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Current-fed isolated PFC pre-regulator for multiple LED lamps with extended lifetime

机译:电流馈电隔离式PFC预调节器,用于延长寿命的多个LED灯

摘要

To emit high-quality LED light, one or a bin of LED lamp(s) is normally driven by a PWM-controlled constant current source to minimize device variation and achieve accurate brightness control. Powered from offline AC mains, the front-end power converters should provide a relatively low DC voltage bus for the inputs of post-end LED current regulators. To match the long lifetime of LEDs, the whole LED driver (ballast) should work as durably as the LEDs. However, the lifetime of the driver is usually limited by the high-voltage electrolytic charge storage capacitors used in conventional PFC pre-regulators. In this paper, our previously proposed resonant current-fed isolated PFC pre-regulator is extended to operate in discontinuous conduction mode (DCM). It allows the use of the low-voltage storage capacitors on the transformer secondary, and therefore extends the overall lifetime of the LED lighting system. A detailed procedure for finding the expected lifetime of the low-voltage electrolytic capacitor is given. As before, the high-voltage stress on the main switches, which is typical in current-fed isolated converters, is reduced substantially by taking advantage of the transformer leakage inductance necessary for resonance. Additionally, high efficiency is ensured by the use of dual non-cascading structures. Steady-state state-space averaging analysis is performed for designing the converter in DCM operation. A prototype converter is built to verify performance of the proposed PFC LED pre-regulator.
机译:为了发出高质量的LED灯,通常由PWM控制的恒定电流源驱动一个或一个LED灯箱,以最大程度地减少设备变化并实现精确的亮度控制。前端电源转换器由离线AC电源供电,应为后端LED电流调节器的输入提供相对较低的DC电压总线。为了匹配LED的长寿命,整个LED驱动器(镇流器)应与LED一样持久地工作。但是,驱动器的寿命通常受常规PFC预调节器中使用的高压电解电荷存储电容器限制。在本文中,我们先前提出的谐振电流馈电隔离式PFC预调节器已扩展为以不连续传导模式(DCM)工作。它允许在变压器次级上使用低压存储电容器,从而延长了LED照明系统的整体寿命。给出了查找低压电解电容器预期寿命的详细过程。如前所述,通过利用谐振所需的变压器漏感,可以大大降低电流馈电隔离式转换器中常见的主开关上的高压应力。另外,通过使用双重非级联结构确保了高效率。进行稳态状态空间平均分析,以在DCM操作中设计转换器。构建了一个原型转换器,以验证所提出的PFC LED预调节器的性能。

著录项

  • 作者

    Qu X; Wong SC; Tse CK;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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