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Year 2017, Volume: 5 Issue: 1, 410 - 419, 30.06.2017
https://doi.org/10.17261/Pressacademia.2017.618

Abstract

References

  • A. Hill, C., Such, M. C., Chen, D., Gonzalez, J., Grady, W. M., “Battery Energy Storage For Enabling Integration Of Distributed Solar Power Generation”, IEEE Transactions On Smart Grid, vol.3, no.2, 2012.
  • Akkoyunlu, A. (2006), “Türkiye’de Enerji Kaynakları ve Çevreye Etkileri”.
  • Amirullah, Penangsang, O., Soeprijanto, A. (2015), “Effect of Installation of Photovoltaic (PV) Generation to Power Quality in Industrial and Residential Customers Distribution Network”, International Seminar on Intelligent Technology and Its Applications, p.p. 193-200.
  • Baggini, A. (2008), “Handbook of Power Quality”, Wiley, p.p. 151-155.
  • Bhattacharyya, S., Myrzik, J. M., Kling, W. L. (2007), “Consequences Of Poor Power Quality- An Overview”, UPEC, p.p. 651-656.
  • Block, P. A. B., Salamanca, H. L. L., Teixeira, M. D., Dahlke, D. D., Shiono, O. M., Donadon, A. R., Camargo, J. C. (2014), “Power Quality Analyses of a Large Scale Photovoltaic System”, 5th International Renewable Energy Congress (IREC), p.p. 1-6.
  • “Elektrik Piyasasında Dağıtım Sisteminde Sunulan Elektrik Enerjisi Tedarik Sürekliliği, Ticari ve Teknik Kalitesi Hakkındaki Yönetmelik” (2016), Enerji Piyasası Düzenleme Kurumu (EPDK).
  • Enslin, J. H. R., Heskes, P. J. M. (2004), “Harmonic Interaction Between A Large Number Of Distributed Power Inverters And The Distribution Network”, IEEE Transactions On Power Electronics, Vol. 19, No. 6.
  • Gonzalez, C., Geuns, J., Weckx, S., Wijnhoven, T., Vingerhoets, P., Rybel, T. D., Driesen, J. (2012), “LV Distribution Network Feeders in Belgium and Power Quality Issues due to Increasing PV Penetration Levels”, 3rd IEEE PES Innovative Smart Grid Technologies Europe (ISGT Europe), p.p. 1-8.
  • Hürmeydan, S., Rosin, A., Vinnal, T. (2016), “Effects of PV Microgeneration on Rural LV Network Voltage Quality – Harmonics and Unbalance”, Electric Power Quality and Supply Reliability (PQ), p.p. 97-100.
  • IEEE 519-2014 Standard. (2014), “IEEE Recommended Practice and Requirements for Harmonic Control in Electric Power Systems”, IEEE Power and Energy Society.
  • Kandemir, Ç., Bayrak, M. (2015), “Fotovoltaik Sistemler Şebekeye Bağlı Olduğunda Oluşan Sorunlar”, VI. Enerji Verimliliği, Kalitesi Sempozyumu Ve Sergisi Bildirileri (EVK).
  • Keçecioğlu, Ö. F., Tekin, M., Gani, A., Sarı, M., Şekkeli, M. (2015), “Endüstriyel Isı Santrallerinde Enerji Kalitesi Ölçümü Ve Değerlendirilmesi, Kahramanmaraş Sütçü İmam Üniversitesi Örneği”, VI. Enerji Verimliliği, Kalitesi Sempozyumu Ve Sergisi Bildirileri.
  • Kocaman, Ç., Özdemir, M. (2009), “Güç Sistemlerinde Olușan Güç Kalitesi Bozunumlarının Çarpıklık Ve Basıklık Katsayıları İle Belirlenmesi”, 17th Signal Processing and Communications Applications Conference, IEEE, p.p. 341-344.
  • Pakonen, P., Hilden, A., Suntio, T., Verho, P. (2016), “Grid-Connected PV Power Plant Induced Power Quality Problems –Experimental Evidence”, 18th European Conference on Power Electronics and Applications (EPE'16 ECCE Europe), p.p. 1-10.
  • Patsalides, M., Georghiou, G. E., Stavrou, A., Efthimiou, V. (2012), “Assessing the Power Quality Behaviour of High Photovoltaic (PV) Penetration Levels inside the Distribution Network”, 3rd IEEE International Symposium on Power Electronics for Distributed Generation Systems (PEDG), p.p. 709-716.
  • Şahin, M., Oğuz, Y., Tuğcu, H. Z. (2014) “Güç Sistemlerinde Enerji Kalitesini Etkileyen Harmoniklerin İncelenmesi”, EÜFBED - Fen Bilimleri Enstitüsü Dergisi Cilt-Sayı: 7-2, 199-218.
  • Şimşek, B., Bizkevelci, E. (2015), “Türkiye Elektrik Dağıtım Şebekesinde Fotovoltaik Sistemlerin Güç Kalitesine Etkisi”, IV. Elektrik Tesisat Ulusal Kongre Ve Sergisi Bildirileri.
  • Tanasescu, G., Busoi, S., Gorgan, B., Notingher, P. V. (2016), “Photovoltaic Power Plants Contribution To The Flicker Level In The Medium Voltage Energy Network. Case Study”, Conference On Diagnostics In Electrical Engineering (Diagnostika), IEEE, p.p. 1-4.
  • Tekin, M., Sarı, M., Keçecioğlu, Ö.F., Gani, A., Açıkgöz, H., Yıldız, C., Şekkeli, M. (2016), “Power Quality Analysis Of A Campus Field: Case Study For Avşar Campus Of Kahramanmaraş Sütçü İmam University”, 4th International Symposium on Innovative Technologies in Engineering and Science, (ISITES2016) Alanya/Antalya, Turkey, 3-5 November.
  • Tekin, M., Keçecioğlu, Ö.F., Gani, A., Açıkgöz, H., Yıldız, C., Şekkeli, M. (2016), “The Role Of Kahramanmaraş In Turkey From The Standpoint Of Based On Traditional And Renewable Electricity Generation”, 10th International Clean Energy Symposium (UTES), 24-26 October, Istanbul, Turkey.
  • “Türkiye Elektrik Enerjisi 5 Yıllık Üretim Kapasite Projeksiyonu (2015 – 2019)”, 2015.
  • Yanıktepe, B., Özalp, C., Savrun, M. M., Köroğlu, T., Cebeci, Ç. (2011), “Rüzgar-Güneş Hibrid Güç Sistemi Osmaniye Korkut Ata Üniversitesi Uygulama Örneği”, 6th International Advanced Technologies Symposium (IATS’11), Elazığ, Turkey.

