Bibliography 118. Cohen, I., 1993, Evaluation and comparison of power conversion topologies, European Power Electronics Conf. (EPE) Rec., 9-16.

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1 BIBLIOGRAPHY Acero, J., Alonso, R., Burdio, J. M., Barragan, L. A., Puyal, D., 2006a, Analytical equivalent impedance for a planar circular induction heating system, Magnetics, IEEE Transactions on, 42(1), Acero, J., Burdio, J. M., Barragan, L.,A., Artigas, J. I., Alonso, R., 2006b, An electromagnetic-based model for calculating the efficiency in domestic induction heating appliances, 37th IEEE Power Electronics Specialists Conference, (), 1-6. Acero, J., Alonso, R., Barragan, L. A., Burdio, J. M., 2006c, Magnetic vector potential based model for eddy-current loss calculation in round-wire planar windings, IEEE Transactions on Magnetics, 42(9), Acero, J., Burdio, J. M., Barragan, L. A., Navarro, D., Alonso, R., Garcia, J. R., Monterde, F., Hernandez, P., Llorente, S., Garde I., 2008, The domestic induction heating appliance: an overview of recent research, Twenty-Third Annual IEEE Applied Power Electronics Conference and Exposition, Acero, J., Burdio, J. M., Barragan, L. A., Puyal, D., Alonso, R., 2005, Frequencydependent resistance in Litz-wire planar windings for all-metal domestic induction heating appliances, Twentieth Annual IEEE Applied Power Electronics Conference and Exposition, 2, Achara, P., Viriya, P., Matsuse, K., 2007, Analysis of a half bridge inverter for a small size induction cooker using positive-negative phase shift control under ZVS and non-zvs operation, PEDS, Adler, M. S., 1974, A field theoretical approach to magnetic induction heating of thin circular plates, IEEE Trans. on Magnetics, MAG-10( 4), Barragan, L.A., Burdio, J.M., Artigas, J.I., Navarro, D., Acero, J., Puyal, D., 2005, Efficiency optimization in ZVS series resonant inverters with asymmetrical voltage-cancellation control, IEEE Trans. Power Electronics, 20(5),

2 Bibliography 117 Basu, S., Srivastava, K. D., 1969, Electromagnetic forces on a metal disk in an alternating magnetic field, IEEE Trans. on Power Apparatus and Systems, PAS-88 (8), Bennet E., Larson, S. C., 1988, Effective resistance of alternating currents of multi layer winding, Trans. Amer. Inst. Elect. Eng., 3, Bertoli, M., Noferi, N., Reatti, A., Kazimierczuk, M.K., 1996, Modeling winding losses in high frequency power inductors, World Sci. J. Circ., Syst., Comput., (Special issue on Power Electronics, Part II), 5, Brown, G. H., Hoyler, C. N., Bierwirth, R. A., 1947, Theory and application of radio-frequency heating. New York, D. Van Nostrand Company, Inc., LCCN Burdio, J. M., Barragan, L. A., Monterde, F., Navarro, D., Acero, J., Martinez, A., 2004, Asymmetrical voltage-cancellation control for full bridge series resonant inverters, IEEE Trans. Power Electronics, 19(2), Burdio, J. M., Monterde, F., Garcia, J. R., Barragan, L.A., Martinez, A., 2005, A two-out put series resonant inverter for induction-heating cooking appliance, IEEE Trans. Power Electronics, 20(4), Calleja H., Ordonez, R., 1999, Improved induction heating inverter with power factor correction, 30 th annual IEEE Power electronics Specialist Conference, Canway, J.T., 2010, Inductance calculations for circular coils of rectangular cross section and parallel axes using Bassel and Struve functions, IEEE Trans. on Magnetics, 46(1). Cheng, K. W. E., 2000, Computation of ac resistance of multi stranded conductor inductors with multi layers for high frequency switching converters, IEEE Transactions on Magnetics, 36(4). Cheng, K. W. E., Evans, P. D., 1994, Calculation of winding losses in high frequency toroidal inductors using single strand conductors, IEE Proc. Of Power Electronic Applications, 141(2),

