DocumentCode :
2692387
Title :
Electrical modeling of pulsed power systems for biomedical applications
Author :
Wijetunga, P. ; Gu, X. ; Vernier, T. ; Kuthi, A. ; Behrend, M. ; Gundersen, M.A.
Author_Institution :
Dept. of Electr. Eng.-Electrophys., Univ. of Southern California, Los Angeles, CA, USA
Volume :
1
fYear :
2003
fDate :
15-18 June 2003
Firstpage :
423
Abstract :
High intensity (/spl sim/2.5 MV/m) short duration (ns & sub-ns) pulses can affect the intracellular structures without adversely affecting the outer cell membrane. An interesting effect of such pulses is apoptosis or programmed cell death. Generation of high voltage short duration pulses require fast switches and one or more pulse compression sections. Blumlein pulsed forming networks (PFN) are the most common circuit topology used for short pulse generation. The pulse shape and the rise/fall time of the pulse delivered to the load, depends on the response time of the switch and the characteristics of the Blumlein. Traditionally, the transmission line structures used in the Blumlein are modeled as ideal elements. At shorter pulse widths, the Blumlein models must account for the input and output edge effects, the distributed nature of the load, and the effects at Blumlein-load interface. A simple spice model is generated to simulate the edge effects of short Blumleins, and it is shown that the edge effects limits the achievable minimum pulse width and rise/fall times. Further improvements required in the spice model for shorter pulse lengths are also discussed.
Keywords :
bioelectric phenomena; electromagnetic fields; pulse generators; pulsed power supplies; transmission lines; Blumlein pulsed forming network; Blumlein-load interface; biomedical application; edge effect; electrical modeling; high intensity short duration pulse generation; intracellular structure; outer cell membrane; pulse compression; pulse shape; pulse width; pulsed power system; response time; rise-fall time; spice model; transmission line structure; Biomembranes; Cells (biology); Power system modeling; Pulse circuits; Pulse compression methods; Pulse generation; Pulse power systems; Pulse shaping methods; Space vector pulse width modulation; Switches;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Pulsed Power Conference, 2003. Digest of Technical Papers. PPC-2003. 14th IEEE International
Conference_Location :
Dallas, TX, USA
Print_ISBN :
0-7803-7915-2
Type :
conf
DOI :
10.1109/PPC.2003.1277742
Filename :
1277742
Link To Document :
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