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HARMONIC ANALYSIS OF STAND ALONE PHOTOVOLTAIC SYSTEM AT LOW IRRADIANCE CONDITIONS

Yıl 2020, Cilt: 5 Sayı: 1, 1 - 11, 31.01.2020

Öz

This paper
investigates the design, modeling, and simulation of harmonic analysis of
stand-alone photovoltaic (PV) system at low irradiance conditions. PV systems have been increasingly used in the generation of
electrical energy, either as a means of providing electricity in areas where there
is stand-alone systems or by providing electricity to the grid connected systems.
Pyranometer was installed for controlled data acquisition system and used to collect
the spectral irradiance data. It is clear that total harmonic distortion (THD)
is very sensitive when solar irradiance changes. The THD values are high up to
130% in the morning and evening hours when the solar irradiance is low and also
when the solar irradiance is affected by sudden changes like passing clouds.
But when the solar irradiance is high during the day, the current THD value gets
reduced be low the value of 10%. Also, fluctuating solar irradiance resulted in
reduction of active power generated by off-grid PV system reducing the overall efficiency
of the solar
system.

Kaynakça

  • [1] Parthasarathy S, Anandkumar N.V. Effect of Fluctuating Solar Irradiance on the Quality of Power Generated by Solar Photovoltaic System. International Journal of Advanced Engineering Research and Technology (IJAERT) Volume 5 Issue 9, September 2017, ISSN No.: 2348 – 8190.
  • [2] Rustemli S, Cengiz M.S. Active fitler solutions in energy systems. Turk J Elec Eng & CompSci, 2015, 23: 1587 – 1607 doi:10.3906/elk-1402-212.
  • [3] Wang F, Duarte J. L, Hendrix M. A. M, Ribeiro P.F. Modeling and analysis of grid harmonic distortion impact of aggregated DG inverters. IEEE Trans. Power Electron., 2011,vol. 26, no. 3, pp. 786–797.
  • [4] Kececioglu O.F, Acikgoz H, Yildiz C, Gani A, Sekkeli M. Power Quality Improvement Using Hybrid Passive Filter Configuration for Wind Energy Systems. Journal of Electrical Engineering Technology”, 2017, 12, 2370-2375. DOI: 10.1016/j.sbspro.2015.06.211.
  • [5] Kaushika N.D, Nalin K, Gautam, Kshitiz K. Simulation model forsizing of stand-alone solar PV system within the connected array. Solar Energy Materials & Solar Cells.,2005, 85, pp. 499–519.
  • [6] Watson N.R, Arrillaga J. Harmonics in large systems. Electric Power Systems Research, 2003, 66 (1), pp. 15-29.
  • [7] Ozdemir A, Ferikoglu A. Low cost mixed-signal microcontroller based power measurement technique. IEE Proceedings-Science Measurement and Technology, 2004, 151, 253-258. Doi: 10.1049/ip-smt:20040242 –JUL.
  • [8] İzgi E, Öztopal A, Durna B, Kaymak M.K, Sahin A.D. Short–mid-term solar power prediction by using artificial. Solar Energy, 2012, vol.86, pp.725-733.
  • [9] Dugan R.C, McGranaghan M.F, Santoso S, Beaty H.W. Electrical Power Systems Quality. Second Edition, McGraw-Hill, 2004.
  • [10] Adak, S, Cangi, H. Analysis and Simulation Total Harmonic Distortion of Output Voltage Three Level Diode Clamped Inverter in Photovoltaic System, Bitlis Eren University, Fen Bilimleri Dergisi, ISSN 2147-3129, 2015.
  • [11] Nema S, Nema R.K, Agnihotri G. Matlab/Simulink based study of photovoltaic cells/modules/array and their experimental verification. International journal of Energy and Environment ,2010, vol.1, No.3, pp.487-500.
  • [12] Cangi H, Adak S. Analysis of solar inverter THD according to PWM’s carrier frequency. International Conference on Renewable Energy Research and Applications (ICRERA); November 2015: DOI: 10.1109/ICRERA.2015, 7418694.
  • [13] Oliva A.R, Balda J.C. A PV dispersed generator: a power quality analysis within the IEEE 519. IEEE Trans. on Power Delivery ,2003, 18, 2 525-530.
  • [14] Cangi H. Analysis and elimination of harmonics at low irradiation level in PV systems. PhD Thesis, University of KSU University, Graduate School of Natural and Applied Sciences Department of Electrical-Electronics Engineering, 2019.
Yıl 2020, Cilt: 5 Sayı: 1, 1 - 11, 31.01.2020

