Michael Evzelman
Title
Cited by
Cited by
Year
Average-current-based conduction losses model of switched capacitor converters
M Evzelman, S Ben-Yaakov
IEEE Transactions on Power Electronics 28 (7), 3341-3352, 2012
1312012
Generic and unified model of switched capacitor converters
S Ben-Yaakov, M Evzelman
2009 IEEE Energy Conversion Congress and Exposition, 3501-3508, 2009
1002009
A high-efficiency resonant switched capacitor converter with continuous conversion ratio
A Cervera, M Evzelman, MM Peretz, SS Ben-Yaakov
IEEE Transactions on Power Electronics 30 (3), 1373-1382, 2014
872014
A high efficiency resonant switched capacitor converter with continuous conversion ratio
A Cervera, M Evzelman, MM Peretz, SS Ben-Yaakov
Energy Conversion Congress and Exposition (ECCE), 2013 IEEE, 4969-4976, 2013
872013
Active balancing system for electric vehicles with incorporated low-voltage bus
M Evzelman, MMU Rehman, K Hathaway, R Zane, D Costinett, ...
IEEE Transactions on Power Electronics 31 (11), 7887-7895, 2015
842015
Modular approach for continuous cell-level balancing to improve performance of large battery packs
M Rehman, M Evzelman, K Hathaway, R Zane, GL Plett, K Smith, E Wood, ...
Energy Conversion Congress and Exposition (ECCE), 2014 IEEE, 4327-4334, 2014
662014
Design and evaluation of a modular resonant switched capacitors equalizer for PV panels
S Ben-Yaakov, A Blumenfeld, A Cervera, M Evzelman
2012 IEEE Energy Conversion Congress and Exposition (ECCE), 4129-4136, 2012
492012
Active balancing system for electric vehicles with incorporated low voltage bus
D Costinett, K Hathaway, MU Rehman, M Evzelman, R Zane, Y Levron, ...
2014 IEEE Applied Power Electronics Conference and Exposition-APEC 2014 …, 2014
402014
Battery control
RA Zane, M Evzelman, D Costinett, D Maksimovic, RD Anderson, ...
US Patent App. 10/063,066, 2018
34*2018
Control of a series-input, parallel-output cell balancing system for electric vehicle battery packs
MMU Rehman, F Zhang, M Evzelman, R Zane, D Maksimovic
2015 IEEE 16th Workshop on Control and Modeling for Power Electronics …, 2015
322015
Model predictive control and optimization for battery charging and discharging
MS Trimboli, GL Plett, RA Zane, K SMITH, D Maksimovic, M Evzelman, ...
US Patent App. 10/298,026, 2019
27*2019
Modeling and analysis of resonant switched capacitor converters with free-wheeling ZCS
E Hamo, M Evzelman, MM Peretz
Applied Power Electronics Conference and Exposition (APEC), 2014 Twenty …, 2014
252014
Simulation of hybrid converters by average models
M Evzelman, S Ben-Yaakov
IEEE Transactions on Industry Applications 50 (2), 1106-1113, 2013
242013
Generic average modeling and simulation of the static and dynamic behavior of switched capacitor converters
S Ben-Yaakov, M Evzelman
2012 Twenty-Seventh Annual IEEE Applied Power Electronics Conference and …, 2012
232012
Advanced cell-level control for extending electric vehicle battery pack lifetime
MMU Rehman, F Zhang, M Evzelman, R Zane, K Smith, D Maksimovic
2016 IEEE Energy Conversion Congress and Exposition (ECCE), 1-8, 2016
202016
The effect of switching transitions on switched capacitor converters losses
M Evzelman, S Ben-Yaakov
2012 IEEE 27th Convention of Electrical and Electronics Engineers in Israel, 1-5, 2012
162012
Optimal switch resistances in switched capacitor converters
M Evzelman, S Ben-Yaakov
2010 IEEE 26-th Convention of Electrical and Electronics Engineers in Israel …, 2010
162010
Investigation of an alternative APFC control with no sensing of line voltage based on a triangular modulation carrier
A Abramovitz, M Evzelman, S Ben-Yaakov
2008 Twenty-Third Annual IEEE Applied Power Electronics Conference and …, 2008
152008
Average modeling technique for switched capacitor converters including large signal dynamics and small signal responses
M Evzelman, S Ben-Yaakov
2011 IEEE International Conference on Microwaves, Communications, Antennas …, 2011
112011
Modelling, simulation and experimental investigation of a new two input, series-parallel switched capacitor converter
C Abraham, BR Jose, J Mathew, M Evzelman
IET Power Electronics 10 (3), 368-376, 2017
102017
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