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1703423 Vol 5 · Issue 11 Download Paper

Smart Based Solar Powered House System Design

R. Nithish Kumar M. Sethuraman A. N. Fayaz R. Subash J. Jayarajan

Subject area: Science,Engineering and Technology  ·  Area of research: Electrical and Electronics with IOT

Abstract

The design of a solar-powered smart home with a wireless sensor network is presented in this study, which addresses smart energy management, smart health care, smart ventilation, and smart people management. The sensor network is stretched throughout the building, including the entrance gate, corridor, living room, and kitchen. For wireless communication, two Internet of things (IoT) design prototypes is used: one using Bluetooth for short-range offline communication and the other using Global system for mobile communication (GSM) for long-range offline communication. For online control and monitoring, ZigBee and Wi-Fi are employed. The solar panel provides energy to the smart house via an Optimum PowerPoint tracking (MPPT) controller, which ensures maximum efficiency. When the owner is unavailable, internal infrastructure can intervene in some unanticipated situations.

Keywords

Internet of things (IoT), Smart home, MPPT, Bluetooth, ZigBee.

References

[1] A.Z. Alkar and U.B Uhar, “An internet based wireless home automation system for multifunction Devices, IEEE Trans. Consum. Electron, Vol.51, No. 4, pp.1169-1174, Nov.2000.

[2] M. O. A. Bader , I. M. A. Iman, H. M. A. Mahdi, H. A. A. Sami and S. S. Mohamed, “Design and Implementation of a Reliable Wireless RealTime Home Automation System Based on Arduino Uno Single-Board Microcontroller,” International journal of control, Automation and systems 2014, vol. 3, no. 3, pp. 11-15, 2014.

[3] M. Q. Baig, J. Maqsood, M. H. B. T. Alvi and T. A. Khan, "A Comparative Analysis on Home Automation Techniques," 2014 2nd International Conference on Artificial Intelligence, Modelling and Simulation, Madrid, 2014, pp. 109-114.

[4] S. Wu, J.B. Rendall, M.J. Smith, S.Zhu, J. Xu, H. Wang, “Survey on prediction algorithms in smart homes,” IEEE Internet of Things Journal, Vol. 4, pp. 192-195, Feb.2017.

[5] W.A.Jabbar, M.Ismail, R.Nordin, “Evaluation of energy consumption in multipath OLSR routing in smart city applications.” In Proceedings ofIEEE 11th Malaysia International Conference on Communications (MICC),2013 Nov 26, pp. 401-406.

[6] S. Jinisha, “A communication system architecture for smart homes based on internet of things," PhD dissertation, Texas A&M University-Kingsville, 2018.

[7] S. K. Das, D. J. Cook, A. Bhattacharya, E. O. Heierman, T.Y. Lin, "The role of prediction algorithms in the MavHome smart home architecture,"IEEE Wireless Communication, Vol. 9, No. 6, pp. 77-84, Dec. 2002.

[8] T. Song, R. Li, B. Mei, J.Yu, X. Xing and X. Cheng, “A privacy preserving communication protocol for IoT applications in smart homes,”IEEE Internet of Things Journal, Vol. 4, No.6, pp.1844-1852, May 2017.

[9] A. Muhammad, and U. Khalil, “Smart home automation system using Bluetooth technology,” In Proceeding of 7thInternational Conference on Innovations in Electrical Engineering and Computational Technologies (ICIEECT)Karachi,2017April 5-7, pp 1-6.

[10] A. singh and G. singh “Review on Temperature and Humidity sensing using IoT” International Journal of Advanced Research in Computer science and software engineering, Volume 6 Issue 2 pp 234-240, February 2016.

[11] H. Derhang“A survey of commercial framework for the Internet of things,” IEEE 20th Confrence on Emerging Technologies and factory Automation (ETFA) Luxemboung,2015, pp.1-8.

[12] S. kumar and S. Lee, “Android based smart home system with control via Bluetooth and internet connectivity,” 18th IEEE International Symposium on Consumer Electronics (ISCE), JeJe island, 2014, pp.1-2.

[13] H. Sharma and S. Sharma “A review of Sensor network: Technologies and applications,” Recent Advances in Engineering and Computational science (RAECS), Chandigarh 2014, pp.1-4.

[14] S. Courreges, S. Oudji, V. Meghdadi, C. Brauers and R. Kays, "Performance and interoperability evaluation of radiofrequency home automation protocols and Bluetooth Low Energy for smart grid andsmart home applications," 201 IEEE International Conference onConsumer Electronics (ICCE), Las Vegas, NV, 2016, pp. 391-392.

[15] R. Piyare and M. Tazil, "Bluetooth based home automation system using cell phone," Consumer Electronics (ISCE), 2011 IEEE 15th International Symposium on, Singapore, 2011, pp. 192-195.

How to cite this paper

R. Nithish Kumar, M. Sethuraman, A. N. Fayaz, R. Subash, J. Jayarajan "Smart Based Solar Powered House System Design" Iconic Research And Engineering Journals Volume 5 Issue 11 2022 Page 61-65
R. Nithish Kumar, M. Sethuraman, A. N. Fayaz, R. Subash, J. Jayarajan "Smart Based Solar Powered House System Design" Iconic Research And Engineering Journals, vol. 5, no. 11, May. 2022
R. Nithish Kumar, M. Sethuraman, A. N. Fayaz, R. Subash, J. Jayarajan (2022). Smart Based Solar Powered House System Design. Iconic Research And Engineering Journals, 5(11).
R. Nithish Kumar, M. Sethuraman, A. N. Fayaz, R. Subash, J. Jayarajan "Smart Based Solar Powered House System Design" Iconic Research And Engineering Journals, vol. 5, no. 11, May. 2022.
@article{1703423,
      author = {R. Nithish Kumar, M. Sethuraman, A. N. Fayaz, R. Subash, J. Jayarajan},
      title = {Smart Based Solar Powered House System Design},
      journal = {Iconic Research And Engineering Journals},
      year = {2022},
      volume = {5},
      number = {11},
      pages = {61-65},
      issn = {2456-8880},
      url = {https://www.irejournals.com/formatedpaper/1703423.pdf},
      abstract = {The design of a solar-powered smart home with a wireless sensor network is presented in this study, which addresses smart energy management, smart health care, smart ventilation, and smart people management. The sensor network is stretched throughout the building, including the entrance gate, corridor, living room, and kitchen. For wireless communication, two Internet of things (IoT) design prototypes is used: one using Bluetooth for short-range offline communication and the other using Global system for mobile communication (GSM) for long-range offline communication. For online control and monitoring, ZigBee and Wi-Fi are employed. The solar panel provides energy to the smart house via an Optimum PowerPoint tracking (MPPT) controller, which ensures maximum efficiency. When the owner is unavailable, internal infrastructure can intervene in some unanticipated situations.},
      keywords = {Internet of things (IoT), Smart home, MPPT, Bluetooth, ZigBee.},
      month = {May},
  }