Enhancing Photovoltaic Panel Efficiency with an IoT-Enabled Robotic Cleaning System – A comprehensive Review
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The maintenance and cleaning of photovoltaic panels is critical to ensure maximum energy output and prolong their lifespan. However, manual cleaning of large-scale solar farms is time-consuming, labor-intensive, and expensive. To address this challenge, this paper proposes an IoT-based robotic cleaner for efficient monitoring and cleaning of photovoltaic panels. The proposed robotic cleaner is equipped with a camera, sensors, and a cleaning mechanism. The camera captures real-time images of the solar panels, which are analyzed by an AI-based algorithm to detect and locate dirt, debris, and other obstructions. The sensors measure environmental factors such as temperature, humidity, and light intensity, which are used to optimize the cleaning schedule and ensure the safety of the cleaning operation. The cleaning mechanism of the robotic cleaner is based on a high-pressure water jet that removes dirt and debris without damaging the solar panels. The water is supplied by an onboard tank and can be heated or cooled as required. The cleaning process is automated and can be controlled remotely through a web-based interface. The proposed IoT-based robotic cleaner offers several benefits compared to manual cleaning. It reduces labor costs, minimizes the risk of injury to workers, and improves the efficiency of cleaning operations. Moreover, it ensures consistent and high-quality cleaning, which leads to increased energy output and prolongs the lifespan of the solar panels. Overall, this paper presents a novel approach to automate the cleaning of photovoltaic panels using IoT and robotics technologies. The proposed solution has the potential to revolutionize the maintenance of solar farms and contribute to the development of sustainable and clean energy systems.
Atzori, L., Iera, A., & Morabito, G. (2010). The internet of things: A survey. Computer networks, 54(15), 2787-2805.
Gubbi, J., Buyya, R., Marusic, S., & Palaniswami, M. (2013). Internet of Things (IoT): A vision, architectural elements, and future directions. Future generation computer systems, 29(7), 1645-1660.
Sharif, M. A., McHenry, M. J., & Tan, X. (2017, September). Modeling of a bio-inspired canal-type lateral line system. In Smart Materials, Adaptive Structures and Intelligent Systems (Vol. 58257, p. V001T06A004). American Society of Mechanical Engineers.
Lee, I., & Lee, K. (2015). The internet of things (IoT): applications, investments, and challenges for enterprises. Business Horizons, 58(4), 431-440.
Ruan, X., Ma, T., & Guo, Y. (2018). The application of IoT technology in photovoltaic power generation system. In 2018 15th IEEE Annual Consumer Communications & Networking Conference (CCNC) (pp. 1-6). IEEE.
Sharif, M. A. (2022). PVC gel smart sensor for robotics sensing applications: an experimental and finite element simulation study. Engineering Research Express, 4(3), 035029.
Zhou, H., Wang, C., Zhou, J., & Ding, J. (2019). Application of the Internet of Things technology in the photovoltaic power generation system. Journal of Renewable and Sustainable Energy, 11(2), 023702.
International Energy Agency. (2020). Renewables 2020: Analysis and forecast to 2025. Paris: IEA.
Ainslie, J. (2017). Solar panel cleaning: What, why and how? Solar Power World.
Greenough, J. (2015). Solar power is more affordable than ever. Here are 10 charts that explain it. Greentech Media.
Sharif, M. A., & Tan, X. (2018, March). IPMC flow sensor exploiting self-generated vortices. In Electroactive Polymer Actuators and Devices (EAPAD) XX (Vol. 10594, pp. 269-277). SPIE.
Kumar, R., Kumar, S., Kumar, S., & Kumar, S. (2017). A comprehensive review on photovoltaic solar panel cleaning methods. Renewable and Sustainable Energy Reviews, 74, 133-147.
Sharif, M. A. A. (2022, April). Electro-thermally controllable twisted coiled actuators (TCA) using nylon line. In Electroactive Polymer Actuators and Devices (EAPAD) XXIV (Vol. 12042, pp. 376-381). SPIE.
Jafari, A., & Skeldon, A. C. (2015). Solar photovoltaic panel cleaning: A review of cleaning methods and results. Solar Energy Materials and Solar Cells, 143, 180-191.
Al-Ali, A. R. (2017). Smart PV-panel cleaning system: A review. In 2017 IEEE 7th Annual Computing and Communication Workshop and Conference (CCWC) (pp. 1-5). IEEE.
Khadka, N., Bista, A., Adhikari, B., Shrestha, A., & Bista, D. (2020, March). Smart solar photovoltaic panel cleaning system. In IOP Conference Series: Earth and Environmental Science (Vol. 463, No. 1, p. 012121). IOP Publishing.
Sharif, M. A. (2022). A Mechatronics System based on Feature Selection and AI for IoT Intrusion Detection Applications. International Journal of Integrated Engineering, 14(6), 290-302.
Wang, Y., Hu, Q., Zhao, J., & Lv, C. (2019). Design of intelligent cleaning robot for solar photovoltaic panels. In 2019 IEEE International Conference on Consumer Electronics-China (ICCE-China) (pp. 1-4). IEEE.
