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Year 2021, Volume: 11 Issue: 2, 153 - 164, 30.12.2021
https://doi.org/10.36222/ejt.981153

Abstract

References

  • [1] Luewarasirikula, N., (2015), A Study of Electrical Energy Saving in Office, Procedia - Social and Behavioral Sciences, vol. 197, pp. 1203 – 1208.
  • [2] Oluseyi, P. O., Somefun, T. E. , Babatunde, O. M. , Akinbulire, T. O., Oluleke O. Babayomi, O. O., Samuel A. Isaac, S. A., Babatunde, D. E., (2020), Evaluation of Energy-efficiency in Lighting Systems for Public Buildings, International Journal of Energy Economics and Policy, vol. 10, pp. 435-439.
  • [3] Khaled Bataineh. K., Alrabee, A. (2018), Improving the Energy Efficiency of the Residential Buildings in Jordan, Buildings 2018, 8, 85; doi:10.3390/buildings8070085.
  • [4] Balaras,A, Constantinos., Gaigla,G.A., Georgopoulou, E., Mirasgedis, S., Sarafidis,Y., Lalas,P.D., (2007). European Residential Buildings and Empirical Assessment of The Hellenic Building Stock, Energy, Building and Environment, Volume 42, Issue 3, March 2007, Pages 1298-1314
  • [5] Mills;B.,Schleich,J.,(2014). Household transitions to energy efficient lighting . ScienceDirect,Energy Economics.Volume 46,November,Pages 151-160
  • [6] Wagiman, K. R., Abdullah, M. N., Mohammad Radzi, N. H., Hassan M. Y., (2020) Lighting system control techniques in commercial buildings: Current trends and future directions, Journal of Building Engineering 31:101342, doi:10.1016/j.jobe.2020.101342.
  • [7] S.R.Barrold, B:K.Patel “A thyristor reactive power compensatör for fast-Varrying industrial loads”, International Journal of Electronics, vol.51, no.6, pp.763-767,198.
  • [8] Devanathan, P., (2016) A survey of harmonic distortion and reduction techniques, International Journal of Pharmacy and Technology, Researchgate, vol. 8, pp. 23581-23589.
  • [9] Adegboye, B. A., (2009) Power Quality Assessment in a Distribution Network, Advanced Materials Research (Volumes 62/64, pp. 53-59.
  • [10] Ozdemir, A. Ferikoglu, A., (2004) Low cost mixed-signal microcontroller based power measurement technique - IEE Proceedings-Science Measurement And Technology - Vol.151 - pp.253-258 - ISSN : 1350-2344 - DOI : 10.1049/ip-smt:20040242 - JUL , WOS:000222969400004.
  • [11] Atış S., Terzi Ü.K., Onat M., (2018) Comparative Investigation of Effects of Inrush Currents on Switching Components of Energy Efficient Lighting Elements. The 6th European Conference On Renewable Energy Systems, İstanbul, Turkey
  • [12] ABS Guidance Notes On Control Of Harmonıcs In Electrıcal Power Systems (2006) . American Bureau of Shipping Incorporated by Act of Legislature of the State of New York 1862 29-60
  • [13] Venkatesh, C., Kumar D. S., Sima Sarma, D.V.S S., Sydulu, M., (2008) Modelling of Nonlinear Loads and Estimation of Harmonics in Industrial Distribution System, Fifteenth National Power Systems Conference (NPSC), IIT Bombay, December 2008.
  • [14] W.M.Grady and S.Santosa,(2001) Understanding power system harmonics, USA, pp. 37 – 44
  • [15] Kumru,Arrillaga,J.,WatsonN,R.,(2003),Power SystemHarmonics,LohnWiley &Sons,USA [16] Nelson P.J., (2002), “A Beter Understanding of Harmonic Distortion in the Petrochemical Industry” IEEE Transactions on Industry Applications, vol.40, no1, pp.220-231
  • [17] Henderson, R. D., Patrick J. Rose, P.J., (1994) Harmonics: The Effects on Power Quality and Transformers, IEEE Transactions on Industry on Industry App., Vol. 30, pp. 528-532.
  • [18] Ong, S.J.B., Cheng, Y. J. (2008) An overview of international harmonics standards and guidelines (IEEE, IEC, EN, ER and STC) for low voltage system, International Power Engineering Conference, 2007. IPEC 2007.
  • [19] IEC 61000-3-2, (2004), Electromagnetic compatibility (EMC) – Part 3-2: Limits – Limits for harmonic current emissions (equipment input current ≤16 A per phase.
  • [20]Agrawal, D. C., Leff, H., (1996) Efficiency and efficacy of incandescent lamps, American Journal of Physics, vol. 64, pp. 649-654, doi:10.1119/1.18260.
  • [21] Piyush Verma,, Nitish Patel, Nirmal-Kumar C. Nair, “CFL to LED Transition: An Analysis From Harmonics Perspective”, IEEE International Conference on Power System Technology (POWERCON’16), 28 Sept.-1 Oct., Wollongong, NSW, Australia

Comparative Analysis of Lighting Elements’ Effects on Electric System

Year 2021, Volume: 11 Issue: 2, 153 - 164, 30.12.2021
https://doi.org/10.36222/ejt.981153

Abstract

Due to the increase of demand for energy requirement, and the decrease of energy sources day by day, it is being understood that it is required to efficiently use the energy sources in order to ensure the balance of demand for electric energy. The lighting elements use about 1/5 of the electric energy produced in our country. Especially while selecting the lamps with high energy efficiency, it is important to consider the circumstances which may create negativities such as harmonics, power factor, crest factor, inrush current, and flicker effect in terms of quality of power. Moreover, impurity which may occur in the network affects the other devices negatively. In this study, the quality of power of lighting elements of more than one type was examined in detail. In the experiments, technical analyses were performed by the use of 13 different lighting elements extensively used in our country at site, factory, and domestic environments, and they were evaluated in terms of their positive and negative effects on the network.

