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An exploratory framework to identify dust on photovoltaic panels in offshore floating solar power stations

Author

Listed:
  • Cui, Yiming
  • Liu, Mengmeng
  • Li, Wei
  • Lian, Jijian
  • Yao, Ye
  • Gao, Xifeng
  • Yu, Lina
  • Wang, Ting
  • Li, Yichu
  • Yin, Jilong

Abstract

Offshore floating solar power stations represent a new frontier in energy development. These stations maximize solar energy use, reduce land consumption and promote algae growth. However, moist marine air makes airborne particles like sand adhere more easily to PV panels, reducing photoelectric conversion efficiency and causing overheating and potential damage. Additionally, drones and fixed cameras face challenges due to complex maritime factors and complicating image analysis. To address these issues, this paper proposes an exploratory framework for identifying dust regions on photovoltaic panels specifically for offshore floating solar power stations. The framework aims to address how to accurately and reliably identify dust accumulation on PV panels, even in images with complex background interference. The framework is designed to be compatible with existing image recognition models and incorporates specialized enhancement modules to further improve recognition accuracy and efficiency. In this study, we utilized a dust feature enhancement module based on the HLS color space, combined with Mask R-CNN, to demonstrate the framework's feasibility and effectiveness. Experimental results show that, compared to a single Mask R-CNN, the framework significantly reduces misidentification and omission of dust areas, boosting the confidence level and effectively meeting the operational needs of offshore floating solar power stations.

Suggested Citation

  • Cui, Yiming & Liu, Mengmeng & Li, Wei & Lian, Jijian & Yao, Ye & Gao, Xifeng & Yu, Lina & Wang, Ting & Li, Yichu & Yin, Jilong, 2024. "An exploratory framework to identify dust on photovoltaic panels in offshore floating solar power stations," Energy, Elsevier, vol. 307(C).
  • Handle: RePEc:eee:energy:v:307:y:2024:i:c:s0360544224023338
    DOI: 10.1016/j.energy.2024.132559
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    References listed on IDEAS

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    1. Jun Wang & Peter D. Lund, 2022. "Review of Recent Offshore Photovoltaics Development," Energies, MDPI, vol. 15(20), pages 1-14, October.
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    1. He, Ziqi & Xu, Wanhai & Sun, Yumeng & Zhang, Xinrui, 2025. "A GIS-based techno-economic comparative assessment of offshore fixed and floating photovoltaic systems: A case study of Hainan," Applied Energy, Elsevier, vol. 391(C).
    2. Gao, Xifeng & Li, Yichu & Liu, Mengmeng & Lian, Jijian & Ma, Qian & Zhang, Ju & Wu, Sheng & Cui, Yiming, 2025. "An exploratory framework for analyzing the impact of salt deposition on offshore photovoltaic system," Renewable Energy, Elsevier, vol. 242(C).
    3. Wei, Yujia & Khojasteh, Danial & Windt, Christian & Huang, Luofeng, 2025. "An interdisciplinary literature review of floating solar power plants," Renewable and Sustainable Energy Reviews, Elsevier, vol. 209(C).
    4. Alin Diniță & Cosmina-Mihaela Rosca & Adrian Stancu & Catalin Popescu, 2025. "Distributed IoT-Based Predictive Maintenance Framework for Solar Panels Using Cloud Machine Learning in Industry 4.0," Sustainability, MDPI, vol. 17(21), pages 1-24, October.

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