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Control of a Merged-Energy-Buffer based Two-Stage Electrolytic-Free Offline LED Driver

机译:基于合并能量缓冲器的两阶段免电解离线LED驱动器的控制

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This paper presents the control techniques used in a high-power-density electrolytic-free offline LED driver that utilizes a merged energy buffer for twice-line-frequency energy buffering. This LED driver comprises two stages: a four-switch buck-boost PFC stage and an LLC resonant dc-dc stage. The proposed control technique for the PFC stage utilizes a novel mode splitter to ensure a smooth buck-to-boost and vice versa mode transition. A feedforward control strategy is proposed for the dc-dc stage, which in conjunction with feedback control, ensures a well-regulated output voltage by mitigating undesirable spikes in it. A 150-W prototype LED driver utilizing a merged energy buffer is tested with the proposed control techniques. This GaN-based prototype achieves a high power density of 50 W/inch3 while replacing electrolytic capacitors with low-energy-density ceramic capacitors.
机译:本文介绍了一种在高功率密度无电解离线LED驱动器中使用的控制技术,该驱动器利用合并的能量缓冲器进行双线频率能量缓冲。该LED驱动器包括两个级:一个四开关降压-升压PFC级和一个LLC谐振DC-DC级。所提出的用于PFC级的控制技术利用一种新颖的模式分配器来确保平滑的降压-升压模式,反之亦然。提出了一种用于dc-dc级的前馈控制策略,该策略与反馈控制相结合,可通过减轻其中的不良尖峰来确保良好调节的输出电压。利用提出的控制技术测试了利用合并式能量缓冲器的150W原型LED驱动器。这个基于GaN的原型实现了50 W / inch \ n 3\n,同时用低能量密度的陶瓷电容器代替电解电容器。

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