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Simulation of Photovoltaic/Diesel Hybrid Power Generation System with Energy Storage and Supervisory Control

Yıl 2013, Cilt: 3 Sayı: 3, 605 - 614, 01.09.2013

Öz

University of Nigeria, Nsukka has a digital library that accommodates 128 computers for student training, research and browsing. This facility becomes impossible to run due to the inability of the public utility to provide steady, reliable and efficient power. The available generator was not effective due to lack of diesel to run it. From experience with the performance of the existing generating sets as regards emissions and operating costs due to high cost of maintenance and diesel, a hybrid system (Diesel-Solar PV) was proposed. This paper describes the design and simulation of Diesel-Solar PV hybrid system with reliable control system that can be used to control and supervise the operations of PV - Diesel hybrid power generation system for digital library. The control system coordinates when power should be generated by renewable energy (PV panels) and when it should be generated by diesel generator and is intended to maximize the use of renewable system while limiting the use of diesel generator. Diesel generator is allocated only when the demand cannot be met by the renewable energy source including battery bank. The proposed system would meet around 63% of the average annual digital library electrical load and results in 37% reduction on diesel use and CO2 emissions compared to the diesel only option. From the analyses, the solar PV-diesel system has less total net present cost and less emission as a result of less fuel consumption of the diesel generator when compared to the diesel only system.