INVESTIGATION OF THE EFFECTS OF RENEWABLE ENERGY SOURCES ON INTERCONNECTION NETWORKS

Year 2017, Volume: 5 Issue: 1, 410 - 419, 30.06.2017
https://doi.org/10.17261/Pressacademia.2017.618

Abstract

Demand for electricity is
increasing due to population growth, the development of technology and the
level of prosperity of communities. Coal, natural gas, oil, etc., which are
called traditional sources can no longer meet this demand. In addition, these
resources are harmful to the environment and have high costs. For all these
reasons, the trend towards alternative energy sources is increasing. These
sources are called renewable energy sources. Solar, wind, water, geothermal
etc. as examples of renewable energy sources. In addition to producing enough
energy, it is also necessary to use the produced energy efficiently. This is
defined as the energy quality (power quality). The power quality parameters are
defined to keep the obtained electric energy within certain limits in terms of
quality. These parameters include; harmonic, voltage flicker, voltage deviation
etc. Through this study; it has been analyzed, with the increasing number of
solar power plants connecting to the network, what kind of changes occurred in
the electricity network and how the solar power plants affect the network in
terms of energy quality. The analysis was carried out by evaluating the one
month data from a 5 MW solar power plant.



 

References

  • A. Hill, C., Such, M. C., Chen, D., Gonzalez, J., Grady, W. M., “Battery Energy Storage For Enabling Integration Of Distributed Solar Power Generation”, IEEE Transactions On Smart Grid, vol.3, no.2, 2012.
  • Akkoyunlu, A. (2006), “Türkiye’de Enerji Kaynakları ve Çevreye Etkileri”.
  • Amirullah, Penangsang, O., Soeprijanto, A. (2015), “Effect of Installation of Photovoltaic (PV) Generation to Power Quality in Industrial and Residential Customers Distribution Network”, International Seminar on Intelligent Technology and Its Applications, p.p. 193-200.
  • Baggini, A. (2008), “Handbook of Power Quality”, Wiley, p.p. 151-155.
  • Bhattacharyya, S., Myrzik, J. M., Kling, W. L. (2007), “Consequences Of Poor Power Quality- An Overview”, UPEC, p.p. 651-656.
  • Block, P. A. B., Salamanca, H. L. L., Teixeira, M. D., Dahlke, D. D., Shiono, O. M., Donadon, A. R., Camargo, J. C. (2014), “Power Quality Analyses of a Large Scale Photovoltaic System”, 5th International Renewable Energy Congress (IREC), p.p. 1-6.
  • “Elektrik Piyasasında Dağıtım Sisteminde Sunulan Elektrik Enerjisi Tedarik Sürekliliği, Ticari ve Teknik Kalitesi Hakkındaki Yönetmelik” (2016), Enerji Piyasası Düzenleme Kurumu (EPDK).
  • Enslin, J. H. R., Heskes, P. J. M. (2004), “Harmonic Interaction Between A Large Number Of Distributed Power Inverters And The Distribution Network”, IEEE Transactions On Power Electronics, Vol. 19, No. 6.
  • Gonzalez, C., Geuns, J., Weckx, S., Wijnhoven, T., Vingerhoets, P., Rybel, T. D., Driesen, J. (2012), “LV Distribution Network Feeders in Belgium and Power Quality Issues due to Increasing PV Penetration Levels”, 3rd IEEE PES Innovative Smart Grid Technologies Europe (ISGT Europe), p.p. 1-8.