3 Bibliography 118 Cohen, I., 1993, Evaluation and comparison of power conversion topologies, European Power Electronics Conf. (EPE) Rec., Curtis, F.W., 1950, High frequency induction heating, Mc.Graw Hill. Dawson, F. P., Jain, P., 1990, Systems for induction heating and melting applications: a comparison of load commutated inverter, 21st Annual IEEE Power Electronics Specialists Conference,,, Dawson, F. P., Jain, P., 1991, A comparison of load commutated inverter system for induction heating and melting applications, IEEE Trans. Power Electronics, 6(4), Dowell, P. L., 1966, Effects of eddy currents in transformer winding, Proc. Inst. Elect. Eng., 113, Ferreira, J. A., 1989, Electromagnetic modeling of Power Electronic Converters. Kluwer Academic Publishers, Boston, MA. Ferreira, J. A., 1992, Analytical computation of ac resistance of round and rectangular litz wire windings, IEE Proceedings-B Electric Power Applications, 139(1), Ferreira, J. A., 1994, Improved analytical modeling of conductive losses in magnetic components, IEEE Trans. Power Electronics, 9, Forest F., Laboure E., Costa F. and Yves J., 2000, Principle of a multiload/ single converter system for low power induction heating, IEEE trans on Power Electronics, vol. 15, no. 2, p.p Kopp, W. P., Forensic Research Document, A. R. E. C., Research Operations, TO61-7R10/10-77F05, Release Priority: Class I ROO1a. Garcia, J.R., Garcia, J.A., 1999, Improved coil for induction heating, European patent EP A2. Haimbaugh, R.E., 2001, Practical Induction heat treating, ASM International. Hartshorn, L., 1949, Radio-frequency heating. London, G. Allen & Unwin, LCCN

4 Bibliography 119 Health Freedom Resources Public Awareness Announcement #1, 12 June 2000, ( Hernandez, P., Monterde, F., Garcia, J. R., Burdio, J.M., 1998, Power loss optimization of foil coils for induction cooking, IEEE Industrial Electronics Soc. Conf. (IECON) Rec., Hobson, L., Tebb, D.W., 1985, Transistorised power supply for induction heating, Int. Journal of Electronics, 59, Hobson, L., Tebb, D.W., Turnbull, F.G., 1985, Dual element induction cooking unit using power MOSFETs, Int. Journal Electronics, 59(6), Hsieh, G.C., Wang, C.M., 1997, One-cycle controlled half-bridge series-resonant DC to AC inverter with reduced conduction loss, IEEE Industrial Electronics Society Annual Conference, vol.2, pp Hurley W.G., Kassakian, J.G., 1979, Induction Heating of Circular Ferromagnetic Plates, IEEE Trans. on Magnetics, vol. MAG-15, no. 3, pp Hu, J., Sullivan, C. R., 1998, Optimization of shapes for round wire high frequency gapped inductor windings, IEEE Industry Applications Society Annual Meetings, Jana, N.,, Sadhu, P. K., Chakrabarti, R. N., 2004, A novel high-frequency mirror inverter for industrial induction heating, Journal of Indian Institution of Industrial Engineering, Navi Mumbai; XXXIII (11), Jung, Y.C., 1999, Dual half bridge series resonant inverter for induction heating applications with two loads, Electronics letters, 35(16), Kamli, M., Yamamoto S., Abe, M., 1996, A khz half bridge inverter for induction heating application, IEEE Trans Industrial Electronics, 43(1), Koertzen, H. W. E., Van Wyk, J. D., Ferreira, J. A., 1992, An investigation of the analytical computation of inductance and ac resistance of heat-coil for induction cookers, Industry Applications Society Annual Meeting, 1,

