Open Access

Modelling of Non–Linear Distortion in Vacuum Triodes Using Trans–Characteristics Inverse and Newton’s Method

   | Aug 24, 2013

[1] COX, S. M.-CANDY, B. H. : Class-D Audio Amplifiers with Negative Feedback, SIAM J. Appl. Math. 66 (2005), 468-488.10.1137/040617467Search in Google Scholar

[2] LEACH, W. M. : SPICE Models for Vacuum-Tube Amplifiers, J. Audio Eng. Soc. 43 (1995), 117-126.Search in Google Scholar

[3] PAKARINEN-KARJALAINEN, M. : Enhanced Wave Digital Triode Model for Real-Time Tube Amplifier Emulation, IEEE Transactions on Audio, Speech, and Language Processing 18 (2010), 738-746.10.1109/TASL.2009.2033306Search in Google Scholar

[4] BUSSEY, W. S.-HAIGLER, R. M. : Tubes versus Transistors in Electric Guitar Amplifiers, in: Proc. ICASSP ’81, IEEE, Pis- cataway, 1981, pp. 800-803.Search in Google Scholar

[5] OTALA, M. : Transient Distortion in Transistorized Audio Power Amplifiers, IEEE Transactions on Audio and Electroa- coustics 18 (1970), 234-239.10.1109/TAU.1970.1162117Search in Google Scholar

[6] BARBOUR, E. : The Cool Sound of Tubes, IEEE Spectrum 35 (1998), 24-35.10.1109/6.708439Search in Google Scholar

[7] REICH, H. J. : Theory and Applications of Electron Tubes, McGraw-Hill, New York, 1944.Search in Google Scholar

[8] TERROVITIS, M. T.-MEYER, R. G. : Intermodulation Dis- tortion in Current-Commutating CMOS Mixers, IEEE Journal of Solid-State Circuits 35 (2000), 1461-1473.10.1109/4.871323Search in Google Scholar

[9] ABUELMA’ATTI, M. T. : Large-Signal Analysis of Triode Vac- uum-Tube Amplifiers, J. Audio Eng. Soc. 51 (2003), 1046-1053.Search in Google Scholar

[10] CRESPO-CADENAS, C.-REINA-TOSIMA, J.-MADERO- AVORA, M. J. : IM3 and IM5 Phase Characterizations and Analysis Based on a Simplified Newton Approach, IEEE Trans- actions onMicrowave Theory and Techniques 54 (2006), 321-328.10.1109/TMTT.2005.861659Search in Google Scholar

[11] FIJNVANDRAATA, J. G.-HOUBEN, S. H. M. J.-ter MA- TEN, E. J. W.-PETERS, J. M. F. : Time Domain Analog Cir- cuit Simulation, Journal of Computational and Applied Mathe- matics 185 (2006), 441-459.10.1016/j.cam.2005.03.021Search in Google Scholar

[12] CONTE, S. D.-de BOOR, C. : Elementary Numerical Analy- sis, McGraw-Hill, Kogakusha: Tokyo, 1972.Search in Google Scholar

[13] GIUSTOLISI, G.-PALUMBO, G. : Techniques for Evaluating Harmonic Distortion in Class-AB Output Stages: A Tutorial, Analog. Integr. Circ. Sig. Process 47 (2006), 323-334.10.1007/s10470-006-5371-6Search in Google Scholar

[14] PEDERSON, D.-MAYARAM,K. : Analog Integrated Circuits for Communication - Principles, Simulation and Design, Kluwer Academic Publishers, Boston, 1990.10.1007/978-1-4757-2128-7Search in Google Scholar

[15] BRONSHTEIN, I. N.-SEMENDYAYEV, K. A.-MUSIOL, G.-MUEHLIG, H. : Handbook of Mathematics, Springer-Ver- lag, Berlin, 2007.Search in Google Scholar

[16] MILLMAN, J.-SEELY, S. : Electronics, McGraw-Hill, New York, 1951.Search in Google Scholar

[17] ARGUIMBAU, L. B. : Vacuum-Tube Circuits and Transistors, Wiley, New York, 1956.Search in Google Scholar

[18] McGILLEM, C. D.-COOPER, G. R. : Continuous and Dis- crete Signal and System Analysis, Holt, Rinehart and Winston, New York, 1974.Search in Google Scholar

[19] LI, Y. F.-CHEN, K. F. : Eliminating the Picket Fence Effect of the Fast Fourier Transform, Computer Physics Communications 178 (2008), 486-491.10.1016/j.cpc.2007.11.005Search in Google Scholar

[20] ZHU, L. M.-SONG, X. M.-LI, H. X.-DING, H. : High Accu- racy Estimation of Multi-Frequency Signal Parameters by Im- proved Phase Linear Regression, Signal Processing 87 (2007), 1066-1077.10.1016/j.sigpro.2006.09.014Search in Google Scholar

[21] http://www.mathworks.com/ [6 April 2012]. 10.1002/wilm.10160Search in Google Scholar

ISSN:
1335-3632
Language:
English
Publication timeframe:
6 times per year
Journal Subjects:
Engineering, Introductions and Overviews, other