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- W4366775144 abstract "Abstract This work deals with the resistance induced by interconnecting shingle solar cells by means of an electrically conductive adhesive (ECA), which is labeled R int throughout the work. A new approach to measure R int directly from shingle joints of actual strings is presented and evaluated. For non‐laminated strings and two different ECAs that are applied as a continuous line on shingles with an edge length of 158.75 mm, similar interconnection resistance R int ≈ 2.5 mΩ is found. In a full‐size shingle module, such an interconnection resistance would result in a cell‐to‐module loss of around Δ P MPP = −0.8%. Another aspect of the present work is to increase the awareness that in case R int is unknown, it is not trivial to assess the electrical interconnection quality (of different ECAs, different amounts of the same ECA, etc.). It is demonstrated experimentally that the string/module fill factor can be highly sensitive to current mismatch and is thus not an ideal representative of R int . The power at maximum power point P MPP tends to indicate R int differences even less clearly. By simulating virtual strings from a pool of slightly varying shingle I – V curves, it is shown that a more suitable representative of R int is a quantity that can be derived from the string's/module's dark I – V curve." @default.
- W4366775144 created "2023-04-25" @default.
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- W4366775144 date "2023-04-20" @default.
- W4366775144 modified "2023-09-25" @default.
- W4366775144 title "How to assess the electrical quality of solar cell interconnection in shingle solar modules" @default.
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- W4366775144 doi "https://doi.org/10.1002/pip.3699" @default.
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