chapter - 1ietd.inflibnet.ac.in/jspui/bitstream/10603/3486/13/13_references.pdf · modulation for...

17
REFERENCES 1. Nabae, I. Takahashi, and H. Akagi, “A New Neutral-Point Clamped PWM Inverter,” IEEE Trans. Industry Applications, vol. IA-17, no. 5, Sep/Oct 1981, pp. 518–523. 2. R. Teodorescu, F. Beaabjerg, J. K. Pedersen, E. Cengelci, S. U. Sulistijo, B.O.Woo, P. Enjeti, “Multilevel converters—A survey,” in Proc. EPE Conference, 1999, pp. 2–11. 3. J. Rodriguez, J. S. Lai, and F. Z. Peng, “Multilevel Inverters: A Survey of Topologies, Controls and Applications,” IEEE Trans. Industrial Electronics, vol. 49, no.4, Aug 2002, pp. 724–738. 4. Rajan K. Behra, T.V. Dixit, Shyama P. Das, “Analysis of Experimental Investigation of various Carrier-based Modulation Schemes for Three-level Neutral Point Clamped Inverter fed Induction motor Drive,” Proceedings of PEDES’06, Delhi, India, December 12-15, 2006, pp. 1-6. 5. B. K. Bose, Modern Power Electronics and AC Drives, Prentice Hall, Upper Saddle River, 2002. 6. Giuseppe Carrara, Simone Gardella, Mario Marchesoni, Raffaele Salutari, Giuseppe Sciutto, “A New Multilevel PWM Method: A Theoretical Analysis,” IEEE Trans. on Power Electronics, vol. 7, no. 3, July 1992, pp. 497-505. 7. D. Grahame Holmes, Thomos A. Lipo, “Pulse Width Modulation for Power Converters,” A John Wiley & Sons, Inc. Publication, IEEE Press. 8. Lazhar Ben-Brahim, Susumu Tadakuma, “A new PWM control for GTO minimum on-pulse compensation,” Industry Applications Conference 2001, Conf. Proc. Vol. 2, 30 Sep- 4 Oct 2001, pp 1015-1022. 9. Adrian Schiop, “Models of Single Phase Multilevel Inverters,” International Symposium on Signals, Circuits and Systems, 9-10 July 2009, pp. 1-4. 216

Upload: others

Post on 18-Aug-2020

5 views

Category:

Documents


0 download

TRANSCRIPT

Page 1: Chapter - 1ietd.inflibnet.ac.in/jspui/bitstream/10603/3486/13/13_references.pdf · Modulation for Three-level Inverters: Neutral point potential and Output Voltage Distortion,”

REFERENCES

1. Nabae, I. Takahashi, and H. Akagi, “A New Neutral-Point

Clamped PWM Inverter,” IEEE Trans. Industry Applications,

vol. IA-17, no. 5, Sep/Oct 1981, pp. 518–523.

2. R. Teodorescu, F. Beaabjerg, J. K. Pedersen, E. Cengelci, S.

U. Sulistijo, B.O.Woo, P. Enjeti, “Multilevel converters—A

survey,” in Proc. EPE Conference, 1999, pp. 2–11.

3. J. Rodriguez, J. S. Lai, and F. Z. Peng, “Multilevel Inverters:

A Survey of Topologies, Controls and Applications,” IEEE

Trans. Industrial Electronics, vol. 49, no.4, Aug 2002, pp.

724–738.

4. Rajan K. Behra, T.V. Dixit, Shyama P. Das, “Analysis of

Experimental Investigation of various Carrier-based

Modulation Schemes for Three-level Neutral Point Clamped

Inverter fed Induction motor Drive,” Proceedings of

PEDES’06, Delhi, India, December 12-15, 2006, pp. 1-6.

5. B. K. Bose, Modern Power Electronics and AC Drives,

Prentice Hall, Upper Saddle River, 2002.

6. Giuseppe Carrara, Simone Gardella, Mario Marchesoni,

Raffaele Salutari, Giuseppe Sciutto, “A New Multilevel PWM

Method: A Theoretical Analysis,” IEEE Trans. on Power

Electronics, vol. 7, no. 3, July 1992, pp. 497-505.

7. D. Grahame Holmes, Thomos A. Lipo, “Pulse Width

Modulation for Power Converters,” A John Wiley & Sons, Inc.

Publication, IEEE Press.

8. Lazhar Ben-Brahim, Susumu Tadakuma, “A new PWM

control for GTO minimum on-pulse compensation,” Industry

Applications Conference 2001, Conf. Proc. Vol. 2, 30 Sep- 4

Oct 2001, pp 1015-1022.

9. Adrian Schiop, “Models of Single Phase Multilevel Inverters,”

International Symposium on Signals, Circuits and Systems,

9-10 July 2009, pp. 1-4.

216

Page 2: Chapter - 1ietd.inflibnet.ac.in/jspui/bitstream/10603/3486/13/13_references.pdf · Modulation for Three-level Inverters: Neutral point potential and Output Voltage Distortion,”

10. P.K.Chaturvedi, Shailendra K. Jain, Pramod Agrawal,

“Investigations on Different Multilevel Inverter Control

Techniques by Simulation,” IETE Journal of Research, vo.54,

issue 4, 2008, pp. 297-307.

