Follow
Aaron D. Brovont
Title
Cited by
Cited by
Year
Methodology for characterization of common-mode conducted electromagnetic emissions in wide-bandgap converters for ungrounded shipboard applications
AN Lemmon, R Cuzner, J Gafford, R Hosseini, AD Brovont, MS Mazzola
IEEE Journal of Emerging and Selected Topics in Power Electronics 6 (1), 300-314, 2017
672017
Derivation and application of equivalent circuits to model common-mode current in microgrids
AD Brovont, SD Pekarek
IEEE Journal of Emerging and Selected Topics in Power Electronics 5 (1), 297-308, 2016
592016
Modeling and validation of common-mode emissions in wide bandgap-based converter structures
AN Lemmon, AD Brovont, CD New, BW Nelson, BT DeBoi
IEEE Transactions on Power Electronics 35 (8), 8034-8049, 2020
472020
Analysis and cancellation of leakage current through power module baseplate capacitance
AD Brovont, AN Lemmon, C New, BW Nelson, BT DeBoi
IEEE Transactions on Power Electronics 35 (5), 4678-4688, 2019
402019
Self-powered mobile sensor for in-pipe potable water quality monitoring
R Wu, WW Salim, S Malhotra, A Brovont, J Park, S Pekarek, MK Banks, ...
proceedings of the 17th international conference on miniaturized systems for …, 2013
282013
Generalized differential-common-mode decomposition for modeling conducted emissions in asymmetric power electronic systems
AD Brovont
IEEE Transactions on Power Electronics 33 (8), 6461-6466, 2018
262018
Common-mode/differential-mode interactions in asymmetric converter structures
AD Brovont, AN Lemmon
2017 IEEE Electric Ship Technologies Symposium (ESTS), 84-90, 2017
222017
Equivalent circuits for common-mode analysis of naval power systems
AD Brovont, SD Pekarek
2015 IEEE Electric Ship Technologies Symposium (ESTS), 245-250, 2015
212015
Analytical evaluation of 2-D flux integral for magnetostatic Galerkin method of moments
R Howard, A Brovont, S Pekarek
IEEE Transactions on Magnetics 52 (4), 1-8, 2015
172015
Design and characterization of a neutral-point-clamped inverter using medium-voltage silicon carbide power modules
CD New, AN Lemmon, BT DeBoi, BW Nelson, J Zhao, AD Brovont
2020 IEEE Applied Power Electronics Conference and Exposition (APEC), 2912-2919, 2020
142020
DM and CM modeling of non-isolated buck converters for EMI filter design
AD Brovont, RM Cuzner
2018 IEEE Transportation Electrification Conference and Expo (ITEC), 140-145, 2018
142018
Impact of switching frequency and edge rates on common-mode current in MVDC microgrids
AD Brovont, SD Pekarek
2017 IEEE Electric Ship Technologies Symposium (ESTS), 16-24, 2017
122017
EMI evaluation of a SiC MOSFET module with organic DBC substrate
N Rajagopal, C DiMarino, B DeBoi, A Lemmon, A Brovont
2021 IEEE Applied Power Electronics Conference and Exposition (APEC), 2338-2344, 2021
112021
Magnetic design for three-phase dynamic wireless power transfer with constant output power
AD Brovont, D Aliprantis, SD Pekarek, CJ Vickers, V Mehar
IEEE Transactions on Energy Conversion, 2023
92023
Utilization of power module baseplate capacitance for common-mode EMI filter reduction
AD Brovont, AN Lemmon
2019 IEEE Electric Ship Technologies Symposium (ESTS), 403-408, 2019
92019
Exploring the boundary element method for optimization-based machine design
AD Brovont
2017 IEEE International Electric Machines and Drives Conference (IEMDC), 1-7, 2017
92017
Cancellation of leakage currents through power module baseplate capacitance
AD Brovont, AN Lemmon, C New, BW Nelson, BT DeBoi
2019 IEEE Applied Power Electronics Conference and Exposition (APEC), 527-533, 2019
82019
A Galleria Boundary Element Method for two-dimensional nonlinear magnetostatics
AD Brovont
Purdue University, 2016
72016
Development of mobile self-powered sensors for potable water distribution
MK Banks, A Brovont, S Pekarek, M Porterfield, A Salim, R Wu
EPA Grant Number: R834868, 2012
72012
Comprehensive analysis of filter inductor topology on common-mode conducted emissions for the boost converter
JC Helton, AN Lemmon, AD Brovont
IEEE Transactions on Power Electronics 38 (4), 4647-4657, 2022
62022
The system can't perform the operation now. Try again later.
Articles 1–20