The key element of the strategy is the use of fuzzy logic.
Canadian solar panel micro cracks.
These cracks result in overall increase inproduction costs also.
During manufacture during transport installation and when the solar panel is subject to it s installed environment.
These are called micro cracks.
Micro cracks can be caused by poor handling of the solar cells during assembly usually through non automated systems or transport installation damage from vibration or shock if improperly handled or dropped.
But with time and significant weather changes the cracks can grow.
Micro cracks are a common issue with solar panels and can compromise the effectiveness of your system.
Micro cracks that occur in the field after installation are usually caused by external forces like snow and wind.
Micro cracks can also occur during manual solar cell soldering when varying thermal expansions of the copper and the silicon elements develop at temperatures above 300 c.
Micro cracks in the solar cells can affect total poweroutput of solar module as cells with cracks get disconnected from other cells.
Those temperature differentials can lead to the formation of micro cracks in the substrate and thus result in higher cell resistance.
When such forces act on each module the solar cells bend according to the construction of glass frame and mounting structures.
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These are tiny cracks on the panel and are hard to notice with your naked eyes.
The long term effect of micro cracks on panel life expectancy and performance are still being researched.
The reported losses due to crack defects range from 5 to 10 per.
Occurrence within either stage is quite simply due to stress.
Those temperature differentials can lead to the formation of micro cracks in the substrate and thus result in higher cell resistance.
The cracks mostly occur due to pv module production and thermal and seasonal conditions.
The reported losses due to crack defects range from 5 10 per cent during manufacturing.
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