11. Joachim Holtz, “Pulse Width Modulation- A Survey,” IEEE

Tans. on Industrial Electronics, vol. 39, No. 5, December

1992, pp.410-420.

12. Van Der Brmck, H.W., Skudelny, H.C. and Stanke G.V.,

"Analysis and Realization of a Pulsewidth modulation based

voltage space vectors", lEEE Transactions on Industry

Applications, Vol. 24, No. 1, January1988, pp. 142 -150.

13. F. Profumo, A Boglietti, G. Griva, M.Pastorelli, “ Space Vector

and Sinusoidal PWM techniques Compensation keeping in

account the Secondary Effects,” Third AFRICON conference

92, Conf. Proc. 22-24 Sep. 1992, pp. 394-399.

14. Zhenyu Yu, Arefeen Mohammed, Issa Panache, “ A Review of

Three PWM Techniques,” Proceedings of the American

Control Conference, New Mexico, June 1997, pp. 257-261.

15. Keliang Zhou, Danwei Wang, “Relationship between Space-

Vector Modulation and Three-phase Carrier Based PWM: A

Comprehensive Analysis,” IEEE Trans. on Industrial

Electronics, vol. 49, No. 1, Feb-2002, pp. 186-196.

16. Atif Iqbal, Adoum Lamine, Imtiaz Ashrap, Mohibullah, “

MATLAB/Simulink Model of Space Vector PWM for Three-

phase Voltage source Inverter,” Universities Power

Engineering Conference-06, Conf. Proceedings, 6-8 Sept.

2006, pp.1096-1100.

17. Lai J.S, F.Z. Peng, “Multilevel Converters – A New Breed of

Power Converters”, IEEE Transaction on Industry

Applications, Volume 32, Issue 3, June1996, pp. 509-517.

18. Lai J.S, F.S. Shyu, “Topology for Hybrid Multilevel Inverter”,

IEE Proceedings of Electric Power Applications, Volume 149,

Issue 6, November 2002, pp. 449-458.

217

Page 3: Chapter - 1ietd.inflibnet.ac.in/jspui/bitstream/10603/3486/13/13_references.pdf · Modulation for Three-level Inverters: Neutral point potential and Output Voltage Distortion,”

19. Jang-Hawan Kim, Seung-Ki Sul, “Carrier based Pulse Width

Modulation for Three-level Inverters: Neutral point potential

and Output Voltage Distortion,” Power Electronics and

Motion Control Conference 2006, Conf. Proc. 14-16 Aug.

2006, pp 1-7.

20. Panagiotis Panagis, Fotis Stergiopoulos, Pantelis Marabeas,

Stefanos Manias, “Comparison of State of the Art Multilevel

Inverters,” Power Electronics Specialists Conference 2008,

Conf. Proc. 15-19 June 2008, pp. 4296-4301.

21. Oleg Sivkov, Jiri Pavelka, “Analysis of Capacitor Dividers for

Multilevel Inverter,” Power Electronics and Motion Control

Conference 2008, Conf. Proc. 1-3 Sep. 2008, pp. 221-228.

22. Jae Hyeong Seo, Chang Ho Choi, Dong Seok Hyun, “A new

simplified space-vector PWM method for three-level

inverters,’’ IEEE Trans. Power Electronics. Vol. 16, July

2001, pp.545-550.

23. Yo-Han Lee, Bum-Seok Suh and Dong-Seok Hyun, " A Novel

PWM Scheme for a Three-Level Voltage Source Inverter with

GTO Thyristors,” IEEE Transactions on Industrial

Applications, vol.32,No.2, March/April 1996, pp 260-268.

24. H. Pinheiro, F. Botterón, C. Rech, L. Schuch, R. F. Camargo,

H. L. Hey, H. A. Gründling, J. R. Pinheiro, “Space Vector

Modulation for Voltage-Source Inverters: A Unified

Approach,” Industrial Electronics Society 28th Annual

Conference 2002, Conf. Proc. 5-8 Nov. 2002, vol.1 PP. 23-29.

25. V.T Somasekhar, K.Gopakumar, "Three-level inverter

configuration cascading two-level inverters", Proc. IEE-

Electr. Power Appl, vol.150, No.3, May 2003, pp 245-254.

26. O. Alonso, L. Marroyo and P. Sanchis, "A Generalized

Methodology to Calculate Switching Times and Regions in

SVPWM Modulation of Multilevel Converters", Proc.

EPE’2001, pp. 101-109.

218

Page 4: Chapter - 1ietd.inflibnet.ac.in/jspui/bitstream/10603/3486/13/13_references.pdf · Modulation for Three-level Inverters: Neutral point potential and Output Voltage Distortion,”

27. B.P. McGrath, Donald.G.Holmes, Thomas Lipo,"

Optimized Space Vector switching sequences for Multilevel

inverters", IEEE Transactions on Power Electronics,

vol.18,No.6, November 2003, pp 1293-1301.

