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Research Article

Performance Analysis of Solar PV system using Customize wireless data acquisition system and novel cleaning technique

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Pages 2748-2769 | Received 14 Dec 2021, Accepted 21 Mar 2022, Published online: 12 Apr 2022

References

  • Abderrezek, M., and M. Fathi. 2017. Experimental study of the dust effect on photovoltaic panels’ energy yield. Solar Energy 142:308–20. doi:10.1016/j.solener.2016.12.040.
  • Al-Housani, M., Y. Bicer, and M. Koç. 2019a. Experimental investigations on PV cleaning of large-scale solar power plants in desert climates: Comparison of cleaning techniques for drone retrofitting. Energy Conversion and Management 185:800–15. doi:10.1016/j.enconman.2019.01.058.
  • Al-Housani, M., Y. Bicer, and M. Koç. 2019b. Assessment of various dry photovoltaic cleaning techniques and frequencies on the power output of CdTe-type modules in dusty environments. Sustainability 11 (10):2850. doi:10.3390/su11102850.
  • Ali, Al Shehri, Parrott Brian, Carrasco Pablo, Al Saiari Hamad, Taie Ihsan, et al. 2016. Impact of dust deposition and brush-based dry cleaning on glass transmittance for PV modules applications. Solar Energy 135:317–24. doi:10.1016/J.SOLENER.2016.06.005.
  • Alnasser, T. M. A., A. M. J. Mahdy, K. I. Abass, M. T. Chaichan, and H. A. Kazem. 2020. Impact of dust ingredient on photovoltaic performance: An experimental study. Solar Energy 195:651–59. doi:10.1016/j.solener.2019.12.008.
  • AM, S. S., and H. M. Walwil. 2014. Fundamental studies on dust fouling effects on PV module performance. Solar Energy 107:328–37. doi:10.1016/j.solener.2014.05.048.
  • Annual Report. 2019. Accessed 28 September 2021.https://mnre.gov.in/annualreport2019-20
  • Anwari, M., A. Hidayat, M. I. Hamid, and I. Taufik Wireless data acquisition for photovoltaic power system, in: International Congress: Telecommunications Energy Conference, Incheon, Korea, pp. 1–4, October 2009.
  • Country Analysis Executive Summary: India. 2020. Accessed 20 September 2021. https://www.eia.gov/international/analysis/country/IND-2020
  • Dorobantu, L., M. O. Popescu, C. Popescu, and A. Craciunesc, The effect of surface impurities on photovoltaic panels. In: Proceedings of the International Conference on Renewable Energies and Power Quality (icrepq’11), Spain, LasPal- mas dEGran Canaria, 2011.
  • Elias Urrejola, anzas Javier, Ayala Paulo, Salgado Marcelo, Ramirez-Sagner Gonzalo, Cortes Cristian, Pino Alan, Escobar Rodrigo, et al. 2016. Effect of soiling and sunlight exposure on the performance ratio of photovoltaic technologies in Santiago, Chile. Energy Conversion and Management 114:338–47. doi:10.1016/j.enconman.2016.02.016.
  • Figgis, B., A. Nouviaire, Y. Wubulikasimu, W. Javed, B. Guo, A. Ait-Mokhtar, R. Belarbi, S. Ahzi, Y. Rémond, and A. Ennaoui. 2018. Investigation of factors affecting condensation on soiled PV modules. Solar Energy 159:488–500. Accessed 20 September 2021.https://doi.org/10.1016/j.solener.2017.10.089
  • Forero, N., J. Hernandez, and G. Gordillo. 2006. Development of a monitoring system for a PV solar plant. Energy Conversion and Management 47 (15–16):2329–36. doi:10.1016/j.enconman.2005.11.012.
  • Gheitasi, A., A. Almaliky, and N. Albaqawi Development of an automatic cleaning system for photovoltaic plants. 2015 IEEE PES Asia-Pacific Power Energy Eng. Conf, Brisbane, QLD, Australia, IEEE. 1–4. 2015. 10.1109/APPEEC.2015.7380938.
  • Gholami, A., I. Khazaee, S. Eslami, M. Zandi, and E. Akrami. 2018. Experimental investigation of dust deposition effects on photovoltaic output performance. Solar Energy 159:346–52. doi:10.1016/j.solener.2017.11.010.
  • Goossens, D., Z. Y. Offer, and A. Zangvil. 1993. Wind tunnel experiments and field investigations of aeolian dust deposition on photovoltaic solar collectors. Solar Energy 50:75–84. doi:10.1016/0038-092X(93)90009-D.
