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Accurate capacitive current balancing in multistring led lighting systems based on switched-capacitor-controlled LCC resonant network

机译:基于开关电容器控制的LCC谐振网络的多串LED照明系统中的精确电容电流平衡

摘要

The combination of high-frequency ac drive and capacitors offers an attractive passive current balancing solution for multistring light-emitting diodes (LED) lighting systems due to the advantages of compactness, high efficiency, and ease of modularity. Given that frequency-controlled resonant converters are commonly used as high-frequency ac drivers, the conventionally used switching frequency modulation could impair the effectiveness of capacitive balancing as the impedance of the balancing capacitors is a sensitive function of the switching frequency which is constantly varied for the purpose of output voltage regulation. In this paper, a constant-frequency capacitive impedance current balancing method is proposed. Compared to the conventional method, output voltage regulation of resonant converter is achieved by modulating the resonant frequency of resonant tank by switch-controlled capacitor (SCC) technique, which gives rise to constant balancing capacitor's impedance and constant LED current over a wide range of load conditions. Its implementation in an LCC resonant network is studied in this paper and a systematic design procedure of a SCC-based constant-frequency LCC resonant converter is presented. The effectiveness of the proposed method is experimentally verified by a 70-W experimental prototype.
机译:高频交流驱动器和电容器的组合具有紧凑,高效和易于模块化的优点,为多串发光二极管(LED)照明系统提供了一种有吸引力的无源电流平衡解决方案。考虑到频率控制谐振转换器通常用作高频交流驱动器,传统上使用的开关频率调制可能会损害电容平衡的有效性,因为平衡电容器的阻抗是开关频率的敏感函数,而开关频率对于输出电压调节的目的。本文提出了一种恒频电容性阻抗电流平衡方法。与传统方法相比,通过使用开关控制电容器(SCC)技术调制谐振槽的谐振频率,可以实现谐振转换器的输出电压调节,从而在很宽的负载范围内产生恒定的平衡电容器阻抗和恒定的LED电流。条件。研究了其在LCC谐振网络中的实现,给出了基于SCC的恒频LCC谐振变换器的系统设计程序。 70 W实验原型通过实验验证了该方法的有效性。

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