28. M. Cosan, H. Mão, D. Borojevic, and F. Lee, “Space Vector

Modulation of Three Level Voltage Source Inverter,” VPEC

Seminar Proceedings, 1996, pp. 123-128.

29. A.Koochaki, S.H.Fathi, M.Divandari, “Single Phase

Application of Space Vector Pulse Width Modulation for

Shunt Active Power Filters,” International Symposium on

Industrial Electronics 2007, 4-7 June 2007, pp. 611-616.

30. Zeliang Shu, Jian Tang, Yuhua Guo, and Jisan Lian, “An

Efficient SVPWM Algorithm with Low Computational

Overhead for Three-Phase Inverters” IEEE Trans. On Power

Electronics, vol. 22, no. 5, September 2007, pp1797-1805.

31. Subrata K. Mondal, Joao O. P. Pinto, and Bimal K. Bose, “A

Neural-Network-Based Space-Vector PWM Controller for a

Three-Level Voltage-Fed Inverter Induction Motor Drive”,

IEEE Trans. On Industry Applications, vol. 38, no. 3, May

2002, pp. 660-669.

32. Rangarajan M. Tallam, Rajendra Naik, Thomos A. Nondahl,

“A Carrier Based PWM Scheme for Neutral Point Voltage

Balancing in Three-level Inverters”, IEEE Trans. on

Industrial Applications, Vol. 41, Issue 6, 2005, pp. 1734-

1743.

33. R. Sommer, A. Mertens, M. Griggs, H.J. Conraths, M.

Bruckmann, and T. Greif, “New Medium Voltage Drive

Systems using Three-Level Neutral Point Clamped Inverter

with High Voltage IGBT”, IEEE Trans. on Industrial

Applications,1999, pp 1513-1519.

34. Lazhar Ben-Brahim, “A Neutral Point Voltage Balancing

Method for Multilevel GTO Inverters,” Industry Application

219

Page 5: Chapter - 1ietd.inflibnet.ac.in/jspui/bitstream/10603/3486/13/13_references.pdf · Modulation for Three-level Inverters: Neutral point potential and Output Voltage Distortion,”

conference 2006, Conf. Proc. 8-12 Oct. 2006, Vol. 2, pp. 959-

965.

35. Sop Oscar Lopez, Jacobo A lvarez, Jesus Doval-Gandoy,

Francisco Freijedo, Andres Nogueiras, Carlos M. Penalver,

“Multilevel Multiphase Space Vector PWM Algorithm Applied

to Three-Phase Converters”, IEEE Trans, 2008, pp.3290-

3295.

36. Nicolau Pereira Filho, João O. P. Pinto, Bimal K. Bose, and

Luiz E. Borges da Silva, “A Neural-Network-Based Space

Vector PWM of a Five-Level Voltage-Fed Inverter”, IEEE

Trans. On Industrial Applications, 2004, pp 2181-2187.

37. P.Purkait, and R. S. Sriramakavacham, “A New Generalized

Space Vector Modulation Algorithm for Neutral-point-

clamped Multilevel Converters”, Progress in Electromagnetics

Research Symposium, 2006, pp 330-335.

38. R. S. Kanchan, M.R. Baiju, K.K. Mohapatra, P.P. Ouseph and

K. Gopakumar, “Space vector PWM signal generation for

multilevel inverters using only the sampled amplitudes of

reference phase voltages”, IEE Proc.-Electr. Power Appl, vol.

152, no. 2, March 2005, pp 297-309.

39. S. Ali Khajehoddin, Alireza Bakhshai, and Praveen K. Jain,

“A Simple Voltage Balancing Scheme for m-Level Diode-

Clamped Multilevel Converters Based on a Generalized

Current Flow Model”, IEEE Trans. on Power Electronics, vol.

23, no. 5, September 2008, pp 2248-2259.

40. Celanovic .N, Dushan Boroyevich, “A Fast Space-Vector

Modulation Algorithm for Multilevel Three-Phase Converters",

IEEE Transactions on Industrial Applications, vol.37, No.2,

March/April 2001,pp 637-641.

41. Mondal G., Gopa Kumar K., Tekwani P.N., Levi E, “A

Reduced Switch Count five-level Inverter with common mode

voltage Elimination for an Open End Winding Induction

220

Page 6: Chapter - 1ietd.inflibnet.ac.in/jspui/bitstream/10603/3486/13/13_references.pdf · Modulation for Three-level Inverters: Neutral point potential and Output Voltage Distortion,”

motor Drive”, IEEE Trans. on Industrial Electronics, vol. 54,

issue 4, Aug. 2007, pp.2344-2351.

42. Aneesh M.A.S., Gopinath A, Baiju M.R., “A Simple Space

Vector PWM Generation Scheme for Any General n-level

Inverter”, IEEE Trans. on Industrial Electronics, vol. 56,

issue 5, May 2009, pp. 1649-1656.

