IEEE Power Electronics Magazine Compendium - March 2018 - 104

References

[18] H. Akagi and K. Isozaki, "A hybrid active filter for a three-phase 12-pulse

[1] B. Wu, High-Power Converters and AC Drives. Hoboken, NJ: Wiley-IEEE

diode rectifier used as the front end of a medium-voltage motor drive," IEEE

Press, 2006.

Trans. Power Electron., vol. 27, no. 1, pp. 69-77, 2012.

[2] Alex Chausovsky. (2012, Mar.). Industrial motors & drives global market

[19] J. Guzinski and H. Abu-Rub, "Sensorless induction motor drive with volt-

update. [Online]. Available: http://www.e-driveonline.com/Conf-12/images/

age inverter and sine-wave filter," in Proc. IEEE 4th Int. Symp. Sensorless

Presentations/IMS%20Research.pdf

Control Elect. Drives and 2nd Symp. Predictive Control Elect. Drives and

[3] (2013, Dec. 10). Fracking energises MV drives sales in the Americas.

Power Electron. (SLED/PRECEDE 2013), Munich, Germany, pp. 1-8.

[Online]. Available: http://www.drivesncontrols.com/news/fullstory.php/

[20] B. Ge, A. T. Fang Zheng Peng, H. de Almeida, and H. Abu-Rub, "An effec-

aid/4227/Fracking_energises_MV_drives_sales_in_the_Americas.html

tive control technique for medium-voltage high-power induction motor fed by

[4] H. Abu-Rub, M. Malinowski, and K. Al-Haddad, Power Electronics for
Renewable Energy Systems, Transportation and Industrial Applications.

cascaded neutral-point-clamped inverter," IEEE Trans. Ind. Electron., vol.
57, no. 8, pp. 2659-2668, 2010.
[21] L. G. Franquelo, J. L. Rodriguez, S. Kouro, R. Portillo, and d. MA. Prats,

Hoboken, NJ: Wiley-IEEE, 2014.
[5] H. Abu-Rub, J. Holtz, J. Rodriguez, and G. Baoming, "Medium-voltage multilevel converters: State of the art, challenges, and requirements in industrial
applications," IEEE Trans. Ind. Electron., vol. 57, no. 8, pp. 2581-2596, 2010.
[6] H. Abu-Rub, A. Lewicki, A. Iqbal, and J. Guzinski, "Medium voltage drives:
Challenges and requirements," in Proc. IEEE Int. Symp. Ind. Electron.
(ISIE), Bari, Italy, 2010, pp. 1372-1377.
[7] S. Kouro, M. Malinowski, K. Gopakumar, J. Pou, L. G. Franquelo, B. Wu, J.
Rodríguez, M. Pérez, and J. I. León, "Recent advances and industrial applications of multilevel converters," IEEE Trans. Ind. Electron., vol. 57, no. 8, pp.
2553-2580, Aug. 2010.
[8] S. Kouro, J. Rodriguez, B. Wu, S. Bernet, and M. Perez, "Powering the
future of industry: High-power adjustable speed drive topologies," IEEE
Industry Applicat. Mag., vol. 18, no. 4, pp. 26-39, 2012.
[9] P. P. Rajeevan, K. Sivakumar, K. Gopakumar, C. Patel, and H. Abu-Rub,
"A nine-level inverter topology for medium-voltage induction motor drive
with open-end stator winding," IEEE Trans. Ind. Electron., vol. 60, no. 9, pp.
3627-3636, 2013.
[10] TMEIC Corp. (2011). Medium voltage drive evolution. [Online].
Available: http://www.tmeic.com/Repository/Brochures/MV%20Drive%20
Evolution%20Brochure%202011%20hi-res.pdf