Öz

Kaynakça

  • [1] Parthasarathy S, Anandkumar N.V. Effect of Fluctuating Solar Irradiance on the Quality of Power Generated by Solar Photovoltaic System. International Journal of Advanced Engineering Research and Technology (IJAERT) Volume 5 Issue 9, September 2017, ISSN No.: 2348 – 8190.
  • [2] Rustemli S, Cengiz M.S. Active fitler solutions in energy systems. Turk J Elec Eng & CompSci, 2015, 23: 1587 – 1607 doi:10.3906/elk-1402-212.
  • [3] Wang F, Duarte J. L, Hendrix M. A. M, Ribeiro P.F. Modeling and analysis of grid harmonic distortion impact of aggregated DG inverters. IEEE Trans. Power Electron., 2011,vol. 26, no. 3, pp. 786–797.
  • [4] Kececioglu O.F, Acikgoz H, Yildiz C, Gani A, Sekkeli M. Power Quality Improvement Using Hybrid Passive Filter Configuration for Wind Energy Systems. Journal of Electrical Engineering Technology”, 2017, 12, 2370-2375. DOI: 10.1016/j.sbspro.2015.06.211.
  • [5] Kaushika N.D, Nalin K, Gautam, Kshitiz K. Simulation model forsizing of stand-alone solar PV system within the connected array. Solar Energy Materials & Solar Cells.,2005, 85, pp. 499–519.
  • [6] Watson N.R, Arrillaga J. Harmonics in large systems. Electric Power Systems Research, 2003, 66 (1), pp. 15-29.
  • [7] Ozdemir A, Ferikoglu A. Low cost mixed-signal microcontroller based power measurement technique. IEE Proceedings-Science Measurement and Technology, 2004, 151, 253-258. Doi: 10.1049/ip-smt:20040242 –JUL.
  • [8] İzgi E, Öztopal A, Durna B, Kaymak M.K, Sahin A.D. Short–mid-term solar power prediction by using artificial. Solar Energy, 2012, vol.86, pp.725-733.
  • [9] Dugan R.C, McGranaghan M.F, Santoso S, Beaty H.W. Electrical Power Systems Quality. Second Edition, McGraw-Hill, 2004.
  • [10] Adak, S, Cangi, H. Analysis and Simulation Total Harmonic Distortion of Output Voltage Three Level Diode Clamped Inverter in Photovoltaic System, Bitlis Eren University, Fen Bilimleri Dergisi, ISSN 2147-3129, 2015.
  • [11] Nema S, Nema R.K, Agnihotri G. Matlab/Simulink based study of photovoltaic cells/modules/array and their experimental verification. International journal of Energy and Environment ,2010, vol.1, No.3, pp.487-500.
  • [12] Cangi H, Adak S. Analysis of solar inverter THD according to PWM’s carrier frequency. International Conference on Renewable Energy Research and Applications (ICRERA); November 2015: DOI: 10.1109/ICRERA.2015, 7418694.
  • [13] Oliva A.R, Balda J.C. A PV dispersed generator: a power quality analysis within the IEEE 519. IEEE Trans. on Power Delivery ,2003, 18, 2 525-530.
  • [14] Cangi H. Analysis and elimination of harmonics at low irradiation level in PV systems. PhD Thesis, University of KSU University, Graduate School of Natural and Applied Sciences Department of Electrical-Electronics Engineering, 2019.
Toplam 14 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Bölüm Research Article
Yazarlar

Süleyman Adak 0000-0003-1436-2830

Hasan Cangi 0000-0001-6954-7299

Yayımlanma Tarihi 31 Ocak 2020
Kabul Tarihi 28 Ocak 2020
Yayımlandığı Sayı Yıl 2020 Cilt: 5 Sayı: 1

Kaynak Göster

APA Adak, S., & Cangi, H. (2020). HARMONIC ANALYSIS OF STAND ALONE PHOTOVOLTAIC SYSTEM AT LOW IRRADIANCE CONDITIONS. The International Journal of Energy and Engineering Sciences, 5(1), 1-11.

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