5 Bibliography 120 Koertzen, H. W., VanWyk J. D., Ferreira, J. A., 1995, Design of the half bridge series resonant converter for induction cooking, IEEE Power Electronics Specialists Conf. (PESC) Rec., Kothari D. P., Nagrath I. J., 2003, Modern power system analysis, TMH, New Delhi. Kwon, Y.S., Yoo, S., Hyun, D., 1999, Half bridge series resonant inverter for induction heating applications with load adaptive PFM control strategy, IEEE Applied Power Electronics Conf. (APEC) Rec., Laboure E., Costa, F. F., Gaspard, I. J., 2000, Principle of a multi load single converter system for low power induction heating, IEEE Trans. Power Electronics, 15(2), Langton, L. L., 1949, Radio-frequency heating equipment, with particular reference to the theory and design of self-excited power oscillators. London, Pitman, LCCN Leisten, J.M., Hobson, L., 1990, A parallel resonant power supply for induction cooking using a GTO, IEEE Int. Conf. on Power Electronics and variable Speed Drivers (PEVSD) Rec., Llorente, S., Monterde, F., Burdio, J. M., Acero, J., 2002, A comparative study of resonant inverter topologies used in induction cooker, IEEE Applied Power Electronics Conf. (APEC) Rec., Lotfi A. W., Lee F. C., 1993, A high frequency model for litz wire for switch mode magnetic, IAS Annual Meeting, 2, Lu, Y., Cheng, K.W.E., Chan, K. W., Sun, Z. G., Zhao, S. W., 2009, Development of a commercial Induction cooker, 3 rd Int. Conf. on Power Electronics System and Applications. Lucica, O., Burdio J.M., Barragan L.A., Acero. J., Millan. I., 2010, Series resonant multi-inverter for multiple induction heaters, IEEE trans. on Magnetics, vol.24, no.11, pp

6 Bibliography 121 Moisseev, S., Muraoka, H., Kakumura, M., Okuno, A., Hiraki, E., Nakaoka, M., 2003, Zero voltage soft switching PWM high frequency inverter using IGBTs for induction heated fixing roller, IEEE proc. Electric Power Application, 150(2), Murgatroyd, P. N., 1989, Calculation of proximity losses in multi stranded conductor bunches, IEE Proc. A, 136(2), Nan, X., Sullivan, C. R., 2005, A two-dimensional equivalent complex permeability model for round wire windings, IEEE Power Electronics Specialists Conference, Nan, X., Sullivan, C. R.,, 2003, An improved calculation of proximity effect loss in high frequency windings of round conductors, IEEE Power Electronics Specialists Conference, NEXUS Magazine, Volume 2, #25 (April-May '95). Originally printed from the April 1994 edition of Acres, USA. ( Omori, H., Yamasita, H., Nakaoka M., Maruhashi, T., 1985, A novel type induction heating single ended resonant inverter using new bipolar Darlingtontransistors IEEE Power Electronics Specialists Conf. (PESC) Rec., Pal, N., Sadhu, P. K., Chakrabarti, R. N., 2006, A Comparative Study of HF Mirror Inverter for Induction Cooker through Real-time and PSPICE Simulation Journal of Institution of Engineers (I); 86, Park, N.J., Lee, D.Y., Hyun, D.S., 2007, A power control scheme with constant switching frequency in class-d inverter for induction heating jar application, IEEE Trans. on Industrial Electronics, 54(3), Perry, M. P., 1979, Multiple layer series connected winding connected winding design for minimum losses, IEEE Trans. Power App. Syst., PAS-98, Podoltsev, A. D., Kucheryavaya, I. N., Lebedev, B. B., 2003, Analysis of effective resistance and eddy current losses in multiturn winding of high frequency magnetic components, IEEE Transactions on Magnetics, 39(1),