  • Hürmeydan, S., Rosin, A., Vinnal, T. (2016), “Effects of PV Microgeneration on Rural LV Network Voltage Quality – Harmonics and Unbalance”, Electric Power Quality and Supply Reliability (PQ), p.p. 97-100.
  • IEEE 519-2014 Standard. (2014), “IEEE Recommended Practice and Requirements for Harmonic Control in Electric Power Systems”, IEEE Power and Energy Society.
  • Kandemir, Ç., Bayrak, M. (2015), “Fotovoltaik Sistemler Şebekeye Bağlı Olduğunda Oluşan Sorunlar”, VI. Enerji Verimliliği, Kalitesi Sempozyumu Ve Sergisi Bildirileri (EVK).
  • Keçecioğlu, Ö. F., Tekin, M., Gani, A., Sarı, M., Şekkeli, M. (2015), “Endüstriyel Isı Santrallerinde Enerji Kalitesi Ölçümü Ve Değerlendirilmesi, Kahramanmaraş Sütçü İmam Üniversitesi Örneği”, VI. Enerji Verimliliği, Kalitesi Sempozyumu Ve Sergisi Bildirileri.
  • Kocaman, Ç., Özdemir, M. (2009), “Güç Sistemlerinde Olușan Güç Kalitesi Bozunumlarının Çarpıklık Ve Basıklık Katsayıları İle Belirlenmesi”, 17th Signal Processing and Communications Applications Conference, IEEE, p.p. 341-344.
  • Pakonen, P., Hilden, A., Suntio, T., Verho, P. (2016), “Grid-Connected PV Power Plant Induced Power Quality Problems –Experimental Evidence”, 18th European Conference on Power Electronics and Applications (EPE'16 ECCE Europe), p.p. 1-10.
  • Patsalides, M., Georghiou, G. E., Stavrou, A., Efthimiou, V. (2012), “Assessing the Power Quality Behaviour of High Photovoltaic (PV) Penetration Levels inside the Distribution Network”, 3rd IEEE International Symposium on Power Electronics for Distributed Generation Systems (PEDG), p.p. 709-716.
  • Şahin, M., Oğuz, Y., Tuğcu, H. Z. (2014) “Güç Sistemlerinde Enerji Kalitesini Etkileyen Harmoniklerin İncelenmesi”, EÜFBED - Fen Bilimleri Enstitüsü Dergisi Cilt-Sayı: 7-2, 199-218.
  • Şimşek, B., Bizkevelci, E. (2015), “Türkiye Elektrik Dağıtım Şebekesinde Fotovoltaik Sistemlerin Güç Kalitesine Etkisi”, IV. Elektrik Tesisat Ulusal Kongre Ve Sergisi Bildirileri.
  • Tanasescu, G., Busoi, S., Gorgan, B., Notingher, P. V. (2016), “Photovoltaic Power Plants Contribution To The Flicker Level In The Medium Voltage Energy Network. Case Study”, Conference On Diagnostics In Electrical Engineering (Diagnostika), IEEE, p.p. 1-4.
  • Tekin, M., Sarı, M., Keçecioğlu, Ö.F., Gani, A., Açıkgöz, H., Yıldız, C., Şekkeli, M. (2016), “Power Quality Analysis Of A Campus Field: Case Study For Avşar Campus Of Kahramanmaraş Sütçü İmam University”, 4th International Symposium on Innovative Technologies in Engineering and Science, (ISITES2016) Alanya/Antalya, Turkey, 3-5 November.
  • Tekin, M., Keçecioğlu, Ö.F., Gani, A., Açıkgöz, H., Yıldız, C., Şekkeli, M. (2016), “The Role Of Kahramanmaraş In Turkey From The Standpoint Of Based On Traditional And Renewable Electricity Generation”, 10th International Clean Energy Symposium (UTES), 24-26 October, Istanbul, Turkey.
  • “Türkiye Elektrik Enerjisi 5 Yıllık Üretim Kapasite Projeksiyonu (2015 – 2019)”, 2015.
  • Yanıktepe, B., Özalp, C., Savrun, M. M., Köroğlu, T., Cebeci, Ç. (2011), “Rüzgar-Güneş Hibrid Güç Sistemi Osmaniye Korkut Ata Üniversitesi Uygulama Örneği”, 6th International Advanced Technologies Symposium (IATS’11), Elazığ, Turkey.
There are 23 citations in total.

