Solar Empowerment: A Critical Review of Intelligent Home Automation Technologies

Year : 2024 | Volume :14 | Issue : 01 | Page : 25-31
By

S.B. Pawar1,

Pranik Abrol,

Adarsh Mishra,

Sarthak Adgurwar,

  1. Professor,, Sinhgad College of Engineering, Vadgoaan (BK) Pune,, Maharashtra,, India
  2. Student,, Sinhgad College of Engineering, Vadgoaan (BK) Pune,, Maharashtra,,
  3. Student,, Sinhgad College of Engineering, Vadgoaan (BK) Pune,, Maharashtra,, India
  4. Student,, Sinhgad College of Engineering, Vadgoaan (BK) Pune,, Maharashtra,, India

Abstract

An innovative way to improve domestic lifestyle is with the Interactive Powered by solar energy Automated Home System, which combines smart technology with renewable energy. This system leverages solar power to sustainably meet energy needs, ensuring an eco- friendly and cost-effective solution. The heart of ISPHAS lies in its intelligent automation, seamlessly interconnecting various household devices and systems to optimize energy consumption and enhance overall efficiency. Through advanced sensors and machine learning algorithms, ISPHAS adapts to occupants’ behavior, learning their preferences to automate lighting, heating, cooling, and other appliances. To optimise the use of renewable materials, the solar power management component constantly modifies the distribution of energy based on current weather and demand. In order to protect the home and its occupants, the system also includes strong security measures like automated door locking and smart surveillance. The ISPHAS provides users with remote control and monitoring capabilities through a user-friendly interface, accessible via smartphones or other devices. By fostering a symbiotic relationship between solar power and intelligent automation, this system not only reduces carbon footprints but also offers a streamlined and convenient lifestyle. ISPHAS represents a paradigm shift towards sustainable, energy- efficient, and intelligent homes in the era of smart living.

Keywords: Solar panel, gas sensor, automation system, GSM, arduino UNO

[This article belongs to Journal of Nuclear Engineering & Technology (jonet)]

How to cite this article:
S.B. Pawar1, Pranik Abrol, Adarsh Mishra, Sarthak Adgurwar. Solar Empowerment: A Critical Review of Intelligent Home Automation Technologies. Journal of Nuclear Engineering & Technology. 2024; 14(01):25-31.
How to cite this URL:
S.B. Pawar1, Pranik Abrol, Adarsh Mishra, Sarthak Adgurwar. Solar Empowerment: A Critical Review of Intelligent Home Automation Technologies. Journal of Nuclear Engineering & Technology. 2024; 14(01):25-31. Available from: https://journals.stmjournals.com/jonet/article=2024/view=175866


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References

  1. Jones P, Wynn M, Hillier D, Comfort D. The sustainable development goals and information and communication technologies. Indonesian Journal of Sustainability Accounting and Management. 2017;1(1):1â-5.
  2. smith, J., Johnson, A. (2020). Smart Home Automation: Integrating Renewable Energy and Safety Features. International Journal of Sustainable Energy, 45(3), 215-226.
  3. Patel, N., Sharma, R. (2019). Solar-Powered Home Automation Systems: A Review. Renewable and Sustainable Energy Reviews, 81, 1485-1493.
  4. Bai J, Guenther A, Turnipseed A, Duhl T, Greenberg J. Seasonal and interannual variations in whole-ecosystem BVOC emissions from a subtropical plantation in China. Atmospheric Environment. 2017 Jul 1; 161:176-90.
  5. Tanwar, S., Kumar, N., Tyagi, S., Obaidat, M. S. (2017). IoT-Based Gas Leak Detection and Safety System for Home Automation. IEEE Internet of Things Journal, 4(4), 1060-1067.
  6. Gros J, Schmidt M, Linke P, Dötsch S, Triest J, Martínez-Cabanas M, Esposito M, Dale AW, Sommer S, Flohr A, Fone J. Quantification of dissolved CO2 plumes at the Goldeneye CO2-release experiment. International Journal of Greenhouse Gas Control. 2021 Jul 1;109:103387.
  7. Regmi P, Stewart H, Amerlinck Y, Arnell M, García PJ, Johnson B, Maere T, Miletić I, Miller M, Rieger L, Samstag R. The future of WRRF modelling–outlook and challenges. Water Science and Technology. 2019 Jan 1;79(1):3-14.
  8. Chen J, Wang W, Fang B, Liu Y, Yu K, Leung VC, Hu X. Digital twin empowered wireless healthcare monitoring for smart home. IEEE Journal on Selected Areas in Communications. 2023 Aug 30.
  9. Gonzalez, L. F., Lopez, J. D., Cote, A., & Bataller, J. (2018). Arduino-Based Wireless Home Automation System Using ZigBee. IEEE Latin America Transactions, 16(9), 2349-2356.
  10. Amin, A., Saad, N. M., Abdollah, M. F., & Mustapha, A. (2021). Smart Home Automation System using Arduino and IoT. In Proceedings of the International Conference on Innovative Research and Sustainable Development (ICIRSD), 120-125.
  11. Mehta, A., Jain, P. K., & Jain, V. (2019). IoT-Based Smart Home System for Energy Management. In Proceedings of the International Conference on Innovative Mechanisms for Industry Applications (ICIMIA), 63-67.
  12. Lin, H. Y., Chang, H. S., & Hsu, C. H. (2017). An IoT-Based Home Automation System for Energy Management. IEEE Access, 5, 10683-10691.
  13. Halak, B., Rani, M., & Ahmed, S. (2018). Renewable Energy and Automation: A Review on Solar Home System. Journal of Renewable Energy, 122, 645- 654.
  14. Kumar, S., Singh, N., & Sood, Y. R. (2019). IoT- Based Home Automation and Security System. In Proceedings of the International Conference on Computational Intelligence and Data Science (ICCIDS), 51-54.
  15. Smart Home System: A Comprehensive Review,Hindawi Journal of Electrical and Computer Engineering Volume 2023, Article ID 7616683
  16. Advanced Home Automation and Security Systems Using IoT, International Journal of Engineering Research & Technology (IJERT) ISSN: 2278-0181
  17. A Hybrid MPPT Technique for Solar Photovoltaic System under Partial Shading, Eng. Proc. 2021, 12, 28. https://doi.org/10.3390/engproc2021012028
  18. Automatic Gas Leakage Detection and Shut Off System, © 2021 IJCRT | Volume 9, Issue 8 August 2021 | ISSN: 2320-2882
  19. A Smart Building Fire and Gas Leakage Alert System with Edge Computing and NG112 Emergency Call Capabilities, Information 2022, 13, 164. https://doi.org/10.3390/info13040164
  20. Smart Gas Monitoring System for Home and Industries, Smart Gas Monitoring System for Home and Industries, IOP Conf. Series: Materials Science and Engineering 981 (2020) 022003 IOP Publishing doi:10.1088/1757-899X/981/2/022003
  21. IOT based smart gas leakage detection and alert system, Shah, Proceedings of the 4th International Conference on Advances in Science & Technology (ICAST2021), Available at SSRN: https://ssrn.com/abstract=3866873 or http://dx.doi.org/10.2139/ssrn.3866873
  22. 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.

Regular Issue Subscription Review Article
Volume 14
Issue 01
Received April 24, 2024
Accepted June 3, 2024
Published June 29, 2024

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