International Journal of Electronics and Electrical Engineering IJEEE

ISSN: 2231-5284

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IJEEE

SINGLE STAGE LOW FREQUENCY ELECTRONIC BALLAST FOR HID LAMPS


SUMAN TOLANUR
EEE Dept., SSIT Tumkur

S.N KESHAVA MURTHY
EEE Dept., SSIT Tumkur


Abstract

The paper presents a single-stage high-power-factor electronic ballast for metal halide lamps. The proposed ballast integrates a buck-boost converter, a buck converter and a full-bridge inverter into a single power conversion circuit. The buck-boost converter served as a power factor corrector (PFC) is designed to operate at discontinuous conduction mode (DCM) to achieve nearly a unity power factor at the input line. By adjusting the duty-ratio of the active switches of the PFC, the lamp power is remained at rated value for universal input voltage ranged from 90 Vrms to 264 Vrms. The four active switches of the full-bridge inverter, an inductor and a capacitor form a bidirectional buck converter which supplies a low frequency square-wave currentfor the lamp at to avoid the lamp from happing acoustic resonance. The circuit operation is analyzed in detail to derive the design equations. A prototype electronic ballast for a 70 W metal halide lamp is built and tested.

Recommended Citation

[1] C. M. Huang, T. J. Liang, R. L. Lin, and J. F. Chen, “A novel constant power control circuit for HID electronic ballast,” IEEE Trans. Power Electron., vol. 22, no. 3, pp. 854–862, May 2007.

[2] K. F. Kwok, K. W. Eric Cheng, and Dong Ping, “General Study for Design the HID Ballasts,” in Proc. IEEE ICPESA’06, November 2006, pp. 182-185.

[3] H. J. Faehnrich and E. Rasch, “Electronic Ballasts for Metal Halide Lamps,” J. Illum. Eng. Soc., pp. 131-140, 1988.

[4] M. A. D. Costa, J. M. Alonso, J. Gardesin, and R. S. M., “A Novel Low-Cost Electronic Ballast to Supply Metal Halide Lamps,” in Proc. IEEE IAS, October 2005, vol. 2, pp. 1198- 1204.

[5] Y. T. Huang, S. T. Chen, C. R. Lee, H. J. Li, and L. L. Lee, “Designs and Implementation of the Dimmable Electronic Ballast for Metal-Halide Lamps,” in Proc. IEEE IECON, November 2007, pp. 1352-1356. 

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