Re: System Performance degradation

Originally Posted by
ggunn
I agree, mostly.
The Voc for the module is 36.8V. The ambient temp was 33 degrees, and if his modules are flush mounted they could be as much as 35 degrees C hotter. The temperature coefficient for Voc is -121mV/degree C. If his cell temp is 68 degrees C, he should expect Voc to be (68-25)(.121) = 5.2V down from 36.8V, or about 31.6V. Three of his modules showed Voc of about that, but the other six were substantially lower.
Statistically speaking, it looks like a bimodal distribution with three of them grouped around 32V and the other six around 27V; if his problem were something random, I would not expect that. Also, the group of six was all together (Panels 1-6) as was the group of three (Panels 7-9). That all looks a little odd and implies to me that there might be something else going on. What that could be, though, I dunno. Maybe he should look at the module nameplates and see if all the modules are the ones he thinks he has.
If the Voc of the panels (rated) is 36.8 and the maximum measured Isc is around 6.4A, I have a hard time getting a 230 Watt panel out of that given that Vmp and Imp will have to both be lower.
For the low 6 panels it looks even worse, but they are not getting perpendicular insolation.
Also, the one measurement which I see only once, as measured by the inverter itself is Imp. We can indirectly compute a value for the other time by dividing the exported power by the displayed Vmp and then fudging for assumed inverter efficiency. 1047w divided by 189v is about 5.5A. That seems consistent with the measured Isc for the string.
Since three panels are close to South and six panels are not as close, the differences between the sets seems as expected, but the design using one MPPT inverter for both sets in a series string is questionable.
Sunny Boy 3000US, 18 x BP Solar 175b panels, installed 2009.
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