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High-Performance CLL Resonant Multi-Channel LED Driver for Lighting Application

机译:用于照明应用的高性能CLL谐振多通道LED驱动器

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This paper presents a multi-channel, current-balancing coordinated light-emitting diode (LED) driver that employs a primary buck converter and a secondary two-stage CLL resonant-based inverter. The proposed LED driver is engineered with a switch-mode voltage regulator that maintains high power dissipation, controls current-carrying capacities respecting to load using half-bridge inverter coupled to a CLL resonant tank, and pose operating cycle uniformity at multiple current source outputs by cascaded balance capacitor-based transformers with voltage-doubler architectures. Conjointly, utilization of high switching frequency (282.7kHz) is endorsed to curtail current ripple deviations and stimulate balanced current distribution based on load capacities. Using PSIM simulation environment, the proposed multi-channel LED driver is evaluated to view its performance against dynamic installation of multi-stringed LEDs connected at variegated capacities. Succeedingly, development of a hardware prototype is annexed. The acquired simulation and hardware tests' results have validated optimal coordination of current distributions for unbalanced loads (LEDs) across multiple channels.
机译:本文介绍了一种多通道,电流平衡协调的发光二极管(LED)驱动器,采用主降压转换器和次级两级CLL谐振的逆变器。所提出的LED驱动器设计利用开关模式电压调节器,保持高功率耗散,使用半桥逆变器耦合到CLL谐振箱的半桥逆变器对负载的电流承载能力,并在多电流源输出处姿态操作循环均匀性带电压倍增架构的基于级联的基于电容的变压器。同步,使用高开关频率(282.7kHz)的利用以缩短电流纹波偏差并基于负载容量刺激平衡电流分布。使用PSIM仿真环境,评估所提出的多通道LED驱动器,以防止其在仪器上连接的多弦光型LED的动态安装性能。成功地,并列了硬件原型的开发。获取的模拟和硬件测试的结果已验证了在多个通道上的不平衡负载(LED)的电流分布的最佳协调。

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