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2020 | OriginalPaper | Buchkapitel

Experimental Study on PV Degradation Loss Assessment of Stand-Alone Photovoltaic (SAPV) Array in Field: A New Simplified Comparative Analytical Approach

verfasst von : Rohit Tripathi, Rakhi Sharma, G. N. Tiwari

Erschienen in: Advances in Greener Energy Technologies

Verlag: Springer Singapore

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Abstract

In the present study, a comparative study has been made on some quality factors: PV production factor, PV degradation loss factor and PV temperature-dependent factors of on-field PV array, placed at Centre for Energy Studies, Indian Institute of Technology Delhi, New Delhi, India. Three PV arrays are installed in IIT Delhi, named as: subarray (make1-Siemens), subarray (make2-CEL) and entire PV array (combination of both subarrays). A new terminology PV degradation loss factor has been proposed. The concept of overall PV degradation loss factors due to the combined effect of various constant losses due to long-term exposure of existing PV arrays as well as variable losses and operating temperature have been introduced. An attempt has been made to develop a new simplified methodology to evaluate the overall PV degradation loss factors (due to the combined effect of various monthly variable losses and the constant (fixed) losses) for on-field PV array/subarrays on the basis of observations measured during experimentation and numeric computations. In the observation, subarray (make1-Siemens) is found to be higher for generating high electrical energy on-field condition.

