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Noncascading structure for electronic ballast design for multiple LED lamps with independent brightness control

机译:电子镇流器的非级联结构,用于具有独立亮度控制的多个LED灯

摘要

LED light sources, which are more compact, capable to change color in real time, less dissipative, and more durable are finding more applications than conventional light bulbs in domestic, commercial, and industrial environments. However, requirements such as high-power factor, long lifetime, accurate current control, and high-efficiency pose challenges to the design of LED ballast circuits. This paper proposes an LED ballast with a dual noncascading structure. The first-stage noncascading structure is an isolated current-fed power factor correction (PFC) preregulator. In the proposed design, the short-lifetime high-voltage storage capacitor at the primary is replaced by a long-lifetime low-voltage capacitor at the secondary, thus extending the overall system lifetime. The PFC is programmed by the conventional averaged current-mode control for high-power-factor applications. Furthermore, the high-voltage stress on the main switch, which is typical in current-fed converters, is reduced substantially by appropriately exploiting the transformer leakage inductance. The design uses two secondary transformer windings and an LED current driver to form a second noncascading structure to improve efficiency. Multiple noncascading structures can be used for LED lamps for instant independent brightness control. Analysis, design example, and prototype verification are given for the LED ballast.
机译:与传统的灯泡相比,更紧凑的,能够实时改变颜色,更少的耗散且更耐用的LED光源在家庭,商业和工业环境中的应用越来越广泛。但是,诸如高功率因数,长寿命,精确电流控制和高效率等要求给LED镇流器电路的设计带来了挑战。本文提出了一种具有双级联结构的LED镇流器。第一级非级联结构是隔离的电流馈送功率因数校正(PFC)预调节器。在所提出的设计中,初级使用的短寿命高压存储电容器被次级使用的长寿命低压电容器代替,从而延长了整个系统的使用寿命。 PFC由用于高功率因数应用的常规平均电流模式控制进行编程。此外,通过适当利用变压器的漏感可以大大降低电流馈电转换器中典型的主开关上的高压应力。该设计使用两个次级变压器绕组和一个LED电流驱动器来形成第二个非级联结构,以提高效率。多个非级联结构可用于LED灯,以实现即时独立的亮度控制。给出了LED镇流器的分析,设计实例和原型验证。

著录项

  • 作者

    Qu X; Wong SC; Tse CK;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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