leesujin Posted 13 hours ago Posted 13 hours ago (edited) Hello In the case of using two-sided modules these days, there is an issue about calculating the efficiency of the back and adding it to the module capacity. As far as I know, the efficiency of the double-sided module is applied only to the 2d model, but is there any way to simulate the power generation time by applying the double-sided efficiency in the 3d model? Edited 13 hours ago by leesujin
Michele Oliosi Posted 7 hours ago Posted 7 hours ago Currently, the rear-side model of irradiance is two-dimensional (cross-section). However, it is compatible with a 3D drawing. If you have a 3D drawing with a regular arrangement of tables, you can activate the 2D bifacial model to compute the rear side irradiance.
leesujin Posted 7 hours ago Author Posted 7 hours ago Is it impossible to apply the rear system for modeling that is not arranged regularly? I want to apply double-sided efficiency when installing solar power on the ground But solar 3D modeling on the ground can't be represented in a regular arrangement
Michele Oliosi Posted 6 hours ago Posted 6 hours ago Regularity is defined vaguely by PVsyst. If the system is approximately regular, e.g., patches of trackers or tables that are more or less evenly spaced, then this can be considered “regular” in the PVsyst sense. In that case, you can use the 2D bifacial model jointly with the 3D scene. PVsyst will check the following points: The RMSD of the pitch distribution. If the RMSD is too large, PVsyst will throw an error. You can change the threshold of the error in the advanced parameters. Whether the tables are the same height. If there are differently tall tables, PVsyst will throw an error. Whether orientations have more than 2 rows. If there is only one row of tables, PVsyst will throw an error. The average axis tilt of the trackers in each tracker orientation. If the average axis tilt is too large, PVsyst will throw an error. You can change the threshold of the error in the advanced parameters.
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