CFP last date
22 April 2024
Reseach Article

Designing and Building an Over Voltage Protection System for a Smart Home

by Osama T. Rashid, Abdulmuttalib T. Rashid, Israa Sabri A. AL-Forati, Alaa I. AL-Mayoof
International Journal of Computer Applications
Foundation of Computer Science (FCS), NY, USA
Volume 178 - Number 39
Year of Publication: 2019
Authors: Osama T. Rashid, Abdulmuttalib T. Rashid, Israa Sabri A. AL-Forati, Alaa I. AL-Mayoof
10.5120/ijca2019919276

Osama T. Rashid, Abdulmuttalib T. Rashid, Israa Sabri A. AL-Forati, Alaa I. AL-Mayoof . Designing and Building an Over Voltage Protection System for a Smart Home. International Journal of Computer Applications. 178, 39 ( Aug 2019), 25-30. DOI=10.5120/ijca2019919276

@article{ 10.5120/ijca2019919276,
author = { Osama T. Rashid, Abdulmuttalib T. Rashid, Israa Sabri A. AL-Forati, Alaa I. AL-Mayoof },
title = { Designing and Building an Over Voltage Protection System for a Smart Home },
journal = { International Journal of Computer Applications },
issue_date = { Aug 2019 },
volume = { 178 },
number = { 39 },
month = { Aug },
year = { 2019 },
issn = { 0975-8887 },
pages = { 25-30 },
numpages = {9},
url = { https://ijcaonline.org/archives/volume178/number39/30794-2019919276/ },
doi = { 10.5120/ijca2019919276 },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Journal Article
%1 2024-02-07T00:52:37.345719+05:30
%A Osama T. Rashid
%A Abdulmuttalib T. Rashid
%A Israa Sabri A. AL-Forati
%A Alaa I. AL-Mayoof
%T Designing and Building an Over Voltage Protection System for a Smart Home
%J International Journal of Computer Applications
%@ 0975-8887
%V 178
%N 39
%P 25-30
%D 2019
%I Foundation of Computer Science (FCS), NY, USA
Abstract

The aim of this paper is to design and construct an over voltage protection system for a smart home. This system is designed to control the operation of a multi-device according to their priority and the amount of current allowed to be used for each home. The important part of the system is the main control unit, which receives the readings of the devices by using current sensors - one for each device. The algorithm used for controlling the operation of each device is implemented in software using the Visual Basic program, to show the principle of the operating system. Furthermore, the system is constructed on an Arduino microcontroller and several current sensors to measure the current drawn by each device. The same algorithm which is implemented in the software is applied to the microcontroller to save the energy drawn by the devices. The control system designed is tested in several experiments to show its performance.

References
  1. F. K. Handhal and A. T. Rashid, ” A prototype Design for Three Phase Smart Energy Meter“, Second Al-Sadiq International Conference on Multidisciplinary in IT and Communication Science and Applications, 2017.
  2. F. K. Handhal and A. T. Rashid, “Design and building a single-phase smart energy meter using Arduino and RF communication system “, Proc. of the 3rd Int. Sci. Conf., (14-15/march/2018).
  3. A. T. Rashid and M. T. Rashid,” Design and Implementation of Load Balancing System for a Smart Home“, Proc. of the 3rd Int. Sci. Conf., (14-15/march/2018).
  4. F. K. Handhal and A. T. Rashid,, ” Load Balancing in Distribution System Using Heuristic Search Algorithm “ , International Conference on Advances in Sustainable Engineering and Applications (ICASEA), Wasit University, Kut, Iraq, pp. 48-53, 2018.
  5. A. T. Rashid, F. K. Handhal and O. T. Rashid,” Wireless Control system for Three Phase Loads Balancing in Distribution Networks “, International Journal of Computer Applications (0975 – 8887) Vol. 182 – No. 7, pp. 38-46, 2018.
  6. R. Panna, R. Thesrumluk and C. Chantrapornchai, “ Development of Energy Saving Smart Home Prototype
  7. International Journal of Smart Home, Vol. 7, No. 1, pp. 47-66, 2013.
  8. [G. Gao and K. Whitehouse,” The Self-Programming Thermostat: Optimizing Setback Schedules based on Home Occupancy Patterns”, In Proceedings of the First ACM Workshop on Embedded Sensing Systems for Energy-Efficiency in Buildings. Berkeley, California: ACM Press, pp. 62–77, 2009.
  9. S. Lee,” Occupancy prediction algorithms for thermostat control systems using mobile devices”, In IEEE Transactions on Smart Grid, pp. 1332–1340, 2013.
  10. V. L. Erickson, M. A. Carreira-Perpiñán and A. E. “OBSERVE: Occupancy-Based System for Efficient Reduction of HVAC Energy. In Information Processing in Sensor Networks (IPSN), 2011 10th International Conference on. IEEE, 2011.
  11. M. Gupta, S. Intille and K. Larson, “Adding GPS-control to traditional thermostats: An exploration of potential energy savings and design challenges”, In Pervasive Computing. Springer Berlin Heidelberg, pp. 95–114, 2009.
  12. W. Kleiminger, F. Mattern and S. Santini,”Predicting household occupancy for smart heating control: A comparative performance analysis of state-of-the-art approaches”, Energy and Buildings, Vol. 85, pp.493–505, 2014.
Index Terms

Computer Science
Information Sciences

Keywords

Over voltage system Current sensors Arduino microcontroller.