"The age of multilevel converters arrives," IEEE Ind. Electron. Mag., vol. 2,
no. 2, pp. 28-39, 2008.
[22] F. J. T. E. Ferreira, J. P. Trovão, and A. T. de Almeida, "Motor bearings
and insulation system condition diagnosis by means of common-mode currents and shaft-ground voltage correlation," in Proc. 2008 Int. Conf. Elect.
Machines, Vilamoura, Portugal, pp. 1-6.
[23] R. M. Tallam, D. Leggate, D. W. Kirschnik and R. A. Lukaszewski., "PWM
scheme to reduce the common-mode current generated by an AC drive at low
modulation index," in Proc. IEEE Energy Conversion Congress and Exposition (ECCE), Phoenix, AZ, Sept. 2011, pp. 3299-3305.
[24] H. Akagi and R. Kondo, "A transformerless hybrid active filter using a
three-level pulse width modulation (PWM) converter for a medium-voltage
motor drive," IEEE Trans. Power Electron., vol. 25, no. 6, pp. 1365-1374, 2010.
[25] H. Akagi and T. Hatada, "Voltage balancing control for a three-level
diode-clamped converter in a medium-voltage transformerless hybrid active
filter," IEEE Trans. Power Electron., vol. 24, no. 3, pp. 571-579, 2009.
[26] H. Abu-Rub, A. Iqbal, and J. Guzinski, "High Performance Control of AC
Drives with MATLAB/Simulink Models." Hoboken, NJ: Wiley, 2012.
[27] J. Guzinski and H. Abu-Rub, "Nonlinear control of an asynchronous
motor with inverter output LC filter," in Proc. 2nd Mediterranean Conf.
Intelligent Syst. and Automation (CISA'09), Zarzis, Tunis. 2009, pp. 322-328.

[11] F. Filsecker, R. Alvarez, and S. Bernet, "Comparison of 4.5-kV press-pack
IGBTs and IGCTs for medium-voltage converters," IEEE Trans. Ind. Electron., vol. 60, no. 2, pp. 440-449, 2013.

[28] K. Hatua, A. K. Jain, D. Banerjee, and V. T. Ranganathan, "Active damping
of output LC filter resonance for vector-controlled VSI-fed ac motor drives,"
IEEE Trans. Ind. Electron., vol. 59, no. 1, pp. 334-342, 2012.

[12] P. N. Tekwani, R. S. Kanchan, and K. Gopakumar, "A dual five-level inverter-

[29] L. Liu, H. Li, S. H. Hwang, and J. M. Kim, "An energy-efficient motor drive

fed induction motor drive with common-mode voltage elimination and dc-link

with autonomous power regenerative control system based on cascaded

capacitor voltage balancing using only the switching-state redundancy-Part I,"

multilevel inverters and segmented energy storage," IEEE Trans. Industry

IEEE Trans. Ind. Electron., vol. 54, no. 5, pp. 2600-2608, 2007.

Applicat., vol. 49, no. 1, pp. 178-188, 2013.

[13] J. Rodriguez, S. Bernet, P. K. Steimer, and I. E. Lizama, "A survey on

[30] J. Song-Manguelle, J. M. Nyobe-Yome, and G. Ekemb, "Pulsating torques

neutral-point-clamped inverters," IEEE Trans. Ind. Electron., vol. 57, no. 7,

in PWM multi-megawatt drives for torsional analysis of large shafts," IEEE

pp. 2219-2230, 2010.

Trans. Industry Applicat., vol. 46, no. 1, pp. 130-138, 2010.

[14] S. S. Fazel, S. Bernet, D. Krug, and K. Jalili, "Design and comparison of

[31] M. A. Corbo and S. B. Malanoski, "Practical design against torsional

4-kV neutral-point-clamped, flying-capacitor, and series-connected H-bridge

vibration," in Proc. 25th Turbomachinery Symp., College Station, TX, 1996,

multilevel converters," IEEE Trans. Industry Applicat., vol. 43, no. 4, pp.

pp. 189-222.

1032-1040, 2007.

