Building 5, 3nd. floor, room 331
sources for induction heating; modern
electronic DC-DC converters; energy
conversion of the renewable systems, control systems of the electric drives.
Energy Conversion A (50012)
Energy Conversion B (50073)
Electric drives (50025)
Models and Design of Electronic Circuits (50070)
Power Systems for Renewable Energy (50186)
Control Systems of Electric Drives (55203)
Special Electrical Machines (55215)
1. V. Chudnovsky, B. Axelrod, A. Shenkman
Medium frequency combined inverter for electroheat with improved starting arrangements
IEE Proc. – Electric Power Applications, 143(2), 1996 (165-171)
2. V. Chudnovsky, B. Axelrod, A. Shenkman
An approximate analysis of a starting process of a current source parallel inverter with a
high-Q induction heating load IEEE Trans. on Power Electronics, 12(2), 1997 (294-301)
3. A. Shenkman, B. Axelrod, V. Chudnovsky
A new simplified model of the dynamics of the current-fed parallel resonant inverter
IEEE Trans. on Industrial Electronics, 47(2), 2000 (282-286)
4. A. Shenkman, B. Axelrod, Y. Berkovich
Single-switch AC-AC converter with high power factor and
soft commutation for induction heating applications
IEE Proc.- Electric Power Applications, 148(6), 2001 (469-474)
5. A. Shenkman, B. Axelrod, V. Chudnovsky
Assuring continuous input current using a smoothing reactor in a thyristor
frequency converter for induction metal melting and heating applications
IEEE Trans. on Industrial Electronics, 48(6), 2001 (1290-1292)
6. A. Shenkman, Y. Berkovich, B. Axelrod
Applications of a mathematical similarity to converter control systems
IEE Proc.- Electric Power Applications, 149(6), 2002 (414-422)
7. A. Shenkman, B. Axelrod, Y. Berkovich
Improved modification of the single-switch AC-AC converter
for induction heating applications
IEE Proc.- Electric Power Applications, 151(1), 2004 (1-4)
8. A. Shenkman, Y. Berkovich, B. Axelrod
Dynamic analysis of a new single-switch AC-AC converter for induction heating applications
IEE Proc. – Electric Power Applications, 151(4), 2004 (398-402)
9. B. Axelrod, Y. Berkovich, A. Ioinovici
Transformerless DC-DC converters with a very high DC line-to-load voltage ratio
J. Circuits, Systems and Computers, 13(3), 2004 (467-475)
10. A. Shenkman, Y. Berkovich, B. Axelrod,
Novel AC-DC and DC-DC converters with a diode-capacitor multiplier
IEEE Trans. on Aerospace & Electronic Systems, 40(4), 2004 (1286-1293)
11. B. Axelrod, Y. Berkovich, A. Ioinovici
A cascade boost-switched-capacitor-converter two level inverter
with an optimized multilevel output waveform
IEEE Trans. on Circuits and Systems I, 52(12), 2005 (2763-2770)
12. B. Axelrod, Y. Berkovich, A. Ioinovici
A new dynamic discrete model of DC-DC PWM converters
HAIT J. of Science and Engineering B, 2(3-4), 2005 (426-451)
13. A. Shenkman, Y. Berkovich, B. Axelrod
Pulse converter for induction-heating applications
IEE Proc. - Electric Power Applications, 153(6), 2006 (864-872)
14. B. Axelrod, Y. Berkovich, A. Ioinovici
"Switched capacitor/switched inductor structures for getting transformerless
hybrid DC-DC PWM converters"
IEEE Trans. on Circuits and Systems I, 55(2), 2008 (687-696)
15. Y. Berkovich, A. Shenkman, B. Axelrod, G. Golan
"Structures of transformerless step-up and step-down controlled rectifiers"
IET Power Electronics, 1(2), 2008 (245-254)
16. B. Axelrod, Y. Berkovich, S. Tapuchi, A. Ioinovici
"Single-stage single-switch switched-capacitor buck/buck-boost-type converter"
IEEE Trans. on Aerospace and Electronic Systems, 45(2), 2009 (419-430)
17. Y. Berkovich, B. Axelrod
"Switched-coupled inductor cell for DC-DC converters with very large conversion ratio"
IET Power Electronics, 4(3), 2011 (309-315)
18. B. Axelrod, Y. Berkovich, A. Shenkman, G. Golan
"Diode-capacitor voltage multipliers combined with boost-converters:
Topologies and characteristics"
IET Power Electronics, 5(6), 2012 (873-884)
19. Y. Berkovich, B. Axelrod, R. Madar, A. Twina
"Improved Luo converter modifications with increasing voltage ratio"
IET Power Electronics, 8(2), 2015 (202-212)
20. B. Axelrod, Y. Beck, Y. Berkovich
"High step-up DC-DC converter based on the switched-coupled-inductor boost converter and diode-capacitor multiplier: Steady state and dynamics"
IET Power Electronics, 8(8), 2015 (1420-1428)
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