43. Chang-Su Ma, Tae Jim-Kim, Dae-Wook Kang, Dong-Seok

Hyun, “A Simple Control Strategy for balancing the DC link

voltage of neutral point clamped inverter at low modulation

index”, Industrial Electronics Society Conference, IECON, 2-

6 Nov 2003, vol.3 , pp. 2167-2172.

44. Rathna Kumar D, Lakshmana Perumal, Srinivasan T, “A

new software implementation of space vector PWM”,

Proceedings of SoutheastCon, 2005 Conference, 8-10 April

2005, pp. 131-136.

45. Poh Chiang Loh, Holmes D.G., “Flux modulation for

multilevel inverters”, IEEE Trans. on Industry Applications,

vol. 38, issue 5, Sep/Oct 2002, p1389-1399.

46. Kumar R., Gupta R.A., Pratap K.S., “Implementation and

Analysis of Five-level Inverter with Space Vector PWM

Algorithm”, IEEE International Conference ICIT-2006, 15-17

Dec 2006, pp. 1665-1669.

47. Perantzakis G.S., Xepapas F.H., Papathanassiou S.A.,

Manias S.N., “A Predictive Current Control Technique for

Three-level NPC Voltage Source Inverter”, Power Electronics

Specialists Conference PESC’05,16 June 2005, pp. 1241-

1246.

48. S.Wei, B.Wu, Q.Wang, “An improved space vector PWM

control algorithm for multilevel inverters,” in Proc. Int. Power

Electron. Motion Control Conf., vol. 3, Aug. 14–16, 2004, pp.

1124–1129.

49. H. L. Liu, and G. H. Cho, “Three-Level Space Vector PWM in

Low Index Modulation Region Avoiding Narrow Pulse

221

Page 7: Chapter - 1ietd.inflibnet.ac.in/jspui/bitstream/10603/3486/13/13_references.pdf · Modulation for Three-level Inverters: Neutral point potential and Output Voltage Distortion,”

Problem”, IEEE Transactions On Power Electronics, Vol. 9,

No. 5, September 1994, pp. 481-486.

50. M. Saeedifard, H. Nikkhajoei, and R. Iravani, “A Space Vector

Modulated STATCOM Based on a Three-Level Neutral Point

Clamped Converter”, IEEE Trans. on Power Delivery, vol. 22,

issue 2, April 2007, pp.1029-1039.

51. S. Busquets Monge, J. Bordonau, D. Boroyevich, and S.

Somavilla, “The Nearest Three Virtual Space Vector PWM—A

Modulation for the Comprehensive Neutral-Point Balancing

in the Three-Level NPC Inverter”, IEEE Power Electronics

Letters, Vol.2, No.1, March 2004, pp 11-15.

52. G. Narayanan and V.T. Ranganathan, “Extension of

operation of space vector PWM strategies with low switching

frequencies using different over modulation algorithms,”

IEEE Trans. Power. Electronics, vol.17, 2002, pp.788-798.

53. ZW Ma, TQ. Zheng and F Lin, “Study of space vector PWM

algorithm with entire modulation range,” Journal of Beijing

Jiao tong University, vol.31, 2007, pp.1-5. (In Chinese)

54. J. S. Kim, S. K. SUI, “A Novel Voltage Modulation Technique

of the Space Vector PWM”, IPEC Conference Rec., 1995, pp.

742-747.

55. J. K. Steinke, “Switching Frequency Optimal PWM Control of

Three-level inverter,” IEEE Trans. Power Electron., vol. 7,

July 1992, pp. 487–496.

56. L. M. Tolbert and F. Z. Peng, “Multilevel converters for large

electric drives,” IEEE Trans. Ind. Applications., vol. 35,

Jan. /Feb. 1999, pp. 36–44.

57. M. Manjrekar, G. Venkataramanan, “Advanced topologies

and modulation strategies for multilevel inverters”, Power

Electronics Specialists Conference, Vol. 2, 23-27 June 1996,

pp. 1013-1018.

222

Page 8: Chapter - 1ietd.inflibnet.ac.in/jspui/bitstream/10603/3486/13/13_references.pdf · Modulation for Three-level Inverters: Neutral point potential and Output Voltage Distortion,”

58. GJ Yang, L Sun, NZ Cui and YP Lu, “Study on method of the

space vector PWM,” Proceedings of the CSEE, vol.21, 2001,

pp.79-83(in Chinese).

59. H Ma, YP Lang, “Application of simplified space-vector

modulation algorithm to three-phase voltage source PWM

rectifier,” Journal of Zhejiang University, vol.40, 2006,

pp.176-180 (in Chinese).

60. Peter Vas, “Vector control of AC machines,” Clarendon

Press, 1990.

61. Bellini. A, S. Bifaretti, “Comparison between Sinusoidal PWM

and Space Vector Modulation Techniques for NPC Inverters”,

IEEE Russia Power Tech 2005, 27-30 June 2005, pp. 1.-7.

62. Feng .C, V.G. Agelidis, “A DSP-Based Controller Design for

Multilevel Flying Capacitor Converters”, 19th Annual IEEE

Applied Power Electronics Conference and Exposition 2004,

Anaheim, CA, USA, Volume 3, 2004, pp. 1740-1744.