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Literatur
1.
Zurück zum Zitat Joshi AS, Dincer I, Reddy BV (2009) Thermodynamic assessment of photovoltaic systems. Sol Energy 83:1139–1149 Joshi AS, Dincer I, Reddy BV (2009) Thermodynamic assessment of photovoltaic systems. Sol Energy 83:1139–1149
2.
Zurück zum Zitat Jain A, Mehta R, Mittal SK (2011) Modelling impact of solar radiation on site selection for solar PV power plants in India. Int J Green Energy 8(4):486–498 Jain A, Mehta R, Mittal SK (2011) Modelling impact of solar radiation on site selection for solar PV power plants in India. Int J Green Energy 8(4):486–498
3.
Zurück zum Zitat Tripathi R, Tiwari GN, Dwivedi VK (2016) Overall energy, exergy and carbon credit analysis of N partially covered Photovoltaic Thermal (PVT) concentrating collector connected in series. Sol Energy 136:260–267 Tripathi R, Tiwari GN, Dwivedi VK (2016) Overall energy, exergy and carbon credit analysis of N partially covered Photovoltaic Thermal (PVT) concentrating collector connected in series. Sol Energy 136:260–267
4.
Zurück zum Zitat Dumas LN, Shumka A (1982) Photovoltaic module reliability improvement through application testing and failure analysis. IEEE Trans Reliab 31(3):228–234 Dumas LN, Shumka A (1982) Photovoltaic module reliability improvement through application testing and failure analysis. IEEE Trans Reliab 31(3):228–234
5.
Zurück zum Zitat Al-Aloud A, Zhang L (2000) Application of radial basis function networks for solar-array modeling and maximum power-point prediction. IEEE Trans Distrib 147(5):310–316 Al-Aloud A, Zhang L (2000) Application of radial basis function networks for solar-array modeling and maximum power-point prediction. IEEE Trans Distrib 147(5):310–316
6.
Zurück zum Zitat Kazmerski LL (2006) Solar photovoltaic’s R&D at the tipping point: a technology overview. Electron Spectrosc Relat Phenom 150:105–135 Kazmerski LL (2006) Solar photovoltaic’s R&D at the tipping point: a technology overview. Electron Spectrosc Relat Phenom 150:105–135
7.
Zurück zum Zitat Albrecht J (2007) The future role of photovoltaics: a learning curve versus portfolio perspective. Energy Policy 35:296–304 Albrecht J (2007) The future role of photovoltaics: a learning curve versus portfolio perspective. Energy Policy 35:296–304
8.
Zurück zum Zitat Knobloch J, Glunz SW, Henniger V, Warta W, Wettling W (1995) 21% efficient solar cells processed from czochralski grown silicon. In: Proceeding 13th EU PVSEC, Nice, France Knobloch J, Glunz SW, Henniger V, Warta W, Wettling W (1995) 21% efficient solar cells processed from czochralski grown silicon. In: Proceeding 13th EU PVSEC, Nice, France
9.
Zurück zum Zitat Bishop J, Ossenbrink HA (1995) Five years of module qualification testing. In: Proceeding of 13th EU PVSEV Nice, vol 2. France, p 104 Bishop J, Ossenbrink HA (1995) Five years of module qualification testing. In: Proceeding of 13th EU PVSEV Nice, vol 2. France, p 104
10.
Zurück zum Zitat Quintana MA, King D, McMahon TJ, Osterwald CR (2002) Commonly observed degradation in field-aged photovoltaic modules. In: Proceeding 29th IEEE PVSEC, New Orleans, p 1436 Quintana MA, King D, McMahon TJ, Osterwald CR (2002) Commonly observed degradation in field-aged photovoltaic modules. In: Proceeding 29th IEEE PVSEC, New Orleans, p 1436
11.
Zurück zum Zitat Messenger R, Ventre J (2000) Photovoltaic’s systems engineering. CRC Press LLC, Florida, pp 3–5 Messenger R, Ventre J (2000) Photovoltaic’s systems engineering. CRC Press LLC, Florida, pp 3–5
12.
Zurück zum Zitat Tripathi R, Tiwari GN, Al-Helal IM (2016) Thermal modelling of N partially covered photovoltaic thermal (PVT)–Compound parabolic concentrator (CPC) collectors connected in series. Sol Energy 123:174–184 Tripathi R, Tiwari GN, Al-Helal IM (2016) Thermal modelling of N partially covered photovoltaic thermal (PVT)–Compound parabolic concentrator (CPC) collectors connected in series. Sol Energy 123:174–184
13.
Zurück zum Zitat Sharma R, Tiwari GN (2012) Technical performance evaluation of stand-alone photovoltaic array for outdoor field conditions of New Delhi. Appl Energy 92:644–652 Sharma R, Tiwari GN (2012) Technical performance evaluation of stand-alone photovoltaic array for outdoor field conditions of New Delhi. Appl Energy 92:644–652
14.
Zurück zum Zitat Piliougine M, Cañete C, Moreno R, Carretero J, Hirose J, Ogawa S, Sidrach-de-Cardona M (2013) Comparative analysis of energy produced by photovoltaic modules with anti-soiling coated surface in arid climates. Appl Energy 112:626–634 Piliougine M, Cañete C, Moreno R, Carretero J, Hirose J, Ogawa S, Sidrach-de-Cardona M (2013) Comparative analysis of energy produced by photovoltaic modules with anti-soiling coated surface in arid climates. Appl Energy 112:626–634
15.
Zurück zum Zitat Hammond R, Shrinivasan D, Harris A, Whitfield K, Wohlgemuth J (1997) Effects of soiling on PV Module and radiometer performance. In: 26th IEEE PVSC, Anaheim, California Hammond R, Shrinivasan D, Harris A, Whitfield K, Wohlgemuth J (1997) Effects of soiling on PV Module and radiometer performance. In: 26th IEEE PVSC, Anaheim, California