[32] Rockwell Automation. Direct-to-Drive Technology-Eliminating the Isola-

[15] S. S. Fazel, "Investigation and comparison of multi-level converters for

tion Transformer. [Online]. Available: http://literature.rockwellautomation.

medium voltage applications," Ph.D. dissertation, Technische Universität

com/idc/groups/literature/documents/wp/7000-wp001_-en-e.pdf

Berlin, Germany, 2007.

[33] B. Yang, W. Li, Y. Gu, W. Cui, and X. He, "Improved transformerless

[16] H. Akagi and S. Tamura, "A passive EMI filter for eliminating both bear-

inverter with common-mode leakage current elimination for a photovoltaic

ing current and ground leakage current from an inverter-driven motor," IEEE

grid-connected power system," IEEE Trans. Power Electron., vol. 27, no. 2,

Trans. Power Electron., vol. 21, no. 5, pp. 1459-1469, 2006.

pp. 752-762, 2012.

[17] A. Jouanne, "Filtering techniques to minimize the effect of long motor

[34] M. Hagiwara, K. Nishimura, and H. Akagi, "A medium-voltage motor

leads on PWM inverter-fed AC motor drive systems," IEEE Trans. Industry

drive with a modular multilevel PWM inverter," IEEE Trans. Power Elec-

Applicat., vol. 32, no. 4, pp. 919-926, 1996.

tron., vol. 25, no. 7, pp. 1786-1799, 2010.

104

IEEE PowEr ElEctronIcs MagazInE

z	 June 2016


http://www.e-driveonline.com/Conf-12/images/Presentations/IMS%20Research.pdf http://www.e-driveonline.com/Conf-12/images/Presentations/IMS%20Research.pdf http://www.drivesncontrols.com/news/fullstory.php/aid/4227/Fracking_energises_MV_drives_sales_in_the_Americas.html http://www.drivesncontrols.com/news/fullstory.php/aid/4227/Fracking_energises_MV_drives_sales_in_the_Americas.html http://www.tmeic.com/Repository/Brochures/MV%20Drive%20Evolution%20Brochure%202011%20hi-res.pdf http://www.tmeic.com/Repository/Brochures/MV%20Drive%20Evolution%20Brochure%202011%20hi-res.pdf http://literature.rockwellautomation.com/idc/groups/literature/documents/wp/7000-wp001_-en-e.pdf http://literature.rockwellautomation.com/idc/groups/literature/documents/wp/7000-wp001_-en-e.pdf

Table of Contents for the Digital Edition of IEEE Power Electronics Magazine Compendium - March 2018

