Tinoco, David | Universidad Nacional Autónoma de México |
Cruz-Morales, Raul Dali | Universidad Nacional Autónoma de México |
Farfan Quevedo, Jorge Esteban | Universidad Nacional Autónoma de México |
https://doi.org/10.58571/CNCA.AMCA.2022.030
Resumen: Today, the design and development of smart homes and the way in which the user interacts with them is becoming more and more common. There are different ways in which a user can interact with these technological elements, such as wireless communications, control from a mobile device and through voice, the latter of great relevance for this paper. The design of such buildings seeks the comfort of the individual or individuals who inhabit it, modifying the internal conditions of the property, such as interior and exterior lighting, humidity, etc. This environment control occurs due to the reading of values recorded by sensors, and the output reaction of the actuators. This paper presents the proposal for a control system of light and temperature conditions within a building through Alexa. The conditioning of such physical magnitudes is carried out by means of fuzzy controllers. The presented scheme could be easily used in an automation system.
¿Cómo citar?
Jorge Esteban Farfán Quevedo. David Tinoco Varela & Raúl Dalí Cruz Morales. Alexa application for lighting and temperature management through fuzzy controllers that can be used in a home automation environment. Memorias del Congreso Nacional de Control Automático, pp. 85-90, 2020. https://doi.org/10.58571/CNCA.AMCA.2022.030
Palabras clave
Sistemas Hombre-Máquina; Control Inteligente; Control Difuso
Referencias
- Baraka, K., Ghobril, M., Malek, S., Kanj, R., & Kayssi, A. (2013, June). Low cost arduino/android-based energyefficient home automation system with smart task scheduling. In 2013 Fifth international conference on computational intelligence, communication systems and networks (pp. 296-301). IEEE.
- Castillo L. T. & Aguilar (2019), Fuzzy Control for Wheeled Mobile Robots, in Type-2 Fuzzy Logic in Control of Nonsmooth Systems, pp. 85–96.
- Ceja, J., Rentería, R., Ruelas, R., & Ochoa, G. (2017). Módulo ESP8266 y sus aplicaciones en el internet de las cosas. Revista de Ingeniería eléctrica, 1(2), 24-36.
- Chattoraj, S. (2015). Smart Home Automation based on different sensors and Arduino as the master controller. International Journal of Scientific and Research Publications, 5(10), 1-4.
- Domínguez, H. M., & Vacas, F. S. (2006). Domótica: Un enfoque sociotécnico. Fundación Rogelio Segovia para el desarrollo de las Telecomunicaciones.
- Dotihal, R., Sopori, A., Muku, A., Deochake, N., & Varpe, D. T. (2019). Smart homes using alexa and power line communication in IoT. In International Conference on Computer Networks and Communication Technologies (pp. 241-248). Springer, Singapore.
- Ferreira, H. G. C., Canedo, E. D., & De Sousa, R. T. (2013, October). IoT architecture to enable intercommunication through REST API and UPnP using IP, ZigBee and arduino. In 2013 IEEE 9th
- international conference on wireless and mobile computing, networking and communications (WiMob) (pp. 53-60). IEEE.
- Folea, S., Bordencea, D., Hotea, C., & Valean, H. (2012, May). Smart home automation system using Wi-Fi low power devices. In Proceedings of 2012 IEEE International Conference on Automation, Quality and Testing, Robotics (pp. 569-574). IEEE.
- Gill, K., Yang, S. H., Yao, F., & Lu, X. (2009). A zigbeebased home automation system. IEEE Transactions on consumer Electronics, 55(2), 422-430.
- Guez, A., Eilbert, J. L., & Kam, M. (1988). Neural network architecture for control. IEEE control systems Magazine, 8(2), 22-25.
- Herger, L. M., & Bodarky, M. (2015, March). Engaging students with open source technologies and Arduino. In Integrated STEM Education Conference (ISEC), 2015 IEEE (pp. 27-32). IEEE. doi: 10.1109/ISECon.2015.7119938.
- Jain, S., Vaibhav, A., & Goyal, L. (2014, February). Raspberry Pi based interactive home automation system through E-mail. In 2014 International Conference on Reliability Optimization and Information Technology (ICROIT) (pp. 277-280). IEEE.
- Jamin N. F., Ghani N. M. A., Ibrahim Z., Masrom M. F., Razali N. A. A., and Almeshal A. M. (2018), Twowheeled wheelchair stabilization using interval type-2 fuzzy logic controller, J. Simul. Syst. Sci. Technol.
- Kramer, O. (2017). Genetic algorithms. In Genetic algorithm essentials (pp. 11-19). Springer, Cham. Lee, K. Y., & Choi, J. W. (2003, August). Remotecontrolled home automation system via bluetooth home network. In SICE 2003 Annual Conference (IEEE Cat. No. 03TH8734) (Vol. 3, pp. 2824-2829). IEEE.
- Nayyar, C., Valarmathi, B., & Santhi, K. (2017, April). Home security and energy efficient home automation system using arduino. In 2017 International Conference on Communication and Signal Processing (ICCSP) (pp. 1217-1221). IEEE.
- Panwar, A., Singh, A., Kumawat, R., Jaidka, S., & Garg, K. (2017, July). Eyrie smart home automation using Internet of Things. In 2017 Computing Conference (pp. 1368-1370). IEEE.
- Patchava, V., Kandala, H. B., & Babu, P. R. (2015, December). A smart home automation technique with raspberry pi using iot. In 2015 International conference on smart sensors and systems (IC-SSS) (pp. 1-4). IEEE.
- Piyare, R., & Tazil, M. (2011, June). Bluetooth based home automation system using cell phone. In 2011 IEEE 15th International Symposium on Consumer Electronics (ISCE) (pp. 192-195). IEEE.
- Sharma S., Agrawal, & Bandopadhaya, S. Springer (2019), Fuzzy Logic Controlled Variable Frequency Drives, Harmon. Search Nat. Inspired Optim. Algorithms, pp. 1153–1164.
- Sulayman, I. I. A., Almalki, S. H., Soliman, M. S., & Dwairi, M. O. (2017, May). Designing and implementation of home automation system based on remote sensing technique with Arduino Uno microcontroller. In 2017 9th IEEE-GCC Conference and Exhibition (GCCCE) (pp. 1-9). IEEE.
- Telefónica, F. (2011). Smart Cities: un primer paso hacia la internet de las cosas (Vol. 16). Fundación Telefónica.
- Teymourzadeh, R., Ahmed, S. A., Chan, K. W., & Hoong, M. V. (2013, December). Smart GSM based home automation system. In 2013 IEEE conference on systems, process & control (ICSPC) (pp. 306-309). IEEE.
- Vimal, P. V., & Shivaprakasha, K. S. (2017, July). IOT based greenhouse environment monitoring and controlling system using Arduino platform. In 2017 International Conference on Intelligent Computing, Instrumentation and Control Technologies (ICICICT) (pp. 1514-1519). IEEE.
- Zadeh L. A. (1965). Fuzzy Sets-Information and Control-1965, Inf. Control.
- Zadeh, L. A. (1988). Fuzzy logic. Computer, 21(4), 83-93.