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Analysis of a Ultra Narrow Pulse Width High Voltage Generator
Farajzadeh Galeh, Amin | 2019
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- Type of Document: M.Sc. Thesis
- Language: Farsi
- Document No: 52279 (05)
- University: Sharif University of Technology
- Department: Electrical Engineering
- Advisor(s): Kaboli, Shahriar
- Abstract:
- A Tesla charged PFL Bipolar pulsed power generator has been successfully designed and simulated. The compact Tesla transformer that it employs has successfully charged capacitive loads to peak voltages up to 0.6 MV . The Tesla–driven PFL generator is capable of producing a voltage impulse approaching .3 MV with generating a peak electrical power of up to 1.8 GW for 5 ns when connected to a matched resistive load. Potentially for medical application, a bipolar former has been designed and successfully simulated as an extension to the system and to enable the generation of a sinusoid-like voltage impulse with a peak-to-peak value reaching 600 kV and having a frequency bandwidth beyond 1 GHz. This thesis describes the application of various techniques used to design a successful generator, such as magnetostatic and electrostatic and transient (Pspice) circuit analysis, and Computer Simulation Technology (CST) simulation. All the major parameters of both the Tesla transformer and the bipolar former were determined enabling accurate modelling of the overall unit to be performed. Simulation results obtained are compared with theoretical predictions and both were consisted together
- Keywords:
- Tesla Transformer ; High Voltage Pulse Generator ; Pulse Generator ; Bipolar Pulse Former ; Pulse Forming Network ; Ultra Narrow Pulse Generator Width
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