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Design and Implementation of Power Drive Controllers for LED Strings

机译:LED灯串电源驱动控制器的设计与实现

摘要

In this thesis, design and implementation of power drives for light-emitting diode (LED) strings is investigated. We particularly focus on design methods for minimizing the size of output filter capacitor in flyback LED drivers. To this end, a novel constant power drive technique was developed to achieve better LED light regulation compared with the constant current technique. We present a filter capacitor minimization algorithm and applying it to an integrated buck-boost/flyback LED driver to achieve a long lasting LED driver. Minimization of the filter capacitor in an ac-dc flyback converter is investigated by utilizing a descent algorithm. The algorithm was proposed using a relationship between input current harmonics and LED electrical and photometric characteristics. The performance of the proposed algorithm in terms of filter capacitor minimization was experimentally verified to achieve input power factor correction along with meeting light flicker requirements. Furthermore, a primary-side constant power drive technique is proposed by utilizing a novel LED power estimation technique and an inner-outer-loop control structure. The proposed technique was implemented on an ac-dc flyback converter to attain simultaneous input power factor correction and LED light regulation. The enhanced performance of LED light regulation for the proposed technique is experimentally verified for different ambient temperatures and compared with the constant current drive method. The above filter capacitor minimization algorithm was utilized and experimentally tested in an ac-dc integrated buck-boost/flyback converter. Utilizing this algorithm, the size of the required filter capacitors can be significantly reduced.
机译:本文研究了发光二极管(LED)灯串的电源驱动器的设计与实现。我们特别专注于最小化反激式LED驱动器中输出滤波电容器尺寸的设计方法。为此,与恒定电流技术相比,开发了一种新颖的恒定功率驱动技术以实现更好的LED光调节。我们提出了一种滤波电容器最小化算法,并将其应用于集成的降压-升压/反激式LED驱动器,以实现持久的LED驱动器。利用下降算法研究了AC-DC反激式转换器中滤波电容器的最小化。该算法是根据输入电流谐波与LED电气和光度特性之间的关系提出的。实验证明了所提算法在滤波电容器最小化方面的性能,以实现输入功率因数校正以及满足光闪烁的要求。此外,通过利用新颖的LED功率估计技术和内外环控制结构,提出了初级侧恒定功率驱动技术。所提出的技术在AC-DC反激式转换器上实现,以实现同时的输入功率因数校正和LED调光。对于不同的环境温度,通过实验验证了所提出技术的LED光调节性能增强,并与恒流驱动方法进行了比较。利用上述滤波电容器最小化算法,并在ac-dc集成降压-升压/反激转换器中进行了实验测试。利用该算法,可以大大减少所需滤波电容器的尺寸。

著录项

  • 作者

    Shagerdmootaab Ali;

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  • 年度 2015
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