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$ Simulation Assignment • Here we will make a simple simulation that is related to your project. • A solar-cell can be s

Posted: Sun Apr 10, 2022 8:50 am
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Simulation Assignment Here We Will Make A Simple Simulation That Is Related To Your Project A Solar Cell Can Be S 1
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$ Simulation Assignment • Here we will make a simple simulation that is related to your project. • A solar-cell can be simulated via a circuit of several basic elements. As follows: Light Idiode When it shines on the oil, the Icune is the cell begin to generate power Click to Continue Simulation Assignment • A solar-cell can be simulated via a circuit of several basic elements. • It is a circuit of a current source, a diode and a resistor in parallel, connected to a resistor in series. • The diode is the panel operation in the dark. (Dark current) • IL is the current that is proportional to the illumination (here you can treat it as a DC current source) series resistance Current IDa rk shunt resistance Voltage
Simulation Assignment Shunt resistacnce (RSA) is an internal resistor that shunts or "shorts” the two sides of a solar panel. • Typically around - 100 KN Series resistance (RS) is a resistor that limits the current output of the panel. Simulation Assignment • You are to recreate such a simulated solar panel in KICAD • Connect the panel to a DC voltage source. Sweep the voltage from 1 to 1 V. Plot the current through the cell vs voltage Adjust the parameters of IL, RS, and RSh to match the current vs voltage curve provided. Submit the KiCAD project, and the screenshot of the simulation in a ZIP file for credit.
Details Construct a solar cell circuit using KiCAD (please refer to the lecture note). Perform simulations based on your circuit. Please submit your KiCAD file and a lab report (in PDF) which includes the following: 1. Two screenshots of your circuit showing the values of the series and shunt resistances for two cases, one for a well-made solar cell and one for a poorly- made solar cell by varying the series and/or shunt resistances. For the constant current source, please use 30 mA to represent the photocurrent. 2. Two screenshots of the simulated I-V plots (from-1V to 1V with 0.01 V step) corresponding to two cases mentioned above. 3. Explain why they are good and bad in term of the resistance values you selected. Please submit your work in a ZIP file via Canvas.