Kaynakça

  • Population Nigeria’s over 167 million population: Implications and Challenges. http://www.population. gov.ng/ Last Updated on Monday, 05 March 2012 14:46 [2] Ani, Vincent Anayochukwu Optimization of Power Station for a Small Research Institute. International Journal of Energy Optimization and Engineering (IJEOE). Volume 2, Issue 2, 15- 31DOI: Global (2013) Energy
  • 4018/ijeoe.2013040102 Publisher IGI hybrid Power Systems in
  • Ani, Vincent Anayochukwu and Emetu, Alice Nnene (2013) Simulation Photovoltaic/diesel hybrid system for health service and facilities in rural environments. Vol. 1, No. 1, DOI: 10.7770/ejee-V1N1-art521. Energy and Environment (EJEE) Optimization of Electronic Journal of
  • Morgan T., Marshall R. and Brinkworth B., (1997) “ARES”- A Refined Simulation Program for the Sizing and optimization Of Autonomous Hybrid Energy Systems’, Solar energy, Vol.59, Nos.4-6
  • Peterson A J, Perez R, Bailey B and Elsholz K. (1999) Operational experience of a residential photovoltaic hybrid system. Solar Energy 65, 227–235 [11] Ani, V. A. (2012). Energy Optimization at Telecommunication Base Station Sites. Unpublished doctoral dissertation, University of Nigeria, Nsukka. Nigeria
  • Elhadidy MA, Shaahid SM. (2004). Role of hybrid (wind + diesel) power systems in meeting commercial loads. Renewable Energy, 29 (12), 109–18
  • Nema, P., Nema, R.K., Rangnekar, S. (2007, March). ‘Sizing and methodology of PV/wind hybrid energy systems’ Paper presented at the national conference of power electronics & intelligent control held at Malaviya National Institute of technology, Jaipur (rajasthan), India
  • De Vries, H.F. and Francken, J.C. (1980). Simulation of a solar energy system by means of electrical resistance. Solar Energy, 25: 279–281
  • Elliot D., Schwartz M., Scott G., Haymes S., Heimiller D., and George R., (2003) "Wind Energy Resource Atlas of Sri Lanka and the Maldives," National Renewable Energy Laboratory
  • Rehman, S., El-Amin, I.M., Ahmad, F., Shaahid, S.M., Al-Shehri, A.M., Bakhashwain, J.M., Renne D., George R., Marion B., Heimiller D., and Gueymard C., (2003) "Solar Resource Assessment for Sri Lanka and Maldives," National Renewable Energy Laboratory, Colorado
  • Lambert T., Gilman P., and Lilienthal P., (2006) "Micropower System Modeling with HOMER," in Integration of Alternative Sources of Energy, F. A. Farret and M. G. Simoes, Eds.: John Wiley & Sons.
  • Lilienthal P., Gilman P., and Lambert T., (2005) "HOMER the micropower optimization model," National Renewable Energy Laboratory.
  • Borowy, B.S. & Salameh, Z.M., (1994) Optimum Photovoltaic Array Size for a Hybrid Wind/PV System, IEEE Transaction on Energy Conversion, Vol. 9, No. 3, 1994, pp.482-488.
  • Dufo-Lopez, R., & Bernal-Augustin, J.L., (2005) Design and Control Strategies of PV-Diesel Systems Using Genetic Algorithm, Solar Energy, Vol. 79, 2005, pp. 33-46.
  • Ashari M, Nayar CV. (1999), An optimum dispatch strategy using set points for a Photovoltaic (PV)– Diesel–Battery hybrid power system. Solar Energy 1999; Vol.66 (1):1–9.19
  • Seeling-Hochmuth, G.C (1998) “Optimization of hybrid energy systems sizing and operation control, A Dissertation presented to the University of Kassel in Candidacy for the Degree of Dr.-Ing.
  • Nfah, E.M., Ngundam, J.M., Vandenbergh, M., Schmid, J., (2008). Simulation of off-grid generation options for remote villages in Cameroon. Renewable Energy. 33 (2008) 1064–1072
  • Shash, A., (2007) Feasibility study of hybrid retrofits to an isolated off-grid diesel power plant. Renewable and Sustainable Energy Reviews, Volume 11, Issue 4, 635- 653
  • Georgilakis, P.S., (2005) State-of-the-art of decision support systems for the choice of renewable energy sources for energy supply in isolated regions, International Journal of Distributed Energy Resources, 2 (2), 129-150
  • Khan, M.J., Iqbal, M.T., (2005) Pre-feasibility study of stand-alone hybrid energy systems for applications in Newfoundland, Renewable Energy, 30 (6), 835-854
  • Shaahid, S.M., El-Amin, I., Rehman, S., Al-Shehri, A., Bakashwain, J., Ahmad, F., (2004). Potential of autonomous/off-grid hybrid wind-diesel power system for electrification of a remote settlement in Saudi Arabia, Wind Engineering, 28 (5), 621-628
  • Lilienthal, P., Lambert, T., Gilman, P., (2004) Computer modeling of renewable power systems. In (Ed.) Cleveland, C.J., Encyclopedia of Energy, Elsevier Inc., Volume 1, pp. 633-647
  • Adebiyi, G.A., Nsofor, E.C., Steele, W.G., and Jalalzadeh- Azar, A.A. (1997). Optimisation of a class of latent thermal energy storage systems with multiple phase-change material. ASME Journal of Solar Energy Engineering, 120(1): 14–19.
  • Postgraduate Studies Prospectus (2012) University of Nigeria, Nsukka [31] UNN geographical Location (2012) http://wikimapia.org/1455825/University-of-Nigeria- Nsukka-Enugu-State.
  • NASA (2012). Atmospheric Science Data Center http://eosweb.larc.nasa.gov/sse/2012.
  • Seeling-Hochmuth, G. (1997) “A Combined Optimization Concept for the Design and Operation Strategy of Hybrid PV Energy Systems”, Solar Energy, Vol. 61, No. 2, pp.77-87, Elsevier Science Ltd.
  • Seeling, G. C. (1995) “Optimization of PV-Hybrid Energy System Design and System Operation Control Using Genetic Algorithms”, in Proc. of the 13th EC PV Conference, Nice, France, pp. 4.
  • Sidrach de Cardona M. and Mora Lopez L.I. (1992) Optimizing of hybrid photovoltaic generator systems for installations of rural electrification. In Proceedings of the 11th European Photovoltaic Solar Energy Conference, pp. 1287– 1290, Montreux.
  • Kaye J. (1994) Optimizing the value of photovoltaic energy in electricity supply systems with storage. In Proceedings of the 12th European Photovoltaic Solar Energy Conference, pp. 431–434, Amsterdam.
  • Muselli. M., Notton. G. & Louche. A., (1999). Design of Optimization of Energy Management Solar Energy Vol. 65, No. 3, pp. 143–157, 1999 Generator, with
  • Ani, V. A. & Nzeako, A. N (2012). Energy optimization at GSM Base Station located at rural areas. International Journal of Energy Optimization and Engineering DOI:10.4018/ijeoe.2012070101. Volume 1. Issue 3.
  • Kamaruzzaman, S, Ahmad. F, Mohd. H. R, Mohd. Y, S, Mohammad. A. A, Muhammad. Y, Nowshad. A, Lim. C. H, Azami. Z, (2009), Optimization of a stand-Alone Wind/PV Hybrid System to provide Electricity for a house IASME/WSEAS International Conference on Energy & Environment Proceedings of the 4th
Yıl 2013, Cilt: 3 Sayı: 3, 605 - 614, 01.09.2013

