ECE 465 / GECE 565 Power Electronics Project 1 [Task 2 Install the Matlab Software,...
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ECE 465 / GECE 565 Power Electronics Project 1 [Task 2 Install the Matlab Software, make sure to include the (SimscapeTM ElectricalTM) toolbox. [Task 2 Simulate A balanced delta-connected, three-phase load that withdraws 200 A per phase with a leading power factor of 0.85 from a wye connected source. There is a line Impedance of 5+j7 1 between the source and the load. The voltage at the receiving end (load end) is 12.47 kv. Follow the positive sequence Use only single-phase components from the Simscape>Power Systems Specialized Technology libraries. Add the (Power GUI) block and set the time step to 50 us. Run the model for 2 sec. Plot the source's phase voltages and the line voltages versus time in Simulink scopes. Combine the line and the phase voltage in a single plot for each phase. VA and VAB on one axis, VB and VBC on another axis, VC and VCA on a third axis. Plot the load's phase voltage VA and the line voltage VAB versus time in Simulink scopes. Combine the line and the phase voltage in a single plot for each phase. VA and VAB in one plot, VB and VBC in another plot, VC and VCA in another plot. Plot the phase currents and the line currents versus time in Simulink scopes. For the Load. Combine the line and the phase current in a single plot for each phase. Plot the average power; P, Q and S versus time. Use the Display" and the r.m.s" block to show the r.m.s line current and line voltage for phase A of the source. Label all the blocks and plots in the scope. Upload your model to Evaltools. Submit screenshots of your model and all the scope in a pdf format. Work Individually. Make sure your model is clean and easy to follow. ECE 465 / GECE 565 Power Electronics Project 1 [Task 2 Install the Matlab Software, make sure to include the (SimscapeTM ElectricalTM) toolbox. [Task 2 Simulate A balanced delta-connected, three-phase load that withdraws 200 A per phase with a leading power factor of 0.85 from a wye connected source. There is a line Impedance of 5+j7 1 between the source and the load. The voltage at the receiving end (load end) is 12.47 kv. Follow the positive sequence Use only single-phase components from the Simscape>Power Systems Specialized Technology libraries. Add the (Power GUI) block and set the time step to 50 us. Run the model for 2 sec. Plot the source's phase voltages and the line voltages versus time in Simulink scopes. Combine the line and the phase voltage in a single plot for each phase. VA and VAB on one axis, VB and VBC on another axis, VC and VCA on a third axis. Plot the load's phase voltage VA and the line voltage VAB versus time in Simulink scopes. Combine the line and the phase voltage in a single plot for each phase. VA and VAB in one plot, VB and VBC in another plot, VC and VCA in another plot. Plot the phase currents and the line currents versus time in Simulink scopes. For the Load. Combine the line and the phase current in a single plot for each phase. Plot the average power; P, Q and S versus time. Use the Display" and the r.m.s" block to show the r.m.s line current and line voltage for phase A of the source. Label all the blocks and plots in the scope. Upload your model to Evaltools. Submit screenshots of your model and all the scope in a pdf format. Work Individually. Make sure your model is clean and easy to follow

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