84
Views
1
CrossRef citations to date
0
Altmetric
Research Article

Attenuation of hotspot phenomenon in PV systems

, &
Pages 11788-11802 | Received 24 Apr 2023, Accepted 25 Sep 2023, Published online: 04 Oct 2023

References

  • Ahmed, J., and Z. Salam. 2014. A maximum power point tracking (MPPT) for PV system using cuckoo search with partial shading capability. Applied Energy 119:118–30. doi:10.1016/j.apenergy.2013.12.062.
  • Bakır, H., Detection of faults in photovoltaic modules of SPPS in Turkey; infrared thermographic diagnosis and recommendations, J. Electr. Eng. Technol. 18 (2023) 1945–57
  • Bauwens, P., and J. Doutreloigne. 2014. Reducing partial shading power loss with an integrated smart bypass. Solar Energy 103:134–42. doi:10.1016/j.solener.2014.01.040.
  • Dhanalakshmi, B., and N. Rajasekar. 2018. Dominance square based array reconfiguration scheme for power loss reduction in solar PhotoVoltaic (PV) systems. Energy Conversion and Management 156:84–102. doi:10.1016/j.enconman.2017.10.080.
  • Dhimish, M., V. Holmes, P. Mather, and M. Sibley. Jun 2018a. Novel hot spot mitigation technique to enhance photovoltaic solar panels output power performance. Solar Energy Materials and Solar Cells 179:72–79. doi:10.1016/J.SOLMAT.2018.02.019.
  • Dhimish, M., V. Holmes, P. Mather, and M. Sibley. 2018b. Novel hot spot mitigation technique to enhance photovoltaic solar panels output power performance, sol. Energy Mater Solar Cells 179:72–79. doi:10.1016/j.solmat.2018.02.019.
  • Ghosh, S., V. K. Yadav, and V. Mukherjee. 2020. A novel hot spot mitigation circuit for improved reliability of PV module. IEEE Transaction Device Mater Reliability 20 (1):191–98. doi:10.1109/TDMR.2020.2970163.
  • Guerrieroa, P., P. Tricolib, and S. Daliento. 2019. A bypass circuit for avoiding the hot spot in PV modules. Solar Energy181 181:430–38. doi:10.1016/j.solener.2019.02.010.
  • Guerriero, P., M. Coppola, I. Spina, I. Matacena, and S. Daliento. 2017. A voltage divider strategy for reducing the hot spot temperature in partially shaded solar panels. doi:10.1109/ICCEP.2017.8004791.
  • International Energy Agency report IEA-PVPS T13-01, review of failures of photovoltaic modules, 2014. ISBN 978-3-906042-16-9.
  • IRENA and IEA-PVPS, 2016. End-of-life management: Solar photovoltaic panels.
  • Ishaque, K., and Z. Salam. 2013. A deterministic particle swarm optimization maximum power point tracker for photovoltaic system under partial shading condition. IEEE Transactions on Industrial Electronics 60:3195–206. doi:10.1109/TIE.2012.2200223.
  • Janani, C., B. C. Babu, and K. Vijayakumar. 2023. An optimized reconfiguration technique of photovoltaic array using adaptive-JAYA optimization, Energy sources, part A: Recovery. Utilization, and Environmental Effects 45 (2):3777–810. doi:10.1080/15567036.2023.2197853.
  • Kermadi, M., Z. Salam, A. M. Eltamaly, J. Ahmed, S. Mekhilef, C. Larbes, and E. M. Berkouk. 2020. Recent developments of MPPT techniques for PV systems under partial shading conditions: A critical review and performance evaluation, IET renew. Power Gener 14 (17):3401–17. doi:10.1049/iet-rpg.2020.0454.
  • Kim, K. A., P. T. Krein, G.-S. Seo, B.-H. Cho. 2013. Photovoltaic ac parameter characterization for dynamic partial shading and hot spot detection, in Proc. IEEE Appl. Power Electron. Conf. 109–15. Long Beach, CA, USA.
  • Kumar, N., I. Hussain, B. Singh, and B. Panigrahi. 2017. Rapid MPPT for uniformly and partial shaded PV System by using JayaDE algorithm in highly fluctuating atmospheric conditions. IEEE Transaction Industrial Information 13 (5):2406–16. doi:10.1109/TII.2017.2700327.