63. Franquelo L.G, J.Rodriguez, J.I. Leon, S. Kouro, R. Portillo,

M.A.M. Prats, “The Age of Multilevel Converters Arrives”,

IEEE Industrial Electronics Magazine, June 2008, pp.28-39.

64. F. Z. Peng, “A generalized multilevel inverter topology with

self voltage balancing,” IEEE Trans. on Industry

Applications, vol. 37, Mar/Apr 2001, pp.611-618.

65. H. Zhang, S. Dai, A. K. Wallace, and F. Wang, “Multilevel

inverter modulation schemes to eliminate common-mode

voltages,” IEEE Trans. Ind. Appl., vol. 36, no. 6, Nov./Dec.

2000, pp. 1645–1653.

66. R. Teichmann, S.Bernet, “A Comparison of Three-Level

Converters versus Two-Level Converters for Low-Voltage

Drives, Traction, and Utility Applications,” IEEE Trans. on

Industry Applications, Vol.41, No. 3, May/June 2005,

pp.855-865.

223

Page 9: Chapter - 1ietd.inflibnet.ac.in/jspui/bitstream/10603/3486/13/13_references.pdf · Modulation for Three-level Inverters: Neutral point potential and Output Voltage Distortion,”

67. C. Newton, and M. Sumner, “Multi-level Converters, A Real

Solution to Medium/High-Voltage Drives”, Power

Engineering Journal, Vol. 12, Issue. 1, Feb. 1998, pp. 21-26.

68. Marchesoni, M. and M. Mazzucchelli, “Multilevel Converters

for High Power AC Drives: A Review,” IEEE International

Symposium on Industrial Electronics, Budapest, Hungary, 1-

3 June 1993, pp. 38-43.

69. Mc Grath B.P, D.G. Holmes, “Multi-carrier PWM Strategies

for Multilevel Inverters,” IEEE Transaction on Industrial

Electronics, Volume 49, Issue 4, August 2002, pp.858-867.

70. Mouton H.T, “Natural Balancing of Three-Level Neutral-

Point-Clamped PWM Inverters”, IEEE Transaction on

Industrial Electronics, Volume 49, Issue 5, October 2002,

pp.1017-1025.

71. Nguyen T.H, P.K.W. Chan, Y. Shrivastava, S.Y.R. Hui, “A

Three-Dimensional Space Vector Modulation Scheme for

Three-Level Three-Wired Neutral Point Clamped Converters,”

IEEE 36th Power Electronics Specialists Conference, 2005,

pp. 2307-2314..

72. Y. H. Lee, R. Y. Kim, and D.S. Hyun, “A Novel SVPWM

Strategy Considering DC-link Balancing for a Multi-level

Voltage Source Inverter,” IEEC-APEC conference proc. 1999,

pp. 509-514.

73. G. Josh, X. Huang and B. T. Ooi, “Direct-coupled Multilevel

Cascaded Series VAR Compensators,” IEEE-IAS Conference

Rec., pp. 1608-1615, 1997.

74. T. A. Maynard, H. Foch, “Multi-level Conversion: High

Voltage Chopper and Voltage-Source Inverters,” IEEE-PESC

Conf. Rec., 1992, pp. 397-403.

75. M. Marchesoni. M. Mazzucchelli and S. Tenconi, “A Non

Conventional Power Converter for Plasma Stabilization,”

IEEE-PESC Conf: Rec., 1988, pp. 122-129.

224

Page 10: Chapter - 1ietd.inflibnet.ac.in/jspui/bitstream/10603/3486/13/13_references.pdf · Modulation for Three-level Inverters: Neutral point potential and Output Voltage Distortion,”

76. N. S. Choe, J. G.Cho, G. H. Cho, “A General Circuit Topology

of Multilevel Inverter,” IEEE-PESC Conf. Rec., 1991, pp. 96-

103.

77. M. Carpita, S. Tenconi, “A Novel Multilevel Structure for

Voltage Source Inverter”, EPE Conf. Rec., pp. 90-95, 1991.

78. Dell Aquila, R. Formosa, E. Montaruli, P. Zanchetta, “Novel

Multilevel PWM Inverter Implementation,” IEEE-IECON Conf.

Rec., 199, pp. 710-715.

79. C. Newton, M. Sumner, “Neutral Point Control for Multi-Level

Inverters: theory, design and operational limitations,” IEEE-

IAS Conf. Rec. 1997, pp.1336-1343.

80. Peng, F.Z., “A Generalized Multilevel Inverter Topology with

Self Voltage Balancing,” IEEE Industry Applications

Conference 2000, Rome, Italy, Volume 3, 8-12 October 2000,

pp. 2024-2031.

81. Rashid, M.H., “Power Electronics: Circuits, Devices and

Applications”, New Jersey: Prentice Hall, 2001.

82. K.N. Pavithran, R. Parimelalagan, M.R. Krishnamurthy,

“Studies on Inverter-Fed Five-Phase Induction Motor Drive”,

IEEE Trans. On Power Electronics, Vol. 3, No. 2, 1998, pp.