References

  • [1] Luewarasirikula, N., (2015), A Study of Electrical Energy Saving in Office, Procedia - Social and Behavioral Sciences, vol. 197, pp. 1203 – 1208.
  • [2] Oluseyi, P. O., Somefun, T. E. , Babatunde, O. M. , Akinbulire, T. O., Oluleke O. Babayomi, O. O., Samuel A. Isaac, S. A., Babatunde, D. E., (2020), Evaluation of Energy-efficiency in Lighting Systems for Public Buildings, International Journal of Energy Economics and Policy, vol. 10, pp. 435-439.
  • [3] Khaled Bataineh. K., Alrabee, A. (2018), Improving the Energy Efficiency of the Residential Buildings in Jordan, Buildings 2018, 8, 85; doi:10.3390/buildings8070085.
  • [4] Balaras,A, Constantinos., Gaigla,G.A., Georgopoulou, E., Mirasgedis, S., Sarafidis,Y., Lalas,P.D., (2007). European Residential Buildings and Empirical Assessment of The Hellenic Building Stock, Energy, Building and Environment, Volume 42, Issue 3, March 2007, Pages 1298-1314
  • [5] Mills;B.,Schleich,J.,(2014). Household transitions to energy efficient lighting . ScienceDirect,Energy Economics.Volume 46,November,Pages 151-160
  • [6] Wagiman, K. R., Abdullah, M. N., Mohammad Radzi, N. H., Hassan M. Y., (2020) Lighting system control techniques in commercial buildings: Current trends and future directions, Journal of Building Engineering 31:101342, doi:10.1016/j.jobe.2020.101342.
  • [7] S.R.Barrold, B:K.Patel “A thyristor reactive power compensatör for fast-Varrying industrial loads”, International Journal of Electronics, vol.51, no.6, pp.763-767,198.
  • [8] Devanathan, P., (2016) A survey of harmonic distortion and reduction techniques, International Journal of Pharmacy and Technology, Researchgate, vol. 8, pp. 23581-23589.
  • [9] Adegboye, B. A., (2009) Power Quality Assessment in a Distribution Network, Advanced Materials Research (Volumes 62/64, pp. 53-59.
  • [10] Ozdemir, A. Ferikoglu, A., (2004) Low cost mixed-signal microcontroller based power measurement technique - IEE Proceedings-Science Measurement And Technology - Vol.151 - pp.253-258 - ISSN : 1350-2344 - DOI : 10.1049/ip-smt:20040242 - JUL , WOS:000222969400004.
  • [11] Atış S., Terzi Ü.K., Onat M., (2018) Comparative Investigation of Effects of Inrush Currents on Switching Components of Energy Efficient Lighting Elements. The 6th European Conference On Renewable Energy Systems, İstanbul, Turkey
  • [12] ABS Guidance Notes On Control Of Harmonıcs In Electrıcal Power Systems (2006) . American Bureau of Shipping Incorporated by Act of Legislature of the State of New York 1862 29-60
  • [13] Venkatesh, C., Kumar D. S., Sima Sarma, D.V.S S., Sydulu, M., (2008) Modelling of Nonlinear Loads and Estimation of Harmonics in Industrial Distribution System, Fifteenth National Power Systems Conference (NPSC), IIT Bombay, December 2008.
  • [14] W.M.Grady and S.Santosa,(2001) Understanding power system harmonics, USA, pp. 37 – 44
  • [15] Kumru,Arrillaga,J.,WatsonN,R.,(2003),Power SystemHarmonics,LohnWiley &Sons,USA [16] Nelson P.J., (2002), “A Beter Understanding of Harmonic Distortion in the Petrochemical Industry” IEEE Transactions on Industry Applications, vol.40, no1, pp.220-231
  • [17] Henderson, R. D., Patrick J. Rose, P.J., (1994) Harmonics: The Effects on Power Quality and Transformers, IEEE Transactions on Industry on Industry App., Vol. 30, pp. 528-532.
  • [18] Ong, S.J.B., Cheng, Y. J. (2008) An overview of international harmonics standards and guidelines (IEEE, IEC, EN, ER and STC) for low voltage system, International Power Engineering Conference, 2007. IPEC 2007.
  • [19] IEC 61000-3-2, (2004), Electromagnetic compatibility (EMC) – Part 3-2: Limits – Limits for harmonic current emissions (equipment input current ≤16 A per phase.
  • [20]Agrawal, D. C., Leff, H., (1996) Efficiency and efficacy of incandescent lamps, American Journal of Physics, vol. 64, pp. 649-654, doi:10.1119/1.18260.
  • [21] Piyush Verma,, Nitish Patel, Nirmal-Kumar C. Nair, “CFL to LED Transition: An Analysis From Harmonics Perspective”, IEEE International Conference on Power System Technology (POWERCON’16), 28 Sept.-1 Oct., Wollongong, NSW, Australia
There are 20 citations in total.

Details

Primary Language English
Subjects Electrical Engineering
Journal Section Research Article
Authors

Sait Dursun This is me 0000-0003-0055-2967

Ümit Terzi 0000-0001-6739-7717

Onur Akar 0000-0001-9695-886X

Temel Sönmezocak 0000-0003-4831-9005

Publication Date December 30, 2021
Published in Issue Year 2021 Volume: 11 Issue: 2

Cite

APA Dursun, S., Terzi, Ü., Akar, O., Sönmezocak, T. (2021). Comparative Analysis of Lighting Elements’ Effects on Electric System. European Journal of Technique (EJT), 11(2), 153-164. https://doi.org/10.36222/ejt.981153

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