Al-Rizzo, H. M., & Abualigah, L. M. (2019). Automatic cleaning system for photovoltaic panels using wireless sensor network. In 2019 1st International Conference on Energy, Power, Petroleum and Petrochemical Engineering (E3PE 2019). Atlantis Press.
Khalaf, K. S., Sharif, M. A., & Wahhab, M. S. (2022). Digital Communication Based on Image Security using Grasshopper Optimization and Chaotic Map. International Journal of Engineering, 35(10), 1981-1988.
Alam, M. S., Li, S., Sarker, R. A., & Islam, M. T. (2020). Intelligent robotic system for photovoltaic panel cleaning: An IoT-based approach. Sustainable Energy Technologies and Assessments, 42, 100876.
Arumugam, N. R., Arumugam, V., & Radhakrishnan, T. (2019). Solar panel cleaning using IoT-embedded robots.
Khan, F., Rahman, M. S., & Azam, S. (2021). IoT-based robotic cleaner for efficient monitoring and cleaning of photovoltaic panels. Journal of Renewable and Sustainable Energy, 13(2), 023303.
Mahor, R., Birla, N., & Vashisth, A. (2021). Solar panel cleaning system using IoT. In Proceedings of the 5th International Conference on Intelligent Computing and Control Systems (ICICCS) (pp. 1235-1239). IEEE.
Ullah, A., Saeed, S., Ali, S., & Khan, R. (2021). An IoT-based solar panel cleaning system. In Proceedings of the 2nd International Conference on Computing, Mathematics and Engineering Technologies (iCoMET) (pp. 1-5). IEEE.
Singh, S., & Kumar, A. (2021). Autonomous robotic cleaner for solar panels using IoT. In Proceedings of the 3rd International Conference on Advances in Electrical, Electronics, Information, Communication and Bio-Informatics (AEEICB) (pp. 1-6). IEEE.
Kumar, A., Singh, S., & Tyagi, R. (2021). Solar panel cleaning system using IoT and robotics. In Proceedings of the International Conference on Emerging Trends in Engineering and Technology (ICETET) (pp. 271-275). Springer.
Chouhan, R. S., & Chouhan, A. K. (2021). Design and implementation of mobile robot for automatic cleaning of photovoltaic panels.
Akyildiz, I. F., Su, W., Sankarasubramaniam, Y., & Cayirci, E. (2002). A survey on sensor networks. IEEE Communications magazine, 40(8), 102-114.
Bandyopadhyay, S., & Sen, J. (2011). Internet of Things: Applications and challenges in technology and standardization. Wireless Personal Communications, 58(1), 49-69.
Gubbi, J., Buyya, R., Marusic, S., & Palaniswami, M. (2013). Internet of Things (IoT): A vision, architectural elements, and future directions. Future Generation Computer Systems, 29(7), 1645-1660.
Panwar, N., Sharma, S., & Singh, P. (2018). Internet of Things: Applications, challenges and future directions-a comprehensive review. In 2018 2nd International Conference on Computing Methodologies and Communication (ICCMC) (pp. 460-465). IEEE.
Yang, X., Zhou, Y., & Shi, Y. (2016). A review on Internet of Things for defense and public safety. Journal of Network and Computer Applications, 66, 1-14.
Green, M. A., Emery, K., Hishikawa, Y., Warta, W., & Dunlop, E. D. (2018). Solar cell efficiency tables (version 51). Progress in Photovoltaics: Research and Applications, 26(7), 427-436.
Gopal, C., Moholkar, V. S., & Kumar, M. (2018). Dust accumulation on photovoltaic panels: A review. Renewable and Sustainable Energy Reviews, 91, 877-891.
Kumar, S., & Maity, S. (2019). Performance degradation of solar photovoltaic modules due to dust accumulation: A review. Solar Energy, 188, 605-627.
Panda, R., Sharma, D., & Jena, D. (2019). A review on performance analysis and cleaning methods of photovoltaic solar panels. Renewable and Sustainable Energy Reviews, 107, 42-56.
Chen, H. C., & Tsai, C. M. (2019). Automatic cleaning system for photovoltaic panels: A review. Solar Energy, 178, 351-365.
Gopal, C., & Moholkar, V. S. (2018). Design and development of an automated robotic cleaner for cleaning solar photovoltaic panels. International Journal of Renewable Energy Research (IJRER), 8(4), 1884-1894.
Pham, V. P., Kim, J. H., Kim, H. T., & Kang, H. S. (2016). A review on robotic cleaner of photovoltaic panel. International Journal of Precision Engineering and Manufacturing-Green Technology, 3(2), 191-202.
Brundavanam, S., Mishra, A., & Mishra, S. K. (2018). Robotic cleaning and monitoring of solar PV panel with wireless sensor network. In 2018 IEEE International Conference on Power Electronics, Drives and Energy Systems (PEDES) (pp. 1-6). IEEE