Öz

Kaynakça

  • Population Nigeria’s over 167 million population: Implications and Challenges. http://www.population. gov.ng/ Last Updated on Monday, 05 March 2012 14:46 [2] Ani, Vincent Anayochukwu Optimization of Power Station for a Small Research Institute. International Journal of Energy Optimization and Engineering (IJEOE). Volume 2, Issue 2, 15- 31DOI: Global (2013) Energy
  • 4018/ijeoe.2013040102 Publisher IGI hybrid Power Systems in
  • Ani, Vincent Anayochukwu and Emetu, Alice Nnene (2013) Simulation Photovoltaic/diesel hybrid system for health service and facilities in rural environments. Vol. 1, No. 1, DOI: 10.7770/ejee-V1N1-art521. Energy and Environment (EJEE) Optimization of Electronic Journal of
  • Morgan T., Marshall R. and Brinkworth B., (1997) “ARES”- A Refined Simulation Program for the Sizing and optimization Of Autonomous Hybrid Energy Systems’, Solar energy, Vol.59, Nos.4-6
  • Peterson A J, Perez R, Bailey B and Elsholz K. (1999) Operational experience of a residential photovoltaic hybrid system. Solar Energy 65, 227–235 [11] Ani, V. A. (2012). Energy Optimization at Telecommunication Base Station Sites. Unpublished doctoral dissertation, University of Nigeria, Nsukka. Nigeria
  • Elhadidy MA, Shaahid SM. (2004). Role of hybrid (wind + diesel) power systems in meeting commercial loads. Renewable Energy, 29 (12), 109–18
  • Nema, P., Nema, R.K., Rangnekar, S. (2007, March). ‘Sizing and methodology of PV/wind hybrid energy systems’ Paper presented at the national conference of power electronics & intelligent control held at Malaviya National Institute of technology, Jaipur (rajasthan), India
  • De Vries, H.F. and Francken, J.C. (1980). Simulation of a solar energy system by means of electrical resistance. Solar Energy, 25: 279–281
  • Elliot D., Schwartz M., Scott G., Haymes S., Heimiller D., and George R., (2003) "Wind Energy Resource Atlas of Sri Lanka and the Maldives," National Renewable Energy Laboratory
  • Rehman, S., El-Amin, I.M., Ahmad, F., Shaahid, S.M., Al-Shehri, A.M., Bakhashwain, J.M., Renne D., George R., Marion B., Heimiller D., and Gueymard C., (2003) "Solar Resource Assessment for Sri Lanka and Maldives," National Renewable Energy Laboratory, Colorado
  • Lambert T., Gilman P., and Lilienthal P., (2006) "Micropower System Modeling with HOMER," in Integration of Alternative Sources of Energy, F. A. Farret and M. G. Simoes, Eds.: John Wiley & Sons.
  • Lilienthal P., Gilman P., and Lambert T., (2005) "HOMER the micropower optimization model," National Renewable Energy Laboratory.
  • Borowy, B.S. & Salameh, Z.M., (1994) Optimum Photovoltaic Array Size for a Hybrid Wind/PV System, IEEE Transaction on Energy Conversion, Vol. 9, No. 3, 1994, pp.482-488.
  • Dufo-Lopez, R., & Bernal-Augustin, J.L., (2005) Design and Control Strategies of PV-Diesel Systems Using Genetic Algorithm, Solar Energy, Vol. 79, 2005, pp. 33-46.
  • Ashari M, Nayar CV. (1999), An optimum dispatch strategy using set points for a Photovoltaic (PV)– Diesel–Battery hybrid power system. Solar Energy 1999; Vol.66 (1):1–9.19
  • Seeling-Hochmuth, G.C (1998) “Optimization of hybrid energy systems sizing and operation control, A Dissertation presented to the University of Kassel in Candidacy for the Degree of Dr.-Ing.
  • Nfah, E.M., Ngundam, J.M., Vandenbergh, M., Schmid, J., (2008). Simulation of off-grid generation options for remote villages in Cameroon. Renewable Energy. 33 (2008) 1064–1072
  • Shash, A., (2007) Feasibility study of hybrid retrofits to an isolated off-grid diesel power plant. Renewable and Sustainable Energy Reviews, Volume 11, Issue 4, 635- 653
  • Georgilakis, P.S., (2005) State-of-the-art of decision support systems for the choice of renewable energy sources for energy supply in isolated regions, International Journal of Distributed Energy Resources, 2 (2), 129-150
  • Khan, M.J., Iqbal, M.T., (2005) Pre-feasibility study of stand-alone hybrid energy systems for applications in Newfoundland, Renewable Energy, 30 (6), 835-854
  • Shaahid, S.M., El-Amin, I., Rehman, S., Al-Shehri, A., Bakashwain, J., Ahmad, F., (2004). Potential of autonomous/off-grid hybrid wind-diesel power system for electrification of a remote settlement in Saudi Arabia, Wind Engineering, 28 (5), 621-628
  • Lilienthal, P., Lambert, T., Gilman, P., (2004) Computer modeling of renewable power systems. In (Ed.) Cleveland, C.J., Encyclopedia of Energy, Elsevier Inc., Volume 1, pp. 633-647
  • Adebiyi, G.A., Nsofor, E.C., Steele, W.G., and Jalalzadeh- Azar, A.A. (1997). Optimisation of a class of latent thermal energy storage systems with multiple phase-change material. ASME Journal of Solar Energy Engineering, 120(1): 14–19.
  • Postgraduate Studies Prospectus (2012) University of Nigeria, Nsukka [31] UNN geographical Location (2012) http://wikimapia.org/1455825/University-of-Nigeria- Nsukka-Enugu-State.
  • NASA (2012). Atmospheric Science Data Center http://eosweb.larc.nasa.gov/sse/2012.
  • Seeling-Hochmuth, G. (1997) “A Combined Optimization Concept for the Design and Operation Strategy of Hybrid PV Energy Systems”, Solar Energy, Vol. 61, No. 2, pp.77-87, Elsevier Science Ltd.
  • Seeling, G. C. (1995) “Optimization of PV-Hybrid Energy System Design and System Operation Control Using Genetic Algorithms”, in Proc. of the 13th EC PV Conference, Nice, France, pp. 4.
  • Sidrach de Cardona M. and Mora Lopez L.I. (1992) Optimizing of hybrid photovoltaic generator systems for installations of rural electrification. In Proceedings of the 11th European Photovoltaic Solar Energy Conference, pp. 1287– 1290, Montreux.
  • Kaye J. (1994) Optimizing the value of photovoltaic energy in electricity supply systems with storage. In Proceedings of the 12th European Photovoltaic Solar Energy Conference, pp. 431–434, Amsterdam.
  • Muselli. M., Notton. G. & Louche. A., (1999). Design of Optimization of Energy Management Solar Energy Vol. 65, No. 3, pp. 143–157, 1999 Generator, with
  • Ani, V. A. & Nzeako, A. N (2012). Energy optimization at GSM Base Station located at rural areas. International Journal of Energy Optimization and Engineering DOI:10.4018/ijeoe.2012070101. Volume 1. Issue 3.
  • Kamaruzzaman, S, Ahmad. F, Mohd. H. R, Mohd. Y, S, Mohammad. A. A, Muhammad. Y, Nowshad. A, Lim. C. H, Azami. Z, (2009), Optimization of a stand-Alone Wind/PV Hybrid System to provide Electricity for a house IASME/WSEAS International Conference on Energy & Environment Proceedings of the 4th
Toplam 32 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Bölüm Articles
Yazarlar

