A single-stage LED tube lamp driver with input-current shaping for energy-efficient indoor lighting applications

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Abstract

This study proposes a single-stage light-emitting diode (LED) tube lamp driver with input-current shaping for T8/T10-type fluorescent lamp replacements. The proposed AC-DC LED driver integrates a dual-boost converter with coupled inductors and a half-bridge series-resonant converter with a bridge rectifier into a single-stage power conversion topology. This paper presents the operational principles and design considerations for one T8-type 18 W-rated LED tube lamp with line input voltages ranging from 100 V rms to 120 V rms. Experimental results for the prototype driver show that the highest power factor (PF = 0.988), lowest input current total harmonic distortion (THD = 7.22%), and highest circuit efficiency (η = 92.42%) are obtained at an input voltage of 120 V. Hence, the proposed driver is feasible for use in energy-efficient indoor lighting applications.

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Cheng, C. A., Chang, C. H., Cheng, H. L., Chung, T. Y., Tseng, C. H., & Tseng, K. C. (2016). A single-stage LED tube lamp driver with input-current shaping for energy-efficient indoor lighting applications. Journal of Power Electronics, 16(4), 1288–1297. https://doi.org/10.6113/JPE.2016.16.4.1288

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