7 Bibliography 122 Pradeep, M. Bhagwat., 1984, Hybrid inverter, US patent no Quan Richard, 1992, M.D., Dallas, Texas, "Effects of Microwave Radiation on Anti-infective Factors in Human Milk" - Journal Pediatrics, vol. 89, no. 4. Rilly, G., 1988, Schaltung zur stromversorgung einer induktiven koschstelle, European patent A2. Sadhu, P. K., Mukherjee, S. K., Chakrabarti, R.N., Chowdhury, S. P., Karan, B. M., 2001a, A new generation microprocessor based series resonant inverter for induction heated cooking appliances, Journal of Indian Institution of Industrial Engineering, Navi Mumbai; Vol XXX (9), Sadhu, P. K., Mukherjee, S. K., Chakrabarti, R.N., Chowdhury, S. P., Karan, B. M., 2001b, Microprocessor based energy efficient sterilization for surgical instrument using a new generation inverter topology, Journal of Energy, Heat & Mass Transfer, Asia and the Pacific, Vol 23, Number 1, pp Sadhu, P. K., Chakrabarti, R. N., Chowdhury, S. P., 2002a, A new generation fluid heating in non metallic pipe line using BJT and IGBT, Journal of Institution of Engineers (I), vol. 82, P.P Sadhu, P. K., Mukherjee, S. K., Chakrabarti, R.N., Chowdhury, S. P., Karan, B. M., 2002b, High efficient contamination free clean heat production, Journal of Engineering & Material Sciences, National Institute of Science Communication, New Delhi; 9, Sadhu, P.K., Chakrabarti, R. N., Nath, N. L., Batchu, N. K., Kumari, S., Rimjhim, K., 2004, Analysis of a series resonant superimposed inverter applied to induction heating, Journal of Institution of Engineers (I), 84, Sadhu, P.K., Jana, N., Chakrabarti, R. N., Mitra, D. K., 2005, A unique induction heated cooking appliances range using hybrid resonant converter, World Scientific journal of circuits, systems and computers, 14(3). Sadhu, P. K., Chakrabarti, R. N., Chowdhury, S. P., 2008, A cooking apparatus using high frequency induction heating, Patent Number dated 12/03/2008, Patent Office- Government of India.

8 Bibliography 123 Sadhu, P. K., Chakrabarti, R. N., Chowdhury, S. P., 2010, An improved inverter circuit arrangement, Patent Number , Patent Office, Government of India. Sen, P. C., 1998, Modern Power electronics Converter, First Edition, Wheeler publishers, New Delhi, India. Shields, J. P., 1969, Abc's of radio-frequency heating, 1st Ed., Indianapolis, H. W. Sams, LCCN Sovie, R. J., Seikel, G. R., 1967, Radio-frequency induction heating of lowpressure plasmas, NASA technical note. D-4206; Prepared at Lewis Research Center, USA. Sugimura, H., Omori, H., Kwon, S. K., Lee, H. W., Nakaoka, M., 2006, High efficiency discrete pulse modulation controlled high frequency series load resonant soft switching inverter for induction heated fixing roller, IEEE Power Electronics Specialists Conf. (PESC) Rec., Sullivan, C. R., 1999, Optimal choice for number of strands in a Litz-wire transformer winding, IEEE transaction on Power Electronics, 14(2), Tang, X., Sullivan, C. R., 2004, Optimization of stranded-wire windings and comparison with Litz wire on the basis of cost and loss, IEEE Power Electronics Specialists Conference, Thompson. J., 2003, hsiweb@agoramail.net, Health Sciences Institute e-alert, ( Tourkhani F., Viarouge, P., 2001, Accurate Analytical Model of Winding Losses in Round Litz Wire Windings, IEEE Transactions on Magnetics, 37(1), Wang, S., et al., 1998, Induction heated cooking appliance using new quasiresonant ZVS-PWM inverter with power factor correction, IEEE Trans Industry Applications., 34(4), Watanabe F, Takenaka S, Abe K, Tamura Y, Nakano Y., 1998, Comparison of a microbiological assay and a fully automated chemiluminescent system for the

9 Bibliography 124 determination of vitamin B 12 in food, Journal of Agriculture and food chemistry, ACS Pub. vol. 46, no. 4, p.p Wheeler, H. A., 1928, Simple inductance formulas for radio coils, Proc.of I.R.E., 16. Wheeler, H. A., 1942, Formulas for the skin effect, Proceedings of I.R.E., 30, Yutaka, A., Kazuo, H., 1985, Litz wire for degreasing skin effect at high frequency, United States Patent Zinn, S., Semiatin, S.L., 1988, Element of Induction Heating: Design, Control and Applications, ASM International. **********

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