Abstract
The current photovoltaic market is completely dominated by the conventional single junction PV panels, despite the fact that the highest energy efficiency of multi-junction solar cells is in the form of concentrated photovoltaic (CPV) system. CPV technology has faced many challenges of reliability and performance since its conception. However, despite much improvement in design and reliability, CPV technology is still unable to gain the attention of customers and energy planners with its high-performance potential. Due to its response to only solar beam radiations, CPV systems are believed to be only suitable to operate in clear sky weather conditions. That’s why the current gigantic CPV systems are only designed to be installed in open desert regions. It is still lacking the same application scope which the conventional PV is experiencing. With the aim to boost its market potential, in this chapter, a compact CPV design is discussed with low cost but highly accurate performance, to be targeted to install at the rooftop of commercial and residential building in the urban region. In addition, the performance of CPV system is also evaluated and compared with the different conventional PV system in the tropical weather condition with low beam radiation availability.
Keywords
- Concentrated photovoltaic
- Electrical rating
- CPV
- Long term performance
- Solar tracker
- MJC
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References
Akiba S, Michael E, Amnon Y (2004) Hybrid concentrated photovoltaic and thermal power conversion at different spectral bands. Sol Energy 76:591–601
Andreev VM, Grilikhes VA, Khvostikov VP, Khvostikova OA, Rumyantsev VD, Sadchikov NA, Shvarts MZ (2004) Concentrator PV modules and solar cells for TPV systems. Sol Energy Mater Sol Cells 84(1):3–17
Bett AW, Dimroth F, Gluntz SW et al (2004) In: Proceedings of the 19th European PV solar conference. WIP, Munich, p 2488
Bett AW, Burger B, Dimroth F, Siefer G, Lerchenmüller H (2006) High concentration PV using III-V solar cells. In: Proceedings of the 2006 IEEE 4th world conference photovoltaic energy conversion
Burhan M (2015) Theoretical and experimental study of concentrated photovoltaic (CPV) system with hydrogen production as energy storage. Doctoral dissertation
Burhan M, Chua KJE, Ng KC (2016a) Simulation and development of a multi-leg homogeniser concentrating assembly for concentrated photovoltaic (CPV) system with electrical rating analysis. Energy Convers Manag 116:58–71
Burhan M, Chua KJE, Ng KC (2016b) Electrical rating of concentrated photovoltaic (CPV) systems: long-term performance analysis and comparison to conventional PV systems. Int J Technol 7(2):189–196. https://doi.org/10.14716/ijtech.v7i2.2983
Burhan M, Chua KJE, Ng KC (2016c) Long term hydrogen production potential of concentrated photovoltaic (CPV) system in tropical weather of Singapore. Int J Hydrogen Energy 41(38):16729–16742
Burhan M, Chua KJE, Ng KC (2016d) Sunlight to hydrogen conversion: design optimization and energy management of concentrated photovoltaic (CPV-hydrogen) system using micro genetic algorithm. Energy 99:115–128
Burhan M, Oh SJ, Chua KJE, Ng KC (2016e) Double lens collimator solar feedback sensor and master slave configuration: development of compact and low cost two axis solar tracking system for CPV applications. Sol Energy 137:352–363
Burhan M, Shahzad MW, Ng KC (2017a) Development of performance model and optimization strategy for standalone operation of CPV-hydrogen system utilizing multi-junction solar cell. Int J Hydrogen Energy 42(43):26789–26803
Burhan M, Shahzad MW, Ng KC (2017b) Long-term performance potential of concentrated photovoltaic (CPV) systems. Energy Convers Manag 148:90–99
Burhan M, Oh SJ, Chua KJ, Ng KC (2017c) Solar to hydrogen: compact and cost effective CPV field for rooftop operation and hydrogen production. Appl Energy 194:255–266
Burhan M, Shahzad MW, Oh SJ, Ng KC (2018a) A pathway for sustainable conversion of sunlight to hydrogen using proposed compact CPV system. Energy Convers Manag 165:102–112
Burhan M, Shahzad MW, Ng KC (2018b) Multicell design for concentrated photovoltaic (CPV) module. In: Solar panels and photovoltaic materials. IntechOpen
Burhan M, Shahzad MW, Ng KC (2018c) Sustainable cooling with hybrid concentrated photovoltaic thermal (CPVT) system and hydrogen energy storage. Int J Comput Phys Ser 1(2):40–51
Burhan M, Shahzad MW, Choon NK (2018d) Hydrogen at the rooftop: compact cpv-hydrogen system to convert sunlight to hydrogen. Appl Therm Eng 132:154–164
Chen Leon LC (2003) Stationary photovoltaic array module design for solar electric power generation systems. US Patent 6,653,551
Chen Leon LC (2004) Photovoltaic array module design for solar electric power generator systems. US Patent 6,717,045
Chong KK, Siaw FL, Wong CW, Wong GS (2009) Design and construction of nonimaging planar concentrator for concentrator photovoltaic system. Renew Energy 34:1364–1370
Chong KK, Wong CW, Siaw FL, Yew TK (2010) Optical characterization of nonimaging planar concentrator for the application in concentrator photovoltaic system. J SolEnergy Eng 132(1):011011
Diaz V, Alvarez LL, Alonso J, Luque A, Mateos C (2004) In: Proceedings of the European PV solar conference. WIP, Munich, p 2086
Farahani S (2011) ZigBee wireless networks and transceivers. Newnes
Garboushian V, Roubideaux D, Yoon S (1996) In: Proceedings of the 25th photovoltaic specialists conference. IEEE, New York, p 1373
Ittner WB III (1980) An array of directable mirrors as a photovoltaic solar concentrator. Sol Energy 24:221–234
Luque A, Miñano JC, Davies PA, Terrón MJ, Tobías I, Sala G, Alonso J (1991) In: Proceedings of the IEEE PV specialists conference. IEEE, New York, p 99
Muhammad B, Seung JO, Ng KC, Chun W (2016) Experimental investigation of multijunction solar cell using two axis solar tracker. Appl Mech Mater 819:536–540. https://doi.org/10.4028/www.scientific.net/AMM.819.536
National Renewable Energy Laboratory (NREL) (2016) http://www.nrel.gov/ncpv/images/efficiency_chart.jpg. Accessed 1 Aug 2016
O’Neil Ml, McDanal A, Walters R, Perry J (1991) In: Proceedings of the 22nd photovoltaic specialists conference. IEEE, New York, p 523
Oh SJ, Burhan M, Ng KC, Kim Y, Chun W (2015) Development and performance analysis of a two-axis solar tracker for concentrated photovoltaics. Int J Energy Res 39(7):965–976
Tsadka S, Segev R, Migalovich P, Levin O, Tarazi E, Whelan R (2009) Solar electricity generation system. US Patent US2009/0065045
Walter L, John L (1994) Multiple reflector concentrator solar electric power system. US Patent 5,374,317
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Burhan, M., Shahzad, M.W., Ng, K.C. (2019). Concentrated Photovoltaic (CPV): From Deserts to Rooftops. In: Vasel, A., Ting, DK. (eds) Advances in Sustainable Energy. Lecture Notes in Energy, vol 70. Springer, Cham. https://doi.org/10.1007/978-3-030-05636-0_5
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