Single-phase single-stage high DC voltage multiplier converter

Muhammad, K.S. and Omar, A.M. and Mekhilef, Saad (2005) Single-phase single-stage high DC voltage multiplier converter. In: 2005 IEEE International Conference on Industrial Technology, ICIT 2005, Hong Kong.

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Abstract

This paper proposed a single-phase single-stage high DC voltage Multiplier converter. The convertion of high DC voltage converter without a DC-link is involved. A high frequency transformer using ETD 59 ferrite core with ratio 1:1 is used as energy storage and also providing isolation. Cockcroft-Walton circuit is connected at secondary side of the transformer. AC input is controlled by IGBT switch which the current flow in both directions of the transformer to fully utilize the transformer core. The current flow is controlled by the IGBTs using PWM technique. Experimental and simulation results are provided to show the effectives of the proposed technique.

Item Type: Conference or Workshop Item (Paper)
Additional Information: Conference code: 69287 Cited By (since 1996): 1 Export Date: 16 November 2012 Source: Scopus Art. No.: 1600753 CODEN: 85RSA doi: 10.1109/ICIT.2005.1600753 Language of Original Document: English Correspondence Address: Muhammad, K.S.; Faculty of Electrical Engineering, Universiti Teknologi MARA, 40450 Shah Alam, Selangor, Malaysia References: Rahim, N.A., And Omar, A.M., Three-phase Single-Stage High-Voltage DC Converter (2002) IEE Proceedings Generation, Transmission and Distribution, 149 (5), pp. 505-509. , Sept; Wang, J., Dunford, W., Mauch, K., A Comparison Between Some Proposed Boost Topologies and Conventional Topologies In Discontinuous Inductor Current Mode (1996) Proceeding of 22 nd annual IEEE international Conference on Industrial Electronic, control and instrumentation (IECON), 3, pp. 1524-1529; Lopez, O., Garcia De Vicuna, L., Matas, J., Castilla, M., and Lopez, M.: A New Family of Single-Stage High Power-Factor AC/DC Converters, Proceeding of 31 st annual IEEE Power Electronic Specialist Conference. (PESC) 2000, 3, pp. 1445-1450Lu, Z., Chen, H., Qian, Z., Green, T.C., An Improved Topology of Boost Converter with Ripple-Free Input Current (2000) Proceedings of 15 th annual IEEE Applied Power Electronics Conference and Exposition, 1, pp. 528-532. , APEC; Iqbal, S., A three-phase Symmetrical Multistage Voltage Multiplier (2005) IEEE Power Electronics Letters, 3 (1), pp. 30-33. , March; Bellar, M.D., Watanabe, E.H., Mesquita, A.C., Analysis of the Dynamic and Steady-state performance of Cockcroft-Walton Cascade Rectifiers (1992) IEEE Transactions on Power Electronics, 7 (3), pp. 526-534. , July; Wismer, M.G., Steady-state Operation of a High-voltage Multiresonant Converter in a High-Temperature Environment (2003) IEEE Transactions on Power Electronics, 18 (3), pp. 740-748. , May; Holtz, J., Pulsewidth modulation for electronic power conversion (1994) Proceedings of the IEEE, 82 (8), pp. 1194-1214. , Aug; The Programmable Logic Data Book, Xilinx Databook, 1998C.T.Baldwin M.A. M.I.E.E.'Fundamentals of Electrical Measurement', Harrap, London, 1961Naidu, M.S., Kamaraju, V., (1995) High Voltage Engineering, , TAtA McGraw Hill, Second Edition
Uncontrolled Keywords: Harmonic compensation, PWM, Single phase active filter, Computer simulation, Electric transformers, Energy storage, Harmonic analysis, High frequency transformers, Pulse width modulation, Switching systems, Cockcroft Walton circuits, Current flow, Single phase active filters, Electric converters.
Subjects: T Technology > TA Engineering (General). Civil engineering (General)
T Technology > TK Electrical engineering. Electronics Nuclear engineering
Divisions: Faculty of Engineering
Depositing User: Mr Jenal S
Date Deposited: 18 Feb 2013 02:19
Last Modified: 25 Oct 2019 03:46
URI: http://eprints.um.edu.my/id/eprint/4905

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