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Design and analysis of LCC resonant network for quasi-lossless current balancing in multistring AC-LED array

机译:用于多串AC-LED阵列的准无损电流平衡的LCC谐振网络的设计和分析

摘要

Multistring arrays of LED are increasingly used for high-luminance lighting applications. The parallel connection of multiple LED strings, however, gives rise to the issue of current balancing between the strings, as a common voltage applied to them does not guarantee an equal current sharing due to the manufacturing spread in electrical properties. In relation to the need of current balancing, the emergence of AC-LED has enabled a direct driving of LED with ac voltage/current, and capacitors, whose impedance are designed to dominate over the equivalent resistance of LED string, are employed to achieve quasi-lossless current balancing. Although high-efficiency resonant inverters represent an ideal choice for driving AC-LED, their properties tend to be changed significantly by the addition of current-balancing capacitors, which necessitates a reformulation of the conventional design approach. In this paper, the characteristics of an LCC resonant network, which is based on the conventional parallel resonant network and modified by the addition of current-balancing capacitors, are analyzed in depth, and a systematic design procedure for developing an LCC-based resonant inverter with current balancing is formulated. A 100-W prototype is constructed and its performance is tested to verify the proposed design procedure. It is also shown that, with the proposed LCC resonant network, the inverter is capable of reconfiguring itself and operating stably in the case of LED failures.
机译:LED的多串阵列越来越多地用于高亮度照明应用。然而,多个LED串的并联连接引起了串之间的电流平衡的问题,因为由于电特性的制造差异,施加于它们的公共电压不能保证均流。考虑到电流平衡的需要,AC-LED的出现使交流电压/电流可以直接驱动LED,并且采用阻抗被设计为超过LED串等效电阻的电容器来实现准电流。 -无损电流平衡。尽管高效谐振逆变器是驱动AC-LED的理想选择,但其性能往往会因添加电流平衡电容器而发生显着变化,这需要重新设计常规设计方法。在本文中,深入分析了基于传统并联谐振网络并通过添加电流平衡电容器进行修改的LCC谐振网络的特性,并开发了开发基于LCC的谐振逆变器的系统设计程序制定电流平衡。构建了一个100 W的原型,并对其性能进行了测试,以验证所提出的设计程序。还显示出,通过提出的LCC谐振网络,逆变器能够重新配置自身并在LED故障的情况下稳定运行。

著录项

  • 作者

    Loo KH; Lai YM; Tse CK;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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