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High efficiency wide input extreme output (WIEO) tapped inductor buck–boost converter for high power LED lighting

机译:高效宽输入极限输出(WIEO)抽头电感器降压-升压转换器,用于大功率LED照明

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摘要

A power factor corrected single switch tapped-inductor buck-boost converter is proposed to achieve improved efficiency in extreme step-up and step-down conditions. This new and modified topology is having diode-tapped and switch-tapped configurations for step-down and step-up modes of operation, respectively. The proposed modified buck-boost converter is designed to operate in critical conduction mode (CrCM) to achieve quasi-resonant operation. Both the buck and boost functionalities of the buck-boost converter are analysed using state space analysis with closed loop stability under varying input and output conditions. Several advantages and necessity of tapped versions are discussed and implemented under wide input and extreme output (WIEO) conditions. Two different prototypes are developed at extreme buck and boost levels to establish the benefits of the proposed arrangements. The efficiency improvement of the proposed converter is compared with the conventional buck-boost converter. The achieved efficiency of diode-tapped buck mode and switch-tapped boost mode is found 95% and total harmonic distortion is observed only 4% at 230 V AC mains for a prototype of 150 W, which is much improved results as compared to the previous research work on the tapped-inductor converter.
机译:提出了一种功率因数校正的单开关抽头电感降压-升压转换器,以在极端的升压和降压条件下实现更高的效率。这种新的和改进的拓扑结构分别具有二极管抽头和开关抽头配置,分别用于降压和升压工作模式。提出的改进型降压-升压转换器设计为以临界传导模式(CrCM)工作,以实现准谐振工作。使用状态空间分析以及在变化的输入和输出条件下具有闭环稳定性的状态分析来分析降压-升压转换器的降压和升压功能。在宽输入和极限输出(WIEO)条件下,讨论并实现了攻丝版本的一些优点和必要性。开发了两种不同的原型,以达到极高的性价比,从而确立了拟议安排的好处。所提出的转换器的效率改进与常规的降压-升压转换器进行了比较。对于150 W的样机,发现二极管抽头的降压模式和开关抽头的升压模式的效率达到95%,而总谐波失真在230 V AC电源下仅观察到4%,与以前的结果相比,结果大大改善了。抽头电感转换器的研究工作。

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