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Turn-On Optimization for Class D Series–Parallel LCC-Type Constant Current High-Power LED Driver Design Based on Traditional Fluorescent Control IC

机译:基于传统荧光控制IC的D类系列-并联LCC型恒流大功率LED驱动器设计的开启优化

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This research investigated a method to optimize the start-up performance of a dimmable light-emitting diode (LED) driver based on half-bridge Class D series–parallel topology. This LED driver is designed for outdoor or high bay applications with 347–480 input voltage. The total maximum output power is 100 W with a wide tunable output current range (from 50 to 800 mA). The wide load range makes it difficult to achieve a start-up time of less than 1 s under each load condition as well as limit the output overshoot level to below 150% by implementing only one set of KI values in the feedback loop. Moreover, in this design, a fluorescent control IC is used due to the cost efficiency of repurposing existing fluorescent ballast manufacturing systems. The start-up sequence of the fluorescent control IC introduces an additional challenge to the start-up design. In order to comply with Energy Star, which requires the output current to reach 75% of its nominal value and also limit the overshoot level, a self-adjusted-duty-cycle control algorithm is designed. This duty-cycle signal generated by measuring the load condition through a secondary side microcontroller is used to determine the switching frequency of the tank. With this method, the start-up performance is greatly improved and meets all requirements.
机译:这项研究研究了一种基于半桥D类串联-并联拓扑优化调光发光二极管(LED)驱动器启动性能的方法。该LED驱动器设计用于输入电压为347–480的室外或高架应用。总最大输出功率为100W,可调的输出电流范围很广(从50到800mA)。较宽的负载范围使其很难在每种负载条件下实现少于1秒的启动时间,并且通过在反馈环路中仅实现一组KI值将输出过冲水平限制在150%以下。而且,在该设计中,由于重新利用现有的荧光镇流器制造系统的成本效率,所以使用了荧光控制IC。荧光控制IC的启动顺序给启动设计带来了额外的挑战。为了符合能源之星(Energy Star)的要求,该技术要求输出电流达到其标称值的75%并限制过冲水平,因此设计了一种自调整占空比控制算法。通过次级侧微控制器测量负载条件而产生的占空比信号用于确定储罐的开关频率。使用这种方法,可以大大提高启动性能并满足所有要求。

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