224-235.

83. C. Ong, “Dynamic Simulation of Electrical Machinery Using

Matlab/Simulink”, Prentice Hall 1997.

84. I.Boldea, S.Naser, “Reluctance Synchronous Machines and

Drives”, Clarendon Press, Oxford 1996.

85. P. Vas, “Sensorless Vector and Direct Torque Control”,

Oxford University Press, 1998.

86. M. D. Manjrekar, P. K. Steimer, and T. A. Lipo, “Hybrid

multilevel power conversion system: a competitive solution

for high-power applications.” LEE€ Trans. Ind, Appl., vol. 36,

June 2000, pp. 834-841.

225

Page 11: Chapter - 1ietd.inflibnet.ac.in/jspui/bitstream/10603/3486/13/13_references.pdf · Modulation for Three-level Inverters: Neutral point potential and Output Voltage Distortion,”

87. Deng Ming Peng, Lee F.C., Boroyevich D., “A novel SVM

algorithm for multilevel three-phase converters”, Proceedings

of PESC '02, June 2002, vol. 2, pp. 509 -513.

88. S.J. Watkins and L. Zhang, “Influence of multilevel

sinusoidal PWM schemes on the performance of a flying

capacitor inverter”, Proceedings of PEMD '02, April 2002, pp.

92 – 97.

89. Habeter, T.G. Divan, “Performance Characterization of a New

Discrete Pulse Modulated Current Regulator”, Industry

Applications Society Annual Meeting, 2-7 Oct. 1988, vol.1,

pp. 395-405.

90. A.M. Khambadkone, J. Holtz, “Compensated synchronous PI

current controller in over modulation range and six-step

operation of space vector modulation based vector controlled

drives”. IEEE Trans. on Industry Applications, vol.49, 2002,

pp.574-580.

91. Joseph Vithayathil, “Power electronics-Principles and

Applications”, Chapter-9, McGraw-Hill Publishers, 1995.

92. Gupta, A.K., A.M. Khambadkone, “A Simple Space Vector

PWM Scheme to Operate a Three-level NPC Inverter at High

Modulation Index Including Over-modulation Region, with

Neutral Point Balancing”, 14th IAS Annual Meeting of

Industry Application Conference 2005, vol. 3, 2-6 October

2005, pp. 1657-1664.

93. Krug, H.P., T. Kume, M. Swarmy, “Neutral-Point Clamped

Three-Level General Purpose Inverter–Features, Benefits and

Applications”, IEEE 35th Annual Power Electronics

Specialists Conference 2004, Germany, vol. 1, 20-25 June

2004, pp.323-328.

94. F. Z. Peng, J.W. McKeever, D. J. Adams, “A power line

conditioner using cascade multilevel inverters for

distribution systems,” IEEE Trans. Ind. Applications, vol. 34,

Nov./Dec. 1998, pp. 1293–1298.

226

Page 12: Chapter - 1ietd.inflibnet.ac.in/jspui/bitstream/10603/3486/13/13_references.pdf · Modulation for Three-level Inverters: Neutral point potential and Output Voltage Distortion,”

95. M. Marchesoni, “High-performance current control

techniques for applications to multilevel high-power voltage

source inverters,” IEEE Trans. Power Electronics, vol. 7, Jan.

1992, pp. 189–204.

96. L. M. Tolbert, F. Z. Peng, “Multi level converters for large

electric drives,” IEEE Trans. Ind. Applications, vol. 35, Jan/

Feb. 1999, pp. 36-44.

97. L. M. Tolbert, F. Z. Peng, T. G. Habetler, “Multi level PWM

methods at low modulation indices,” IEEE Trans. Power

Electronics, vol. 15, July 2000, pp. 719-725.

98. D.W. Kang, Y. H. Lee, B. S. Suh, C. H. Choi, and D. S. Hyun,

“A carrier wave-based SVPWM using phase-voltage

redundancies for the multilevel H-bridge inverter,” in

Proceedings of IECON’99 Conference, 1999, pp. 324–329.

99. B. S. Suh, Y. H. Lee, D. S. Hyun, T. A. Lipo, “A new

multilevel inverter topology with a hybrid approach,” in

Proceedings of. EPE’99 Conference, 1999, pp. 518-523.

100. R.J. Kerkman, David Leggate, BJ. Seibel, T.M. Rowan,

“Operation of PWM voltage source-inverters in the over

modulation region”, IEEE Trans. Ind. Electron., vol. 43, Feb.

1996, pp. 132-141.

101. Y. Shrivastava, C.K. Lee, S.Y.R. Hui, H.S.H. Chung,

“Comparision of SPWM and SVPWM switching schemes for

three-level power inverters”, Power Electronics Specialists

Conference, vol.1, 17-21 June 2001, pp.138 –145.

102. Yo-Han Lee, B.S. Suh, C.H. Choi, and D.S. Hyun, “A new

neutral point current control for a 3-level converter/inverter

pair system”, IEEE Trans. on Industry App., vol. 3, 03-07

Oct 1999, pp. 1528-1534.