Contents
IEEE Power Electronics Magazine Compendium - March 2018 - Cover1
IEEE Power Electronics Magazine Compendium - March 2018 - Cover2
IEEE Power Electronics Magazine Compendium - March 2018 - Contents
IEEE Power Electronics Magazine Compendium - March 2018 - 2
IEEE Power Electronics Magazine Compendium - March 2018 - 3
IEEE Power Electronics Magazine Compendium - March 2018 - 4
IEEE Power Electronics Magazine Compendium - March 2018 - 5
IEEE Power Electronics Magazine Compendium - March 2018 - 6
IEEE Power Electronics Magazine Compendium - March 2018 - 7
IEEE Power Electronics Magazine Compendium - March 2018 - 8
IEEE Power Electronics Magazine Compendium - March 2018 - 9
IEEE Power Electronics Magazine Compendium - March 2018 - 10
IEEE Power Electronics Magazine Compendium - March 2018 - 11
IEEE Power Electronics Magazine Compendium - March 2018 - 12
IEEE Power Electronics Magazine Compendium - March 2018 - 13
IEEE Power Electronics Magazine Compendium - March 2018 - 14
IEEE Power Electronics Magazine Compendium - March 2018 - 15
IEEE Power Electronics Magazine Compendium - March 2018 - 16
IEEE Power Electronics Magazine Compendium - March 2018 - 17
IEEE Power Electronics Magazine Compendium - March 2018 - 18
IEEE Power Electronics Magazine Compendium - March 2018 - 19
IEEE Power Electronics Magazine Compendium - March 2018 - 20
IEEE Power Electronics Magazine Compendium - March 2018 - 21
IEEE Power Electronics Magazine Compendium - March 2018 - 22
IEEE Power Electronics Magazine Compendium - March 2018 - 23
IEEE Power Electronics Magazine Compendium - March 2018 - 24
IEEE Power Electronics Magazine Compendium - March 2018 - 25
IEEE Power Electronics Magazine Compendium - March 2018 - 26
IEEE Power Electronics Magazine Compendium - March 2018 - 27
IEEE Power Electronics Magazine Compendium - March 2018 - 28
IEEE Power Electronics Magazine Compendium - March 2018 - 29
IEEE Power Electronics Magazine Compendium - March 2018 - 30
IEEE Power Electronics Magazine Compendium - March 2018 - 31
IEEE Power Electronics Magazine Compendium - March 2018 - 32
IEEE Power Electronics Magazine Compendium - March 2018 - 33
IEEE Power Electronics Magazine Compendium - March 2018 - 34
IEEE Power Electronics Magazine Compendium - March 2018 - 35
IEEE Power Electronics Magazine Compendium - March 2018 - 36
IEEE Power Electronics Magazine Compendium - March 2018 - 37
IEEE Power Electronics Magazine Compendium - March 2018 - 38
IEEE Power Electronics Magazine Compendium - March 2018 - 39
IEEE Power Electronics Magazine Compendium - March 2018 - 40
IEEE Power Electronics Magazine Compendium - March 2018 - 41
IEEE Power Electronics Magazine Compendium - March 2018 - 42
IEEE Power Electronics Magazine Compendium - March 2018 - 43
IEEE Power Electronics Magazine Compendium - March 2018 - 44
IEEE Power Electronics Magazine Compendium - March 2018 - 45
IEEE Power Electronics Magazine Compendium - March 2018 - 46
IEEE Power Electronics Magazine Compendium - March 2018 - 47
IEEE Power Electronics Magazine Compendium - March 2018 - 48
IEEE Power Electronics Magazine Compendium - March 2018 - 49
IEEE Power Electronics Magazine Compendium - March 2018 - 50
IEEE Power Electronics Magazine Compendium - March 2018 - 51
IEEE Power Electronics Magazine Compendium - March 2018 - 52
IEEE Power Electronics Magazine Compendium - March 2018 - 53
IEEE Power Electronics Magazine Compendium - March 2018 - 54
IEEE Power Electronics Magazine Compendium - March 2018 - 55
IEEE Power Electronics Magazine Compendium - March 2018 - 56
IEEE Power Electronics Magazine Compendium - March 2018 - 57
IEEE Power Electronics Magazine Compendium - March 2018 - 58
IEEE Power Electronics Magazine Compendium - March 2018 - 59
IEEE Power Electronics Magazine Compendium - March 2018 - 60
IEEE Power Electronics Magazine Compendium - March 2018 - 61
IEEE Power Electronics Magazine Compendium - March 2018 - 62
IEEE Power Electronics Magazine Compendium - March 2018 - 63
IEEE Power Electronics Magazine Compendium - March 2018 - 64
IEEE Power Electronics Magazine Compendium - March 2018 - 65
IEEE Power Electronics Magazine Compendium - March 2018 - 66
IEEE Power Electronics Magazine Compendium - March 2018 - 67
IEEE Power Electronics Magazine Compendium - March 2018 - 68
IEEE Power Electronics Magazine Compendium - March 2018 - 69
IEEE Power Electronics Magazine Compendium - March 2018 - 70
IEEE Power Electronics Magazine Compendium - March 2018 - 71
IEEE Power Electronics Magazine Compendium - March 2018 - 72
IEEE Power Electronics Magazine Compendium - March 2018 - 73
IEEE Power Electronics Magazine Compendium - March 2018 - 74
IEEE Power Electronics Magazine Compendium - March 2018 - 75
IEEE Power Electronics Magazine Compendium - March 2018 - 76
IEEE Power Electronics Magazine Compendium - March 2018 - 77
IEEE Power Electronics Magazine Compendium - March 2018 - 78
IEEE Power Electronics Magazine Compendium - March 2018 - 79
IEEE Power Electronics Magazine Compendium - March 2018 - 80
