A New Passive Valley Fill Dimming Electronic Ballast with Extended Line Current Conduction Angle

J. Lam, K. Praveen
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引用次数: 7

Abstract

In this paper, a new modified valley fill circuit is proposed to combine with a half-bridge current source resonant inverter as the power circuit for a high power factor valley fill electronic ballast. The proposed circuit is capable to lower the discharge voltage of the valley fill capacitance by inserting another branch of valley fill capacitor in the original circuit. When the capacitors are connected in parallel, the voltage discharged across the capacitors is only one-third of the peak line voltage, which allows the conduction angle of the line current to be further extended so that a lower total harmonic distortion level can be achieved. Another advantage is that the smaller capacitance greatly reduces the current spike demanded at the peak line voltage when compared to the one seen in the conventional valley fill ballasts. The high crest factor problem is also eliminated in the proposed circuit as continuous variable frequency control is employed to continuously regulate the lamp current to stay within a steady envelope. Detailed explanations on the operating principles of the proposed circuit are provided in this paper. Simulation and experimental results are provided to validate with all the theoretical analysis for a 20 W compact fluorescent lamp
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一种新型扩展线路电流传导角无源充谷调光电子镇流器
本文提出了一种新的改进的充谷电路,结合半桥电流源谐振逆变器作为高功率因数充谷电子镇流器的电源电路。所提出的电路通过在原电路中插入另一个谷填充电容分支来降低谷填充电容的放电电压。当电容器并联连接时,电容器间的放电电压仅为线路峰值电压的三分之一,这使得线路电流的传导角进一步扩大,从而达到较低的总谐波失真水平。另一个优点是,与传统的山谷填充镇流器相比,较小的电容大大降低了峰值线电压时所需的电流尖峰。由于采用连续变频控制来连续调节灯电流以保持在稳定的包络内,因此也消除了高波峰因数问题。本文对所提出的电路的工作原理作了详细的说明。最后给出了20 W小型荧光灯的仿真和实验结果,验证了理论分析的正确性
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