solve 2.4
Posted: Tue Jun 07, 2022 1:02 pm
solve 2.4
Q2) Each PV cell shown below has an open circuit voltage Voc=712 mV and a short circuit current density Jsc = 42 mA/cm² under AM1.5G illumination. The ideality factor for each cell is id = 1.3. The dimensions of each cell are 2.5 cmx3.5 cm. 2.1. For (Rs = 0, Rp=co), Calculate the maximum output power Pmax of the PV cell. II 2.2. For (Rs=0, Rp=co), Calculate the open-circuit voltage Voc of the PV module 2.3. For (Rs = 0, Rp), Calculate the short-circuit current Isc of the PV module 2.4. For (Rs # 0, Rp= ∞), Calculate the maximum series resistance Rs of the PV cell that is allowed in order to keep the output power at 90 % of the value from 2.1). Assume no changes on Voc and Jsc by the change of Rs. Hint: Use Pmax= 25 mW/cm² if you did not solve part 2.1). Load
Q2) Each PV cell shown below has an open circuit voltage Voc=712 mV and a short circuit current density Jsc = 42 mA/cm² under AM1.5G illumination. The ideality factor for each cell is id = 1.3. The dimensions of each cell are 2.5 cmx3.5 cm. 2.1. For (Rs = 0, Rp=co), Calculate the maximum output power Pmax of the PV cell. II 2.2. For (Rs=0, Rp=co), Calculate the open-circuit voltage Voc of the PV module 2.3. For (Rs = 0, Rp), Calculate the short-circuit current Isc of the PV module 2.4. For (Rs # 0, Rp= ∞), Calculate the maximum series resistance Rs of the PV cell that is allowed in order to keep the output power at 90 % of the value from 2.1). Assume no changes on Voc and Jsc by the change of Rs. Hint: Use Pmax= 25 mW/cm² if you did not solve part 2.1). Load