Vincent Anayochukwu Ani Bu kişi benim

Yayımlanma Tarihi 1 Eylül 2013
Yayımlandığı Sayı Yıl 2013 Cilt: 3 Sayı: 3

Kaynak Göster

APA Ani, V. A. (2013). Simulation of Photovoltaic/Diesel Hybrid Power Generation System with Energy Storage and Supervisory Control. International Journal Of Renewable Energy Research, 3(3), 605-614.
AMA Ani VA. Simulation of Photovoltaic/Diesel Hybrid Power Generation System with Energy Storage and Supervisory Control. International Journal Of Renewable Energy Research. Eylül 2013;3(3):605-614.
Chicago Ani, Vincent Anayochukwu. “Simulation of Photovoltaic/Diesel Hybrid Power Generation System With Energy Storage and Supervisory Control”. International Journal Of Renewable Energy Research 3, sy. 3 (Eylül 2013): 605-14.
EndNote Ani VA (01 Eylül 2013) Simulation of Photovoltaic/Diesel Hybrid Power Generation System with Energy Storage and Supervisory Control. International Journal Of Renewable Energy Research 3 3 605–614.
IEEE V. A. Ani, “Simulation of Photovoltaic/Diesel Hybrid Power Generation System with Energy Storage and Supervisory Control”, International Journal Of Renewable Energy Research, c. 3, sy. 3, ss. 605–614, 2013.
ISNAD Ani, Vincent Anayochukwu. “Simulation of Photovoltaic/Diesel Hybrid Power Generation System With Energy Storage and Supervisory Control”. International Journal Of Renewable Energy Research 3/3 (Eylül 2013), 605-614.
JAMA Ani VA. Simulation of Photovoltaic/Diesel Hybrid Power Generation System with Energy Storage and Supervisory Control. International Journal Of Renewable Energy Research. 2013;3:605–614.
MLA Ani, Vincent Anayochukwu. “Simulation of Photovoltaic/Diesel Hybrid Power Generation System With Energy Storage and Supervisory Control”. International Journal Of Renewable Energy Research, c. 3, sy. 3, 2013, ss. 605-14.
Vancouver Ani VA. Simulation of Photovoltaic/Diesel Hybrid Power Generation System with Energy Storage and Supervisory Control. International Journal Of Renewable Energy Research. 2013;3(3):605-14.