103. S. Cobreces, E.J. Bueno, F.J. Rodriguez, J. Salaet, J.

Bordonau, “Anew neutral-point voltage control for single-

phase three-level NPC converters”, IEEE Power Electronics

Specialists Conference, 18-22 June 2006, pp.1-6.

227

Page 13: Chapter - 1ietd.inflibnet.ac.in/jspui/bitstream/10603/3486/13/13_references.pdf · Modulation for Three-level Inverters: Neutral point potential and Output Voltage Distortion,”

104. S.K., Mondal, B.K., Bose, V., Oleschuk, J.O.P., Pinto,

“Space vector pulse width modulation of three-level inverter

extending operation into over modulation region”, IEEE

Transactions on Power Electronics,Vol.18, March 2003,

pp.604 – 611.

105. B.P. McGrath, D.G. Holmes, “A comparison of multi-

carrier PWM strategies for cascaded and neutral point

clamped multilevel inverters” IEEE Power Electronics

Specialists Conference, vol. 2, 18-23 June 2000, pp.674-679.

106. A. Kocalmis, S. Sunter, “Modelling and simulation of a

multilevel inverter using space vector modulation technique”,

3rd International Conference on Technical and Physical

Problems in Power Engineering (TPE-2006) Ankara-Turkey,

29-31 May 2006, pp.940-943.

107. A. Kocalmis, “Modelling and simulation of a multilevel

inverter using SVPWM”, MSc Thesis, Institute of Science,

Firat University, 2005.

108. M. Veenstra, A. Rufer, “PWM-Control of Multi- Level

Voltage-Source Inverters”, Power Electronics Specialists

Conference, PESC’2000, vol. 3, pp. 1387-1393.

109. R. Rojas, T. Onhishi, T. Suzuki, “PWM Control Method for

a Four-level inverter”, IEE Proc. On Electric Power

Applications, vol. 142, no.6, 1995, pp. 390-396.

110. Hyo L. Liu, Nam S. Choi and Gyu H. Cho, “DSP Based

Space Vector PWM for Three-Level Inverter with DC-link

Voltage Balancing”, Proceedings of IECON’91 Conference,

1981, pp. 197-203.

111. M.M.Prats, J.M. Carrasco, L.G. Franquelo, “Effective

Modulation Algorithm for Three-Level Converters”,

Proceedings of PCIM’2002 conference, Nuremberg, Gemany,

2002, pp.621-627.

112. Jens-Ono Krah and Joachim Holtz, “High-Performance

Current Regulation and Efficient PWM Implementation for

228

Page 14: Chapter - 1ietd.inflibnet.ac.in/jspui/bitstream/10603/3486/13/13_references.pdf · Modulation for Three-level Inverters: Neutral point potential and Output Voltage Distortion,”

Low-Inductance Servo Motors”, IEEE Transactions on

Industry Applications, Vol. 35, No.5, 1999, 1039-1049.

113. K.A. Corzine, M. W. Wielebski, F. Z. Peng, J. Wang,

“Control of Cascaded Multilevel Inverters”. IEEE Trans.

Power Electronics, Vol. 19, No. 3, May 2004, pp. 732-738.

114. P. C. Loh, D. G. Holmes, T. A. Lipo. “Implementation and

Control of Distributed PWM Cascaded Multilevel Inverters

with Minimal Harmonic Distortion and Common-Mode

Voltage”, IEEE Trans. Power Electronics, Vol. 20, No.1, Jan.

2005, pp. 90-99.

115. S. Sirisukprasert, J.S. Lai, T.H. Liu. “Optimum Harmonic

Reduction with a wide Range of Modulation Indexes for

Multilevel Converters”, Thirty-fifth IEEE Annual Meeting and

World Conferences on Industrial Applications of Electrical

Energy proceedings.

116. T. Brukner, D.G. Holmes, “Optimal Pulse-Width

Modulation for Three-Level Inverters”. IEEE Trans. Power

Electronics, Vol. 20, No. 1, Jan 2005, pp. 82-89.

117. Y.H Lee, D.H. Kim, D.S. Hyun. “Carrier Based SVPWM

Method for Multi-Level system with reduced HDF”, Thirty-

fifth IEEE Annual Meeting and World Conferences on

Industrial Applications of Electrical Energy, vol. 3, 2000, pp.

1996-2003.

118. LW Zhang, J Liu, XH Wen, GL Chen and Y Hua, “A novel

algorithm of SVPWM inverter in the over modulation region

based on fundamental voltage amplitude linear output

control”, Proceedings of the CSEE, vol. 25, 2005, pp.12-18.

119. Boys,J.T., Walton, S.J., “A loss minimized sinusoidal

PWM inverter', Proc. Of IEE, Sep.1985, pp260-268.

120. Anish Gopinath, M.R.Baiju, “Space vector PWM for

multilevel inverters-A Fractal approach”, International

Conference on Power Electronics and Drive Systems, 27-30

Nov. 2007, pp. 842-849.

