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Research Article

Performance enhancement of photovoltaic array configurations with blocking p-mosfets under partial shading condition

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References

  • Alrahim Shannan, N. M. A., N. Z. Yahaya, and B. Singh. (2013). “Single-diode model and two-diode model of PV modules: A comparison”. Computers and Industrial Engineering IEEE International Conference on Control System. Mindeb, Malaysia. 210–14
  • Amdan, M., and K. A. Brawiesh. 2019. Enhancement of PV performance using optical solar spectrum splitting. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 1–8. doi:10.1080/15567036.2019.1668087.
  • Belhachat, F., and C. Larbes. 2015. Modeling, analysis and comparison of solar photovoltaic array configurations under partial shading conditions. Solar Energy 120:399–418. doi:10.1016/j.solener.2015.07.039.
  • Daliento, S., F. D. Napoli, P. Guerriero, and V. Alessandro. 2016. A modified bypass circuit for improved hot spot reliability of solar panels subject to partial shading. Solar Energy 134:211–18. doi:10.1016/j.solener.2016.05.001.
  • Danish, S., G. Mehta, and V. K. Yadav. 2017, “Assessing the performance of Partially Shaded PV array under different radiations”, International Conference On Computing, Communication And Networking Technologies, I.I.T, Delhi, pp. 1–3.
  • Dhimish, M., V. Holmes, B. Mehrdadi, M. Dales, B. Chong, and L. Zhang. 2017. Seven indicators variations for multiple PV array configurations under partial shading and faulty PV conditions. Renewable Energy 113:438–60. doi:10.1016/j.renene.2017.06.014.
  • Falin, J. 2003. Reverse current/battery protection circuits. Texas_Instruments. SLVA139. https://www.ti.com/lit/an/slva139/slva139.pdf?ts=1606081286870
  • Hoover, A. 2015. Load switches for power muxing and reverse current blocking design guide. Texas_Instruments. TIDUA64. https://www.ti.com/lit/ug/tidua64/tidua64.pdf?ts=1606081552129
  • 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 (8):3195–206.
  • Kato, K., and H. Koizumi, 2015, “A study on effect of blocking and bypass diodes on partial shaded PV string with compensating circuit using voltage equalizer”, Int. Symposium on Circuits and Systems, Lisbon, 241–44.
  • Mishra, N., A. S. Yadav, R. Pachauri, Y. K. Chauhan, and V. K. Yadav. 2017. Performance enhancement of PV system using proposed array topologies under various shadow patterns. Solar Energy 157:641–56. doi:10.1016/j.solener.2017.08.021.
  • Moballegh, S., and J. Jiang. 2014. Modeling, prediction, and experimental validations of power peaks of PV arrays under partial shading conditions. IEEE Transactions on Sustainable Energy 5 (1):293–300. doi:10.1109/TSTE.2013.2282077.
  • Nejad, S. M., A. Khalafi, and S. M. Ahmadi. 2016. Mathematical analysis of total cross tied photovoltaic array under partial shading condition and its comparison with other configurations. Solar Energy 133:501–11. doi:10.1016/j.solener.2016.03.058.
  • Pachauri, R., A. S. Yadav, Y. K. Chauhan, A. Sharma, and V. Kumar. 2018. Shade dispersion-based photovoltaic array configurations for performance enhancement under partial shading conditions. International Transactions on Electrical Energy Systems 28(7):1–32. doi:10.1002/etep.2556.
  • Pachauri, R. R. Singh, A. Gehlot, R. Samakaria, and S. Choudhury. 2019. 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.
  • Parlak, K. S. 2014. PV array reconfiguration method under partial shading conditions. Electrical Power Energy Systems 63:713–21. doi:10.1016/j.ijepes.2014.06.042.
  • Patel, H., and V. Agarwal. 2008. MATLAB-based modeling to study the effects of partial shading on PV array characteristics. IEEE Transactions on Energy Conversion 23 (1):302–10. doi:10.1109/TEC.2007.914308.
  • Pendem, S. R., and S. Mikkili. 2018. Modeling, simulation and performance analysis of solar PV array configurations Series, Series-Parallel and Honey-Comb) to extract maximum power under partial shading conditions. Energy Reports 4:274–87. doi:10.1016/j.egyr.2018.03.003.
  • Picault, D., B. Raison, S. Bacha, J. D. L. Casa, and J. Aguilera. 2010. Forecasting photovoltaic array power production subject to mismatch losses. Solar Energy 84 (7):1301–09. doi:10.1016/j.solener.2010.04.009.
  • Potnuru, S. R., D. Pattabiraman, S. I. Ganesan, and N. Chilakapati. 2015. Positioning of PV panels for reduction in line losses and mismatch losses in PV array. Renewable Energy 78:264–75. doi:10.1016/j.renene.2014.12.055.
  • Rani, B. I., G. S. Ilango, and C. Nagamani. 2013. Enhanced power generation from PV array under partial shading conditions by shade dispersion using Su Do Ku configuration. IEEE Transactions on Sustainable Energy 4 (3):594–601. doi:10.1109/TSTE.2012.2230033.
  • Rasool, F., M. Drieberg, N. Badruddin, B. Singh, and M. Singh. 2017. , PV panel modeling with improved parameter extraction technique. Solar Energy 153:519–30. doi:10.1016/j.solener.2017.05.078.
  • Stokes, Z., and A. Kaknevicius. 2016. Reverse current protection in load switches. Texas_Instruments. SLVA730. https://www.ti.com/lit/an/slva730/slva730.pdf?ts=1606065908686
  • Texas_Instruments, 2019, 11 Ways to Protect Your Power Path.
  • Uppuluri, S. 2015. Automotive reverse battery protection diode. Diodes Inc. AN1101. https://www.diodes.com/assets/App-Note-Files/AN1101.pdf
  • Vijayalekshmy, S., G. R. Bindu, and S. R. Iyer. 2016. A novel Zig-Zag scheme for power enhancement of partially shaded solar arrays. Solar Energy 135:92–102. doi:10.1016/j.solener.2016.05.045.
  • Wiles, J. C., and D. L. King, 1997, “Blocking diodes and fuses in low-voltage PV systems”, IEEE Photovoltaic Specialists Conference, USA, 1105–08.
  • Yadav, A. S., R. K. Pachauri, Y. K. Chauhan, S. Choudhary, and R. Singh. 2017. Performance enhancement of partially shaded PV array using novel shade dispersion effect on magic-square puzzle configuration. Solar Energy 144:780–97. doi:10.1016/j.solener.2017.01.011.
  • Yadav, A. S., and V. Mukherjee. 2018. Line losses reduction techniques in puzzled PV array configuration under different shading conditions. Solar Energy 171:774–83. doi:10.1016/j.solener.2018.07.007.

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