  • Goossens, D., and E. Van Kerschaever. 1999. Aeolian dust deposition on photovoltaic solar cells: The effects of wind velocity and airborne dust concentration on cell performance. Solar Energy 66:277–89. doi:10.1016/S0038-092X(99)00028-6.
  • Gupta, V., M. Sharma, R. K. Pachauri, K. N. D, and K. N. D. Babu. 2019. Comprehensive review on effect of dust on solar photovoltaic system and mitigation techniques. Solar Energy 191:596–622. doi:10.1016/j.solener.2019.08.079.
  • Gupta, V., M. Sharma, R. K. Pachauri, K. N. D, and K. N. D. Babu. 2020. A low-cost real-time IOT enabled data acquisition system for monitoring of PV system, Energy Sources, Part A: Recovery. Utilization Environ Effects 1–16. doi:10.1080/15567036.2020.1844351.
  • Gupta, V., M. Sharma, R.K. Pachauri, K.N.D., Babu, et al. 2019. Impact of hailstorm on the performance of PV module: A review, Energy Sources, Part A: Recovery. Utilization, and Environmental Effects:1–22. https://doi.org/10.1080/15567036.2019.1648597
  • Hamou, S., S. Zine, and R. Abdellah. 2014. Rahmani Abdellah, efficiency of PV module under real working conditions. Energy Procedia 50:553–58. doi:10.1016/j.egypro.2014.06.067.
  • He, G., C. Zhou, and Z. Li. 2011. Review of self-cleaning method for solar cell array. Procedia Engineering 16:640–45. doi:10.1016/J.PROENG.2011.08.1135.
  • Hoang, A. T., V. V. Pham, and X. P. Nguyen. 2021. Integrating renewable sources into energy system for smart city as a sagacious strategy towards clean and sustainable process. Journal of Cleaner Production 305:127161.
  • Indian power Industry report. 2020. Accessed 21 September 2021. https://www.ibef.org/industry/power-sector-india.aspx2020
  • Jamil, B., K. Irshad, A. Algahtani, S. Islam, M. A. Ali, and A. Shahab. 2019. On the calibration and applicability of global solar radiation models based on temperature extremities in India. Environ Prog Sustain 13236. doi:10.1002/ep.13236.
  • Javed, W., Y. Wubulikasimu, B. Figgis, and B. Guo. 2017. Characterization of dust accumulated on photovoltaic panels in Doha. Qatar. Solar Energy 142:123–35. doi:10.1016/j.solener.2016.11.053.
  • Jiang, B., and M. T. Iqbal. 2019. Open-source data logging and data visualization for an isolated PV system. Electronics (Basel) 8:1–16.
  • Jiang, Y., L. Lu, A. R. Ferro, and G. Ahmadi. 2018. Analyzing wind cleaning process on the accumulated dust on solar photovoltaic (PV) modules on flat surfaces. Solar Energy 159:1031–36. doi:10.1016/j.solener.2017.08.083.
  • Kaldellis, J. K., M. Kapsali, and K. A. Kavadias. 2014. Temperature and wind speed impact on the efficiency of PV installations. Experience obtained from outdoor measurements in Greece. Renewable Energy 66:612–24. doi:10.1016/j.renene.2013.12.041.
  • Katkar, A. A., N. N. Shinde, and P. S. Patil. 2011. Performance & evaluation of industrial solar cell wrt temperature and humidity. The International Journal of Mechanical Engineering Research and Technology 1 (1):69–73.
  • Kegeleers, M. 2015. The development of a cleaning robot for PV panels. KU Leuven: Faculty of Engineering Technology.
  • Khodakaram-Tafti, A., and M. Yaghoubi. 2020. Experimental study on the effect of dust deposition on photovoltaic performance at various tilts in semi-arid environment. Sustainable Energy Technologies and Assessments 42:100822. doi:10.1016/j.seta.2020.100822.
  • Koutroulis, E., and K. Kalaitzakis. 2003. Development of an integrated data-acquisition system for renewable energy sources systems monitoring. Renew Energy 28:139–52.
  • Li Wah, Thong, Sharmeeni, Murugan, Poh Kiat, Ng, Sun Cha, Chee, et al. Analysis of photovoltaic panel temperature effects on its efficiency, In: International Conference on Electrical Engg. and Electronics comm. system, Vietnam. 18–19 November 2016.
  • loannis, Arabatzis, Todorova Nadia, Fasaki Ioanna, Tsesmeli Chrysovalanti, Peppas Antonis, Li Wen Xin, Zhao Zhiwei, et al. 2018. Photocatalytic, self-cleaning, antireflective coating for photovoltaic panels: Characterization and monitoring in real conditions. Solar Energy 159: 251–59. Accessed 20 September 2021. https://doi.org/10.1016/J.SOLENER.2017.10.088
