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An Improved LCLC Current-Source-Output Multistring LED Driver With Capacitive Current Balancing

机译:具有电容电流平衡的改进型LCLC电流源输出多串LED驱动器

摘要

Passive or active current balancing circuits are usually used to mitigate current imbalance in driving multiple light-emitting-diode (LED) strings. Passive current balancing schemes adopting capacitors with high reliability, small size and low cost are very popular in many applications. However, the high reactive power of the capacitive balancing scheme with variable frequency control will bring high power stress on the VA rating of the main switches which drive this passive current balancing circuit and decrease the overall efficiency. Fixed frequency control does not permit zero-voltage switching (ZVS) under load variations. Hence, this paper proposes a current-source-output LED driver based on LCLC resonant circuit to provide a constant output current regardless of variations in LED parameters. In the LCLC circuit, the number of additional capacitors is scalable with the number of LED strings for current balancing. Moreover, the input impedance of the improved LCLC circuit is designed to be resistive at the operating frequency to minimize reactive power. The conventional duty cycle control can easily incorporate ZVS. The analysis, implementation and verification are detailed in this paper.
机译:无源或有源电流平衡电路通常用于减轻驱动多个发光二极管(LED)串时的电流不平衡。采用高可靠性,小尺寸和低成本电容器的无源电流平衡方案在许多应用中非常流行。然而,具有可变频率控制的电容性平衡方案的高无功功率会给驱动该无源电流平衡电路的主开关的VA额定值带来高功率压力,并降低整体效率。固定频率控制不允许负载变化时的零电压开关(ZVS)。因此,本文提出一种基于LCLC谐振电路的电流源输出LED驱动器,以提供恒定的输出电流,而与LED参数的变化无关。在LCLC电路中,附加电容器的数量可随用于电流平衡的LED灯串的数量而扩展。此外,改进的LCLC电路的输入阻抗被设计为在工作频率下具有电阻性,以将无功功率降至最低。传统的占空比控制可以轻松合并ZVS。本文详细分析,实施和验证。

著录项

  • 作者

    Qu X; Wong SC; Tse CK;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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