Details

Journal Section Articles
Authors

Mustafa Tekin This is me

O. Fatih Kececioglu

Ceyhun Yildiz

Ahmet Gani

Hakan Acikgoz This is me

Mustafa Kesenek This is me

Mustafa Sekkeli

Publication Date June 30, 2017
Published in Issue Year 2017 Volume: 5 Issue: 1

Cite

APA Tekin, M., Kececioglu, O. F., Yildiz, C., Gani, A., et al. (2017). INVESTIGATION OF THE EFFECTS OF RENEWABLE ENERGY SOURCES ON INTERCONNECTION NETWORKS. PressAcademia Procedia, 5(1), 410-419. https://doi.org/10.17261/Pressacademia.2017.618
AMA Tekin M, Kececioglu OF, Yildiz C, Gani A, Acikgoz H, Kesenek M, Sekkeli M. INVESTIGATION OF THE EFFECTS OF RENEWABLE ENERGY SOURCES ON INTERCONNECTION NETWORKS. PAP. June 2017;5(1):410-419. doi:10.17261/Pressacademia.2017.618
Chicago Tekin, Mustafa, O. Fatih Kececioglu, Ceyhun Yildiz, Ahmet Gani, Hakan Acikgoz, Mustafa Kesenek, and Mustafa Sekkeli. “INVESTIGATION OF THE EFFECTS OF RENEWABLE ENERGY SOURCES ON INTERCONNECTION NETWORKS”. PressAcademia Procedia 5, no. 1 (June 2017): 410-19. https://doi.org/10.17261/Pressacademia.2017.618.
EndNote Tekin M, Kececioglu OF, Yildiz C, Gani A, Acikgoz H, Kesenek M, Sekkeli M (June 1, 2017) INVESTIGATION OF THE EFFECTS OF RENEWABLE ENERGY SOURCES ON INTERCONNECTION NETWORKS. PressAcademia Procedia 5 1 410–419.
IEEE M. Tekin, “INVESTIGATION OF THE EFFECTS OF RENEWABLE ENERGY SOURCES ON INTERCONNECTION NETWORKS”, PAP, vol. 5, no. 1, pp. 410–419, 2017, doi: 10.17261/Pressacademia.2017.618.
ISNAD Tekin, Mustafa et al. “INVESTIGATION OF THE EFFECTS OF RENEWABLE ENERGY SOURCES ON INTERCONNECTION NETWORKS”. PressAcademia Procedia 5/1 (June 2017), 410-419. https://doi.org/10.17261/Pressacademia.2017.618.
JAMA Tekin M, Kececioglu OF, Yildiz C, Gani A, Acikgoz H, Kesenek M, Sekkeli M. INVESTIGATION OF THE EFFECTS OF RENEWABLE ENERGY SOURCES ON INTERCONNECTION NETWORKS. PAP. 2017;5:410–419.
MLA Tekin, Mustafa et al. “INVESTIGATION OF THE EFFECTS OF RENEWABLE ENERGY SOURCES ON INTERCONNECTION NETWORKS”. PressAcademia Procedia, vol. 5, no. 1, 2017, pp. 410-9, doi:10.17261/Pressacademia.2017.618.
Vancouver Tekin M, Kececioglu OF, Yildiz C, Gani A, Acikgoz H, Kesenek M, Sekkeli M. INVESTIGATION OF THE EFFECTS OF RENEWABLE ENERGY SOURCES ON INTERCONNECTION NETWORKS. PAP. 2017;5(1):410-9.

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