai, India. June, 2017.

Watanabe, T., Mochizuki, R. & Kobayashi, T. HACCS: Home Appliance Control Concierge System: Extending Functions on Web Service. IEEE 37th Annual Computer Software and Applications Conference Proceedings. Kyoto, Japan. July, 2013.

Zahran, A. H., Raca, D. & Sreenan, C. ARBITER+: Adaptive Rate-Based InTElligent HTTP StReaming Algorithm for Mobile Networks. IEEE Transactions on Mobile Computing. (Early Access), April, 2018.

Zhang, X., Toni, L. & Frossard, P. Adaptive Streaming in Interactive Multiview Video Systems. IEEE Trans. on Circuits and Systems for Video Technology. (Early Access), March, 2018.






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