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A new current source charge pump electronic ballast having high input power factor and low crest factor

机译:具有高输入功率因数和低波峰因数的新型电流源电荷泵电子镇流器

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The basic current source charge pump power factor correction electronic ballast as proposed in [J. Qian et al., July 1998] has the problem of high lamp current crest factor. Switching frequency modulation has been proposed [J. Qian et al., July 1998] to improve lamp current crest factor. But, the requirement of wide variation of switching frequency makes the design of the ballast complicated. Moreover, in this case the lamp current has to be sensed which increases the hardware requirement and makes the control issue more involved. Here an attempt has been made to improve the lamp current crest factor without modulation the switching frequency. This is achieved by transferring the excess energy of the resonant inductor to the dc bus at the zero crossing instants of the input voltage by employing a high frequency transformer. As the transformer is required to operate at high frequency while having low volt-ampere rating, increment in passive element count is insignificant. The operating principle of the proposed scheme is presented and analysed. The working of the scheme is verified through extensive simulation studies. A laboratory prototype of the ballast is fabricated and the viability of the proposed scheme is conformed through experimental studies.
机译:如[J.]中提出的基本电流源电荷泵功率因数校正电子镇流器钱等人,1998年7月,灯具电流嵴因素有问题。已经提出了开关频率调制[J.钱等人,1998年7月,提高灯电流波峰因素。但是,对开关频率的宽变化的要求使得镇流器的设计复杂。此外,在这种情况下,必须感测灯电流,这增加了硬件要求并使控制问题更多地涉及。这里已经尝试改善灯电流波峰因子而不调制开关频率。这通过采用高频变压器将谐振电感的过量能量传送到输入电压的零交叉时刻来实现。由于变压器需要在高频时在具有低伏伏额定值的同时以高频操作,因此无源元件计数中的增量是微不足道的。提出和分析了所提出的方案的操作原理。通过广泛的模拟研究验证了该计划的工作。制造镇流器的实验室原型,并通过实验研究符合所提出的方案的可行性。

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