References
[1]. B.K .Bose, (2002) ”Modern Power Electronics and AC
drives”,Prentice-Hall.
[2]. Vedam Subrahmanyam, (2005). ”Electric Drives-
Concepts and Applications”, Tata McGraw-Hill.
[3]. Guy Seguir, Francis Labric, (2007). ”Coverters of Power
Electronics”, Vol 4.
[4]. W. Leonhard, (1990). ”Control of Electrical Drives”
Springer- Verlag, New York, Tokyo.
[5]. K. Ogata, (1990). ”Modern Control Engineering”,
Prentice- Hall, New Jersey.
[6]. Mohan, Undeland, Robbins, (1989). ”Power
Electronics”, Wiley, second edition.
[7]. N. Mohan, (2011)”Advanced Electric Drives”,
Minneapolis,
[8]. B.D. Bedford, R.G. Hoft, R.G. et al., (1984). ”Principles
of Inverter Circuits”, New York: John Wiley & Sons, Inc.
[9]. Derek.A. Paice, (1999). ”Power Electronics Converters
Harmonics”, Wiley-IEEE Press.
[10]. Tsung-Po Chen, Yen-Shin Lai, Chang-Huan Liu,
(1999). ”A new space vector modulation technique for
inverter control”, Power Electronics Specialists Conference,
th 1999.PESC 99.30 Annual IEEE, Vol.2, No. 27, pp.777-782,
June-July.
[11]. Daewoo Chung, Joohn-Sheok Kim,Seung-Ki Sul,
(1998). ”Unified voltage modulation technique for realtime
three-phase power conversion”, IEEE Transactions on
Industry Applications, Vol.34, No. 22, pp.374-380.
[12]. S. Fukuda, K. Suzuki, (1997). ”Using Harmonic
distortion determining factor for harmonic evaluation of
carrier-based PWM methods”, Industry Applications
Conference, Thirty-Second IAS Annual Meeting, IAS'97,
Conference Record of the 1997 IEEE, Vol. 2, 5-9,pp.1534-
1541, Oct.
[13]. A.M. Hava, R.J. Kerkman, T.A. Lipo, (1997). ”A high
performance generalized discontinuous PWM
algorithm”, Applied Power Electronics Conference and
Exposition, APEC'97 conference Proceedings, Vol. 2,23-
27, ,pp.886-894.
[14]. A.M. Hava, R.J. Kerkman, T.A. Lipo, (1997). ”Simple
analytical and graphical tools for carrier based PWM
methods”, Power Electronics Specialists Conference,
PESC'97 Record, 28th Annual IEEE, Vol. 222-27, pp.1462-
1471.
[15]. D.G. Holmes, (1996). ”The significance of zero space
vector placemen for carrier-based PWM schemes”, IEEE
Transactions on Industry Applications, Vol. 32, pp.1122-
1129.
[16]. J. Holtz, (1994). ”Pulse width modulation for
electronic power conversion”, Proceedings of the IEEE,
Vol.82, No. 8 , pp.1194-1214.
[17]. A.M. Trzynadlowski, S.Legowski, (1994). ”Minimumloss
vector PWM strategy for three-phaseinverters”, IEEE Transactions on Power Electronics, Vol. 9, No. 1, pp.26-
34.
[18]. A.C. Oliveira, C.B. Jacobina, et, al. (2007)
”Improved ead-time compensation for Sinusoidal PWM
inverters operating at high switching frequencies”, IEEE
Transactions on Industrial Electronics, Vol.54, No 4, Aug.
[19]. P. Bowler. (1995). ”Pulse Width Modulation for
Induction Motor Drive”, Proceedings of the first IEEE
International Caracas Conference on Devices, Circuits
and Systems, 12-14 Dec.
[20]. Peter Vas. (1992). ”Electrical machines and drives: A
space-vector theory approach”, Oxford University Press.
[21]. Van der Broeck, H. Skudelny, et.al. (1986). ”Analysis
and Realization of a pulse width modulator based on
voltage space vectors”, Proceedings of the IEEE-IAS
conference, pp.244.251.
[22]. Y. Tzou, H. Hsu. (1997). ”FPGA Realization of space
vector pwm control IC for 3 phase PWM inverters”, IEEE
Transactions on Power Electronics, Vol.12, No.06,
November.
[23]. Berrezzek Farid, Omeriri Amar, ( 2009)”A study of
new techniques of controlled PWM inverters”, European
journal of scientific research, Vol. 32, No.1, pp.78-88.
[24]. S. Ogasawara, H.Akagi, and A.Nabae. (1989). ”A
novel PWM scheme of voltage source inverter based on
space vector theory”, European Power Electronics
Conference Record, Germany, pp.1197-1202.
[25]. Satean Tunyasrirut,Sompong Srilad. (2008).
”Comparison power quality of the voltage source inverter
type SVPWM and SPWM technique for induction motor
drive”, Proceedings of the SICE Annual Conference,
pp.241-246.
[26]. G. Almer, (1991). ”A PWM current-source inverter for
high quality drive: European Power Electronics Journal,
Vol.1,No.1, ,pp 21-32, July.
[27]. S.R. Bowes, S.Grewal, and D. Holliday. (2001). High
frequency PWM technique for two and three level single
phase inverter: IEEE Proceedings-ElectricPower
Applications, Vol.147, No.2, Mar.
[28].www.mathworks.com