DocumentCode
1873810
Title
High performance, high-power capacitor charging: Focus on pulse-to-pulse repeatability
Author
Pokryvailo, A. ; Carp, C. ; Scapellati, C.
Author_Institution
Spellman High Voltage Electron. Corp., Hauppauge, NY, USA
fYear
2010
fDate
21-25 Feb. 2010
Firstpage
1177
Lastpage
1182
Abstract
Pulse-to-pulse repeatability (PPR) is an important parameter in capacitor charging applications. This paper studies the subject both theoretically and experimentally using as a platform a novel low-cost, high performance 20-kJ/s, 10-kV, 1-kHz repetition-rate charger based on an energy-dosing converter topology. It is stated that PPR is affected by quality of the HV measurement and depends on the ratio of the energy stored in the HV transformer magnetic system, its parasitic capacitance, etc., to that stored in the load capacitor. The influence of the second factor is studied. It came clear that empiric formulae usually used in literature are too simplistic to account for the complex electromagnetic processes; they may yield overstated values. The theoretical findings are compared with both PSpice simulations and experimental results. Both PSpice simulations and analytical tools predicted pulse-to-pulse repeatability of ±0.15 %; the measured figures are ±0.4 % and ±0.5 % for short- and long-term operation, respectively, at peak charging and repetition rates.
Keywords
SPICE; power capacitors; power convertors; HV measurement; HV transformer magnetic system; PSpice simulations; electromagnetic processes; frequency 1 kHz; high performance capacitor charging; high-power capacitor charging; pulse-to-pulse repeatability; voltage 10 kV; Capacitors; Energy storage; Inductance; Pulse measurements; Rails; Rectifiers; Resonant inverters; Switches; Topology; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Applied Power Electronics Conference and Exposition (APEC), 2010 Twenty-Fifth Annual IEEE
Conference_Location
Palm Springs, CA
ISSN
1048-2334
Print_ISBN
978-1-4244-4782-4
Electronic_ISBN
1048-2334
Type
conf
DOI
10.1109/APEC.2010.5433352
Filename
5433352
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