16.
Zurück zum Zitat Tripathi R, Tiwari GN (2017) Annual performance evaluation (energy and exergy) of fully covered concentrated photovoltaic thermal (PVT) water collector: an experimental validation. Sol Energy 146:180–190 Tripathi R, Tiwari GN (2017) Annual performance evaluation (energy and exergy) of fully covered concentrated photovoltaic thermal (PVT) water collector: an experimental validation. Sol Energy 146:180–190
17.
Zurück zum Zitat Wilhelm D, King-Hang L, Josie C (2006) Efficiency and degradation of a copper indium diselenide photovoltaic module and yearly output at a sunny site in Jordan. Appl Energy 83(12):1339–1350 Wilhelm D, King-Hang L, Josie C (2006) Efficiency and degradation of a copper indium diselenide photovoltaic module and yearly output at a sunny site in Jordan. Appl Energy 83(12):1339–1350
18.
Zurück zum Zitat Kaplanis S, Kaplani E (2011) Energy performance and degradation over 20 years performance of BP c-Si PV modules. Simul Model Pract Theory 19(4):1201–1211 Kaplanis S, Kaplani E (2011) Energy performance and degradation over 20 years performance of BP c-Si PV modules. Simul Model Pract Theory 19(4):1201–1211
19.
Zurück zum Zitat Van Dyk EE, Meyer EL, Vorster FJ, Leitch AWR (2002) Long-term monitoring of photovoltaic devices. Renew Energy 25(2):183–197 Van Dyk EE, Meyer EL, Vorster FJ, Leitch AWR (2002) Long-term monitoring of photovoltaic devices. Renew Energy 25(2):183–197
20.
Zurück zum Zitat Guenounou A, Malek A, Aillerie M (2016) Comparative performance of PV panels of different technologies over one year of exposure: application to a coastal Mediterranean region of Algeria. Energy Convers Manage 114:356–363 Guenounou A, Malek A, Aillerie M (2016) Comparative performance of PV panels of different technologies over one year of exposure: application to a coastal Mediterranean region of Algeria. Energy Convers Manage 114:356–363
21.
Zurück zum Zitat Kichou S, Abaslioglu E, Silvestre S, Nofuentes G, Torres M, Ramírez, Chouder A (2016) Study of degradation and evaluation of model parameters of micromorph silicon photovoltaic modules under outdoor long term exposure in Jaén, Spain. In: Energy conversion and management, vol 120, pp 109–119 Kichou S, Abaslioglu E, Silvestre S, Nofuentes G, Torres M, Ramírez, Chouder A (2016) Study of degradation and evaluation of model parameters of micromorph silicon photovoltaic modules under outdoor long term exposure in Jaén, Spain. In: Energy conversion and management, vol 120, pp 109–119
22.
Zurück zum Zitat Meyer EL, Van Dyk EE (2016) Assessing the reliability and degradation of photovoltaic module performance parameters. IEEE Trans Reliab 53:83–92 Meyer EL, Van Dyk EE (2016) Assessing the reliability and degradation of photovoltaic module performance parameters. IEEE Trans Reliab 53:83–92
23.
Zurück zum Zitat Meyer EL, Van Dyk EE (2000) Monitoring I, V and performance parameters of photovoltaic modules. In: 17th European photovoltaic solar energy conference (PSEC), pp 524–527 Meyer EL, Van Dyk EE (2000) Monitoring I, V and performance parameters of photovoltaic modules. In: 17th European photovoltaic solar energy conference (PSEC), pp 524–527
24.
Zurück zum Zitat Tripathi R, Tiwari GN, Bhatti TS, Dwivedi VK (2017) 2-E (Energy-Exergy) for partially covered concentrated photovoltaic thermal (PVT) collector. Energy Procedia 142:616–623 Tripathi R, Tiwari GN, Bhatti TS, Dwivedi VK (2017) 2-E (Energy-Exergy) for partially covered concentrated photovoltaic thermal (PVT) collector. Energy Procedia 142:616–623
25.
Zurück zum Zitat Tripathi R, Tiwari GN, Dwivedi VK (2017) Energy matrices evaluation and exergoeconomic analysis of series connected N partially covered (glass to glass PV module) concentrated-photovoltaic thermal (C-PVT) collector: at constant flow rate mode. Energy Convers Manage 145:353–370 Tripathi R, Tiwari GN, Dwivedi VK (2017) Energy matrices evaluation and exergoeconomic analysis of series connected N partially covered (glass to glass PV module) concentrated-photovoltaic thermal (C-PVT) collector: at constant flow rate mode. Energy Convers Manage 145:353–370
26.
Zurück zum Zitat Saini V, Tripathi R, Tiwari GN, Al-Helal IM (2018) Electrical and thermal assessment of N partially covered PVT-compound parabolic concentrator collector connected in series, for different solar cell materials. Appl Therm Eng 128:1611–1623 Saini V, Tripathi R, Tiwari GN, Al-Helal IM (2018) Electrical and thermal assessment of N partially covered PVT-compound parabolic concentrator collector connected in series, for different solar cell materials. Appl Therm Eng 128:1611–1623
Metadaten
Titel
Experimental Study on PV Degradation Loss Assessment of Stand-Alone Photovoltaic (SAPV) Array in Field: A New Simplified Comparative Analytical Approach
verfasst von
Rohit Tripathi
Rakhi Sharma
G. N. Tiwari
Copyright-Jahr
2020
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-15-4246-6_40