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Automation is a wide range of technologies that minimise human involvement in various home systems to improve the quality of life. Home automation systems are becoming more common and easier to build. It is possible to adapt them for remote control via the Internet or to connect them to a home automation system. Any intelligent system is based on an energy-saving system, with a focus on the potential of intelligent home automation systems. Modern air conditioners are usually equipped with a Wi-Fi module that allows the unit to be remotely controlled or connected to a home automation system. The problem arises with slightly older air conditioners that are already installed and operating in rooms where there is not even a built-in connector for the Wi-Fi module. One such example is the popular and very good MSZ-HJ series of air conditioners from Mitsubishi Electric
Słowa kluczowe
Wydawca
Rocznik
Tom
Strony
160--164
Opis fizyczny
Bibliogr. 17 poz., fig., tab.
Twórcy
autor
- Department of Teaching Methods and Techniques, Faculty Of Mathematics And Information Technology, Lublin University of Technology, 20-618 Lublin, Poland
autor
- Department of Applied Mechanics, Faculty of Mechanical Engineering, Lublin University of Technology, 20618 Lublin, Poland
autor
- Department of Teaching Methods and Techniques, Faculty Of Mathematics And Information Technology, Lublin University of Technology, 20-618 Lublin, Poland
Bibliografia
- 1. Jin., T. Kunz. Smart home networking: Combining wireless and powerline networking. IWCMC 2011 - 7th Int. Wirel. Commun. Mob. Comput. Conf., 1276–1281, 2011. M. Janiak, Protokoły komunikacji, Politechnika Wrocławska 2015.
- 2. Huang R. A WiFi and PLC Based Smart Home Control System 2016. Iccita, 160–164,
- 3. Yan W., Wang Q., Gao Z. Smart home implementation based on Internet and WiFi technology. Chinese Control Conf. 2015 .CCC, 2015-September, 9072–9077
- 4. Tiwari S., Gedam R. Wi-Fi Based Remotely Operated Smart Home Automated System using the Concept of Internet of Things 2016; Int. J. Adv. Res. Electr. Electron. Instrum. Eng., 5(6): 4751–4758
- 5. Sood E.B., Gupta E.R. Smart Home Automation using Wi-Fi. Int. J. Trend Sci. Res. Dev., 2019; 3(2): 396–399,
- 6. Porjazoski M., Latkoski P., Popovski B. Bluetooth Low Energy-based Smart Home Android Solution. IEEE EUROCON 2019 -18th International Conference on Smart Technologies, Novi Sad, Serbia, 2019, 1–5, https://doi.org/10.1109/EUROCON.2019.8861866.
- 7. Kovatsch, Matthias. Embedding internet technology or home automation. 2010 IEEE 15th Conference on Emerging Technologies & Factory Automation (ETFA 2010) (2010): 1–8.
- 8. Kamilaris A., Andreas P., Yiallouros M. Building energy-aware smart homes using web technologies. J. Ambient Intell. Smart Environ. 2013; 5: 161–186.
- 9. Sánchez P., Jiménez M., Rosique F., Álvarez B., Iborra A. A framework for developing home automation systems: From requirements to code. Journal of Systems and Software, 2011; 84(6), 1008–1021, https://doi.org/10.1016/j.jss.2011.01.052.
- 10. Duy Long Ha, Ploix S., Zamai E., Jacominon M. A home automation system to improve household energy control, IFAC Proceedings Volumes, 2006; 39(3), 15–20, https://doi.org/10.3182/20060517-3-FR-2903.00011.
- 11. Wenjie Peng, Daizhong Su, Martin Higginson, A novel remote control system for air conditioning in low carbon emission buildings using sensor fusion and mobile communication technologies, Building
- and Environment 2019, 148, 701–713, https://doi.org/10.1016/j.buildenv.2018.11.025.
- 12. Endo T., Satodate K., Ishida K., Kanamori M., Okada K., Kogetsu K., Higashiji H. Power electronics technology applied in inverter air conditioners. 2020 23rd International Conference on Electrical
- Machines and Systems (ICEMS), Hamamatsu, Japan, 2020, 2095–2100, https://doi.org/10.23919/ICEMS50442.2020.9290812.
- 13. Arisawa K., Nigo M., Hatakeyama K., Shimokawa T., Shimomugi T., Sakai A. Motor and inverter technologies for air conditioner application. 2020 23rd International Conference on Electrical Machines and Systems (ICEMS), Hamamatsu, Japan, 2020, 2110–2113, https://doi.org/10.23919/ICEMS50442.2020.9290875.
- 14. Zulfiqar A. Hands-on ESP32 with Arduino IDE: Unleash the power of IoT with ESP32 and build exciting projects with this practical guide. Packt Publishing, 2024.
- 15. Mubarakah N., Soeharwinto., Iddha F. Prototype An ESP32-based room humidity and temperature controller with IoT. 6th International Conference on Electrical, Telecommunication and Computer Engineering (ELTICOM), Medan, Indonesia, 2022, 121–126, https://doi.org/10.1109/ELTICOM57747.2022.10038085.
- 16. https://codeload.github.com/SwiCago/HeatPump/zip/refs/heads/master, date of access 19.10.2024
- 17. https://codeload.github.com/Pedroalbuquerque/ES-P32WebServer/zip/refs/heads/master, date of access 19.10.2024.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-4518b039-5e02-47dd-a227-1a4828c9d699
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