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Solving solar
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Solving solar

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@msysgit @thehackerwithin @numfocus @BreakingBytes @pvlib @conda-forge @PVSC48-Clipping-loss-validation @PV-Tutorials

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  1. pvsc44-clearsky-aod pvsc44-clearsky-aod Public

    Use of Measured Aerosol Optical Depth and Precipitable Water to Model Clear Sky Irradiance - 2017 IEEE PVSC-44

    Jupyter Notebook 3 5

  2. pvsc45-solarfarmer pvsc45-solarfarmer Public

    Accurate Performance Predictions of Large PV Systems with Shading using Submodule Mismatch Calculation - 2018 IEEE PVSC-45

    Jupyter Notebook 1 1

  3. pvsc46_solarfarmer_bifacial pvsc46_solarfarmer_bifacial Public

    Bifacial PV modeling with SolarFarmer

    TeX

  4. pvsc48-surfrad-tmy-comparison pvsc48-surfrad-tmy-comparison Public

    PVSC48 SURFRAD vs. TMY Comparison. Available online: https://doi.org/10.1109/PVSC43889.2021.9519024

    TeX

  5. pvsc48-tracker-terrain-loss-MANUSCRIPT pvsc48-tracker-terrain-loss-MANUSCRIPT Public

    Improved modeling of PV solar power for trackers on sloping terrain. Available online: https://doi.org/10.1109/JPHOTOV.2021.3114599

    TeX

  6. pvsc49-satellite-sampling pvsc49-satellite-sampling Public

    Investigation on the effect of averaging interval and sampling rate on hourly modeling errors. Available online: https://doi.org/10.1109/JPHOTOV.2023.3238512

    Jupyter Notebook