A single-phase half-wave controlled rectifier is to be designed to transfer power from an AC source...
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A single-phase half-wave controlled rectifier is to be designed to transfer power from an AC source to a DC source. The power values to be transferred to the DC source are provided in Table 1 together with the AC and DC source voltage values. Design the rectifier circuit according to the provided information for each group in Table 1 and provide the mathematical calculations related to the circuit. 2) Simulation Part i. Simulate and verify the rectifier circuit designed in "Part 1" using PSPice software. Compare the results obtained in "Part 1" with the simulation results obtained in PSPice. Table 1: Single-Phase Half-Wave Controlled Rectifier Parameters Group Number Pdc (W) Vdc (V) Vrms (V) f (Hz) 1 110 52 2 120 55 3 100 48 90 53 5 140 65 120 60 6 130 60 7 80 45 8 100 55 9 110 45 Report Instruction Sheet Prepare a formal, final report for the project. The report should incorporate all the work done by the students. All figures should have figure numbers and captions. The report should be organized as follows: 1. Introduction: Describe the designed rectifier type, the theoretical calculations and the work to be conducted in PSPice. 2. Procedures: Describe what you did for design and simulation of the project, both for the theoretical part and the PSPice simulation. 3. Results: Provide both the theoretical calculations and the simulation results from the PSPice program. 4. Calculations and Verification: Show the comparison of your manually-calculated theoretical results and the simulation results obtained from PSPice. 5. Conclusions Include the conclusion of your project and describe your confidence in your simulation of the rectifier circuits. 4 A single-phase half-wave controlled rectifier is to be designed to transfer power from an AC source to a DC source. The power values to be transferred to the DC source are provided in Table 1 together with the AC and DC source voltage values. Design the rectifier circuit according to the provided information for each group in Table 1 and provide the mathematical calculations related to the circuit. 2) Simulation Part i. Simulate and verify the rectifier circuit designed in "Part 1" using PSPice software. Compare the results obtained in "Part 1" with the simulation results obtained in PSPice. Table 1: Single-Phase Half-Wave Controlled Rectifier Parameters Group Number Pdc (W) Vdc (V) Vrms (V) f (Hz) 1 110 52 2 120 55 3 100 48 90 53 5 140 65 120 60 6 130 60 7 80 45 8 100 55 9 110 45 Report Instruction Sheet Prepare a formal, final report for the project. The report should incorporate all the work done by the students. All figures should have figure numbers and captions. The report should be organized as follows: 1. Introduction: Describe the designed rectifier type, the theoretical calculations and the work to be conducted in PSPice. 2. Procedures: Describe what you did for design and simulation of the project, both for the theoretical part and the PSPice simulation. 3. Results: Provide both the theoretical calculations and the simulation results from the PSPice program. 4. Calculations and Verification: Show the comparison of your manually-calculated theoretical results and the simulation results obtained from PSPice. 5. Conclusions Include the conclusion of your project and describe your confidence in your simulation of the rectifier circuits. 4
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Related Book For
Principles of heat transfer
ISBN: 978-0495667704
7th Edition
Authors: Frank Kreith, Raj M. Manglik, Mark S. Bohn
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