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Design Multitasking Device to Protect and Control of Electrical Home Appliances

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In this research, a multi-tasking protection and control device has been designed and implemented has the ability to control and manage automatically the supply of electrical power from various sources to electric appliances connected to the light loading line (3L). At the same time, providing comprehensive protection for the appliances by delaying the supply of power for short period of time during the moment of conversion from one source to other in order to protect it from damage. The mechanism working of the proposed device depends on detecting the problem, diagnosing it and choosing the appropriate solution for it, and then organizing the supply from the appropriate source, and as a result ensure power supply to home appliances.
Rocznik
Strony
97--102
Opis fizyczny
Bibliogr. 20 poz., fot., schem., tab.
Twórcy
  • Dijlah University College, Computer Technique's Engineering Department, Baghdad, Iraq
Bibliografia
  • [1] A. K. Gupta, C. Singh, G. Singh, and A. Kumar, “Automatic cost effective phase selector,” International journal of advanced research in electrical, electronics and instrumentation engineering, vol. 4, no. 5, pp. 3919-3925, May 2015. https://doi.org/10.15662/ijareeie.2015.0405019
  • [2] Z. He, and Y. Du, “SPD Protection Distances to Household Appliances Connected in Parallel” IEEE Transactions on Electromagnetic Compatibility, vol. 56, no. 6, pp. 1377-1385, Dec. 2014, https://doi.org/10.1109/TEMC.2014.2356400
  • [3] G. Ofualagba and E. E. Udoha, “Design and Simulation of Automatic Phase Selector and Changeover Switch for 3-Phase Supply,” International Journal of Novel Research in Electrical and Mechanical Engineering, vol. 4, no. 2, pp. 28-35, May - August 2017.
  • [4] A. Ghosh, S. Chattaraj, S. Das and K. Mallick, “Design of Automatic Phase Selector From Any Available Three Phase Supply,” International Journal of Scientific and Engineering Research. vol. 7, no. 2, pp. 854-856, February 2016.
  • [5] O. Oritselaju and F. Oladipo, “Automatic Transfer Switch With Three Phase Selector,” International Journal of Scientific and Engineering Research, vol. 6, no. 7, pp. 81-87, July 2015.
  • [6] J. Sh. Jahlool, “Automatic Detection and Correction the Fault in Electrical Power Feeders Based Microcontroller,” Journal of electrical and electronic system, vol. 7, no. 3, pp. 1-6, July 2018.
  • [7] N. V. Hendwe, S. S. Vaidya, Ch. B. Bhagat and P. V. Raut, “An Automatic Phase Selector from any Available Three Phase Supply System,” International Research Journal of Engineering and Technology, vol. 7, no. 2, pp. 2981-2984, Feb. 2020.
  • [8] S. G. Naik, V. Ravi, and R. Arshiya, “Programmable Protective device for LV distribution system protection,” Protection and Control of Modern Power Systems, 14 September 2018, https://doi.org/10.1186/s41601-018-0101-5
  • [9] M. Pual, A. Chaudhury, and S. Saikia, “Hardware implementation of over voltage and under voltage protection,” International Journal of Innovative Research in Electrical, Electronics, Instrumentation and Control Engineering. vol. 3, no. 6, pp. 140-144, June 2015. https://doi.org/10.17148/IJIREEICE.2015.3631
  • [10] G. M. Bhutto, B. B. Jensen, C. L. Bak. and J. R. Pillai, “Protection of low voltage CIGRE distribution network” Smart Grid and Renewable Energy, vol. 4, pp. 489–500, January 2013. https://doi.org/10.4236/sgre.2013.49056
  • [11] G. Bhosale, A. Vakhare, A. Kaystha, A. Aher and V. Pansare, “Over voltage, under voltage protection of electrical equipment” International Research Journal of Engineering and Technology. vol. 5, no. 2, pp. 29-32, Feb. 2018.
  • [12] G. Stokes and J. Bradle, “A Practical Guide to the Wiring Regulations” 17th edition IEE wiring regulations (BS 7671:2008) Wiley online library, 2009.
  • [13] L. Louis, “working principle of arduino and using as a tool for study and research,” International Journal of Control, Automation, Communication and Systems. vol. 1, no. 2, pp. 21–29, April 2016.
  • [14] K. S. Kaswan, S. P. Singh, and Sh. Sagar, “Role Of Arduino In Real World Applications,” International Journal of Scientific and Technology Research, vol. 9, no. 01, pp. 1113-1116, January 2020.
  • [15] Y. A. Badamasi,“The Working Principle of an Arduino,” 11th International Conference on Electronics, Computer and Computation (ICECCO) . Abuja, 29 Sept to 1 Oct., pp. 1-4, (2014), https://doi.org/10.1109/ICECCO.2014.6997578
  • [16] D. Anusha, P. M. Sarma and M. N. SandhyaRani, “Appliance Remote Control Using Arduino,” International Journal of Latest Trends in Engineering and Technology. vol. 2, no.4, pp. 35-41, July 2013.
  • [17] Toshiba. ULN2003APG.[cited 2018; Available from: https://datasheet.lcsc.com/szlcsc/ULN2004APG_C14336.pdf
  • [18] E. Yilmazlar, V. Erdemirray, H. Kuscu and Volkan E., Hilmi K. and A. Güllü, “Design Of Stepper Motor Control Interface With Embedded Systems,” International Journal of Engineering Research and Development,vol. 14, no. 6, pp. 17-22, June 2018.
  • [19] D. Ćika and D. Grundler, “Proteus Virtual System Modeling Used for Microcontroller Education” 33rd International Convention MIPRO, 24- 28, May 2010.
  • [20] Ch. Fan, X. Liu, R. Ling and B. Si, “Application of proteus in Experimental Teaching and Research of Medical Electronic Circuit,” Advances in Social Science, Education and Humanities Research, 3rd International Conference on Modern Management, Education Technology, and Social Science (MMETSS), vol. 215, pp. 512-515, January 2018, https://doi.org/10.2991/mmetss-18.2018.108
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-a1ee1a4c-2674-4025-9e44-becfb201b475
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