  • Lappalainen, K., and S. Valkealahti. 2017. Effects of PV array layout, electrical configuration and geographic orientation on mismatch losses caused by moving clouds, sol. Energy 144:548–55. doi:10.1016/j.solener.2017.01.066.
  • Mahmoudi, S., N. Huda, Z. Alavi, M. T. Islam, and M. Behnia. 2019. End-of-life photovoltaic modules: A systematic quantitative literature review, Resour. Conservation Recycl 146:1–16. doi:10.1016/j.resconrec.2019.03.018.
  • Mathur, N., S. Singh, and J. W. Sutherland. 2020. Promoting a circular economy in the solar photovoltaic industry using life cycle symbiosis, Resour. Conservation Recycl 155:104649. doi:10.1016/j.resconrec.2019.104649.
  • Messenger, R. A., and A. Abtahi. 2010. Photovoltaic systems Engineering. 3rd ed. Boca Raton: CRC Press.
  • Mohanty, S., B. Subudhi, and P. K. Ray. 2016. A new MPPT design using grey wolf optimization technique for photovoltaic system under partial shading conditions. IEEE Transaction Sustainable Energy 7 (1):181–88. doi:10.1109/TSTE.2015.2482120.
  • Pachauri, R., R. Singh, A. Gehlot, R. Samakaria, and S. Choudhury. 2018. Experimental analysis to extract maximum power from PV array reconfiguration under partial shading conditions. Engineering Science and Technology, an International Journal 22 (1):109–30. doi:10.1016/j.jestch.2017.11.013.
  • Palawat, K. P., V. K. Yadav, R. L. Meena, and S. Ghosh. 2021. Experimental investigation of performance of PV array topologies under simulated PSCs, applied soft computing and embedded System applications in solar Energy. CRC Press.
  • Pannebakker, B. B., A. C. D. Waal, and W. G. J. H. M. V. Sark. 2017. Photovoltaics in the shade: One bypass diode per solar cell revisited, Prog. Photovoltaic Research Application 25 (10):836–49. doi:10.1002/pip.2898.
  • Papadopoulou, E. 2013. Photovoltaic Industrial systems- an environmental approach. Berlin, Heidelberg: Springer. 978-3-642-26664-5, Published: 27 February 2013
  • Stonier, A. A., R. Harish, M. Srinivasan, and D. Sarathkumar. 2023. An extensive critique on fault-tolerant systems and diagnostic techniques intended for solar photovoltaic power generation, Energy sources, part A: Recovery. Utilization, and Environmental Effects 45 (1):1856–73. doi:10.1080/15567036.2023.2183282.
  • Sundareswaran, K., S. Peddapati, and S. Palani. 2014. MPPT of PV systems under partial shaded conditions through a colony of flashing fireflies. IEEE Transactions on Energy Conversion 29:463–72.
  • Sundareswaran, K., P. Sankar, P. S. R. Nayak, S. P. Simon, and S. Palani. 2015. Enhanced energy output from a pv system under partial shaded conditions through artificial bee colony. IEEE Transaction Sustainable Energy 6 (1):198–209. doi:10.1109/TSTE.2014.2363521.
  • Vats, M. C., and S. K. Singh. 2014. E-Waste characteristic and its disposal. International Journal Ecology Science Environment Engineering 1:49–61.
  • Wang, J., and P. C. Hsu. 2011. An investigation on partial shading of PV modules with different connection configurations of PV cells. Energy 36 (5):3069–78. doi:10.1016/j.energy.2011.02.052.
  • Yadav, A. S., R. K. Pachauri, and Y. K. Chauhan. 2016. Comprehensive investigation of PV arrays with puzzle shade dispersion for improved performance, sol. Solar Energy 129:256–85. doi:10.1016/j.solener.2016.01.056.
  • Yadav, A. S., V. K. Yadav, V. Mukherjee, and S. Ghosh. 2021. Performance investigation of different bypass diode topology based sdk-pv arrays under partial shading conditions. In Innovations in electrical and electronic engineering. Lecture notes in electrical engineering, 261–70. Singapore 661: Springer. doi:10.1007/978-981-15-4692-1_20.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.