IEEE Power Electronics Magazine Compendium - March 2018 - 81
IEEE Power Electronics Magazine Compendium - March 2018 - 82
IEEE Power Electronics Magazine Compendium - March 2018 - 83
IEEE Power Electronics Magazine Compendium - March 2018 - 84
IEEE Power Electronics Magazine Compendium - March 2018 - 85
IEEE Power Electronics Magazine Compendium - March 2018 - 86
IEEE Power Electronics Magazine Compendium - March 2018 - 87
IEEE Power Electronics Magazine Compendium - March 2018 - 88
IEEE Power Electronics Magazine Compendium - March 2018 - 89
IEEE Power Electronics Magazine Compendium - March 2018 - 90
IEEE Power Electronics Magazine Compendium - March 2018 - 91
IEEE Power Electronics Magazine Compendium - March 2018 - 92
IEEE Power Electronics Magazine Compendium - March 2018 - 93
IEEE Power Electronics Magazine Compendium - March 2018 - 94
IEEE Power Electronics Magazine Compendium - March 2018 - 95
IEEE Power Electronics Magazine Compendium - March 2018 - 96
IEEE Power Electronics Magazine Compendium - March 2018 - 97
IEEE Power Electronics Magazine Compendium - March 2018 - 98
IEEE Power Electronics Magazine Compendium - March 2018 - 99
IEEE Power Electronics Magazine Compendium - March 2018 - 100
IEEE Power Electronics Magazine Compendium - March 2018 - 101
IEEE Power Electronics Magazine Compendium - March 2018 - 102
IEEE Power Electronics Magazine Compendium - March 2018 - 103
IEEE Power Electronics Magazine Compendium - March 2018 - 104
IEEE Power Electronics Magazine Compendium - March 2018 - 105
IEEE Power Electronics Magazine Compendium - March 2018 - 106
IEEE Power Electronics Magazine Compendium - March 2018 - 107
IEEE Power Electronics Magazine Compendium - March 2018 - 108
IEEE Power Electronics Magazine Compendium - March 2018 - 109
IEEE Power Electronics Magazine Compendium - March 2018 - 110
IEEE Power Electronics Magazine Compendium - March 2018 - 111
IEEE Power Electronics Magazine Compendium - March 2018 - 112
IEEE Power Electronics Magazine Compendium - March 2018 - 113
IEEE Power Electronics Magazine Compendium - March 2018 - 114
IEEE Power Electronics Magazine Compendium - March 2018 - 115
IEEE Power Electronics Magazine Compendium - March 2018 - 116
IEEE Power Electronics Magazine Compendium - March 2018 - 117
IEEE Power Electronics Magazine Compendium - March 2018 - 118
IEEE Power Electronics Magazine Compendium - March 2018 - 119
IEEE Power Electronics Magazine Compendium - March 2018 - Cover4
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_september2023
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_june2023
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_march2023
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_december2022
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_september2022
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_june2022
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_march2022
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_december2021
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_september2021
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_june2021
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_march2021
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_december2020
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_september2020
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_june2020
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_march2020
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_december2019
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_september2019
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_june2019
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_march2019
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_december2018
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_september2018
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_june2018
https://www.nxtbook.com/nxtbooks/ieee/pelcompendium_march2018
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_march2018
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_september2017
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_june2017
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_march2017
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_december2016
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_september2016
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_june2016
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_march2016
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_december2015
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_september2015
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_june2015
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_march2015
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_december2014
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_september2014
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_june2014
https://www.nxtbook.com/nxtbooks/ieee/powerelectronics_march2014
https://www.nxtbookmedia.com