229

Page 15: Chapter - 1ietd.inflibnet.ac.in/jspui/bitstream/10603/3486/13/13_references.pdf · Modulation for Three-level Inverters: Neutral point potential and Output Voltage Distortion,”

121. Bowes, S.R., Midoun, A., “Sub-optimal switching

strategies for microprocessor controlled PWM inverter

drives”, Electric Power Applications, IEE proceedings, vol.

132, issue 3, May 1985, pp.133-148.

122. Taniguchi, K., Ogino, Y., Irie, H., “PWM Technique for

Power MOSFET Inverter”, IEEE Trans. on Power Electronics,

vol. 3, issue 3, Jul. 1998, pp.328-334.

123. Murphy, J.M.D., Egan, M.G., “A Comparison of PWM

Strategies for Inverter-Fed Induction Motors”, IEEE Trans. on

Industry Applications, vol. 1A-19, issue 3,1983, pp.363-369.

124. Murai, Y., Watanabe, T., Iwasaki, “Waveform Distortion

and Correction Circuit for PWM Inverters with Switching

Lag-Times”, IEEE Trans. on Industry Applications, vol. 1A-

23, issue 5, 1987, pp. 881-886.

125. G. Shinha, T. A. Lipo, “A Four Level Inverter Based Drive

with a Passive Front End,” IEEE-PESC 1997, Conference

records, pp. 590-596.

126. A.B.Plunkett. A current-controlled pwm transistor

inverter drive. Conference Recording IEEE/IAS Annual

Meeting, Oct 1979, pp. 786- 792.

127. D. W. Chung, J. S. King, and S. K. Sul., “Unified voltage

modulation technique for real-time three-phase power

conversion”, IEEE Trans. on Industry Applications, vol.

34(2), March/April 1997, pp.374-380.

128. J. Holtz, P. Lammert, and W. Lotzkat, “High-speed drive

system with ultrasonic MOSFET PWM inverter and single-

chip microprocessor”, IEEE Trans. on Industry Applications,

vo. 23(6), Nov/Dec 1987, pp.1010-1015.

129. L. Xu and B. Wang, "Comparison Study of Rotor

Structures for Five- Phase Synchronous Reluctance

Machines", Proceedings of IAS Annual Meeting, 1999,pp. 1-8.

230

Page 16: Chapter - 1ietd.inflibnet.ac.in/jspui/bitstream/10603/3486/13/13_references.pdf · Modulation for Three-level Inverters: Neutral point potential and Output Voltage Distortion,”

130. L. Xu, X. Xu, T.A. Lipo, D.W. Novotny, “Vector Control of a

Synchronous Reluctance Motor Including Saturation and

Iron Loss”, IEEE Trans. on Industry Applications, Vol. 27,

No. 5, 1991, pp. 977-985.

131. H.A. Toliyat, “Analysis and Simulation of Five-Phase

Variable-Speed Induction Motor Drives Under Asymmetrical

Connections”, IEEE Trans. of Power Electronics, Vol. 13, No.

4, July 1998, pp. 748-756.

132. H.A. Toliyat, L. Xu and T.A. Lipo, “A Five-Phase

Reluctance Motor with High Specific Torque”, IEEE Trans. on

Industry Applications, Vol. 28, no. 3, 1992, pp. 659-667.

133. A. Vagati, “The Synchronous Reluctance Solution: A New

Alternative in A.C. Drives”, IEEE Trans. on Industrial

Electronics, Control and Instrumentation, vol. 1, 1994, pp.

1-13.

134. Zhou Mingbao, Qu Wenlong, “Power Electronics

Technique”, China Machine Press, 1997, chapter-1, pp.119-

130.

135. Zhoung Du, “Acive Harmonic Elimination in Multilevel

Converters”, Ph.D. Dissertation, May 2005, The University of

Tennessee, Knoeville.

136. Nicola Celavonic, “Space Vector Modulation and Control

of Multilevel Converters”, Ph.D. Dissertation, September

2000, Blaksburg, Virginia.

137. D. Lalili, E.M.Berkouk, F. Boudjema, N.Lourci, T.Taleb,

J.Petzold, “Simplified Space Vector Pulse Width Modulation

For Five-Level Inverter”, European Physics Journal Applied

Physics, vol. 40, no. 3, Dec 2007, pp. 335-342.

138. A.K. Gupta, A.M. Khambadkone, “ A Space vector PWM

scheme for Multilevel inverters based on two-level inverter”,

IEEE Trans. on Industrial Electronics, vol. 53, issue 5, Oct.

2006, pp. 1631-1639.

231

Page 17: Chapter - 1ietd.inflibnet.ac.in/jspui/bitstream/10603/3486/13/13_references.pdf · Modulation for Three-level Inverters: Neutral point potential and Output Voltage Distortion,”

139. Weidong Jiang, Qunjing Wang, Quan Chen, Cungang Hu,

“A Simplified SVPWM Control Algorithm for Multilevel VSI

based Two-level SVPWM Control Algorithm”, Internetional

Conference of Electrical Machines and Systems 08-11 Oct.

2007, Conference Proceedings, pp. 43-49.

232