  • Malik, A. Q., and D. Sjbh. 2003. Outdoor testing of single crystal silicon solar cells. Renewable Energy 28 (9):1433–45. doi:10.1016/S0960-1481(02)00255-0.
  • Mani, M., and R. Pillai. 2010. Impact of dust on solar photovoltaic (PV) performance: Research status, challenges and recommendations. Renewable and Sustainable Energy Reviews 14 (9):3124–31. doi:10.1016/j.rser.2010.07.065.
  • Mukaro, R., and X. F. Carelse. 1999. A microcontroller-based data acquisition system for solar radiation and environmental monitoring. IEEE Transactions on Instrumentation and Measurement 48:1232–38. doi:10.1109/19.816142.
  • Nižetić, S., M. Jurčević, D. Čoko, M. Arıcı, and A. T. Hoang. 2021. Implementation of phase change materials for thermal regulation of photovoltaic thermal systems: Comprehensive analysis of design approaches. Energy 228:120546. doi:10.1016/j.energy.2021120546.
  • Pachauri, R. K., O. P. Mahela, B. Khan, A. Kumar, S. Agarwal, H. H. Alhelou, and J. Bai. 2021. Development of arduino assisted data acquisition system for solar photovoltaic array characterization under partial shading conditions. Computers & Electrical Engineering 92:107175. doi:10.1016/j.compeleceng.2021.107175.
  • Parra, J. M. P., A. M. Aroca, G. S. Ninirola, M. C. Bueso, and A. M. García. 2018. PV module monitoring system based on low-cost solutions: Wireless raspberry application and assessment. Energies 11:1–20.
  • Rahman, M. M., M. H Asanuz Zaman, and N. A. Rahim. 2015. Effects of various parameters on PV module power and efficiency. Energy Conversion and Management 103:348–58. doi:10.1016/j.enconman.2015.06.067.
  • Rajput, P., G. N. Tiwari, O. S. Sastry, B. Bora, and V. Sharma. 2016. Degradation of monocrystalline photovoltaic modules after 22years of outdoor exposure in the composite climate of India. Solar Energy 135:86–795.
  • Ramkiran, C. K. S., K. Sudhakar, and K. Sudhakar. 2020. Performance evaluation of solar PV module with filters in an outdoor environment. Case Studies in Thermal Engineering 21:100700. doi:10.1016/j.csite.2020.100700.
  • Rezk, H., I. Tyukhov, M. Al-Dhaifallah, and A. Tikhonov. 2017. Performance of data acquisition system for monitoring PV system parameters. Measurement 104:204–11. doi:10.1016/j.measurement.2017.02.050.
  • Rima J., Isaifan, Samara Ayman, Suwaileh Wafa, Johnson Daniel, Yiming Wubulikasimu, Abdallah Amir A., Aïssa Brahim, et al. 2017. Improved self-cleaning properties of an efficient and easy to scale up TiO2 thin films prepared by adsorptive self-assembly. Scientific Reports 7 (1):9466. Accessed 21 September 2021. https://doi.org/10.1038/s41598-017-07826-0
  • Saidan, M., A. G. Albaali, E. Alasis, and J. K. Kaldellis. 2016. Experimental study on the effect of dust deposition on solar photovoltaic panels in desert environment. Renewable Energy 92:499–505. doi:10.1016/j.renene.2016.02.031.
  • Shravanth, M. V., J. Srinivasan, and K. R. Sheela. 2016. Performance of solar photovoltaic installations: Effect of seasonal variations. Solar Energy 131:39–46. doi:10.1016/j.solener.2016.02.013.
  • Singh, G. K., S. Agrawal, A. Tiwari, and D. Chauhan. 2015. Application of genetic algorithm with multi-objective function to improve the efficiency of glazed photovoltaic thermal system for New Delhi (India) climate condition. Solar Energy 117:153–66. doi:10.1016/j.solener.2015.04.025.
  • Tanesab, J., D. Parlevliet, J. Whale, and T. Urmee. 2019. The effect of dust with different morphologies on the performance degradation of photovoltaic modules. Sustainable Energy Technologies and Assessments 31:347–54. https://doi.org/10.1016/j.seta.2018.12.024 21/09/2021.
  • Touati, F., M. A. Al-Hitmi, N. A. Chowdhury, J. A. Hamad, J. R. G. Antonio, and S. P. 2016. Investigation of solar PV performance under Doha weather using a customized measurement and monitoring system. Renewable Energy 89:564–77. doi:10.1016/j.renene.2015.12.046.

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