In this paper, a high power factor LED driver with hot swap, smart output voltage regulation and dimming control is proposed. The dimming control is used to change LED brightness. During converter is working, the hot ...In this paper, a high power factor LED driver with hot swap, smart output voltage regulation and dimming control is proposed. The dimming control is used to change LED brightness. During converter is working, the hot swap function supply users to remove and insert LED module. The smart output voltage can regulate quickly and rightly output voltage in different number of LED series connection. The system consists two stages, one is 50 W flyback converter which is used as power factor corrector, it is input source is 110-220 V, PF (power factor) is about 0,994. The other is Boost DC/DC converter, it can offer 35-60 V of output voltage. Finally, a prototype has been built and tested. The simulation and experimental results are shown to verify the feasibility of the proposed method.展开更多
逆变器的冗余并联控制技术是实现变流器及不间断电源(Uninterruptible power supply,UPS)等设备高可靠性的关键。逆变器并联的控制方法有很多种,频率电压外特性下垂法存在输出外特性较差等不足;主从法必须依赖主模块工作,没有实现真正...逆变器的冗余并联控制技术是实现变流器及不间断电源(Uninterruptible power supply,UPS)等设备高可靠性的关键。逆变器并联的控制方法有很多种,频率电压外特性下垂法存在输出外特性较差等不足;主从法必须依赖主模块工作,没有实现真正的冗余控制。本文采用了一种适合热插拔的平均电流分布式并联控制策略,并在其基础上加上了负载电流前馈控制技术,提高了输出外特性。分析比较了并联系统在加负载电流前馈技术前后的输出外特性,并研究了并联系统采用优化控制策略后进行热插拔的具体实现过程。在以上并联控制策略的基础上研制了一台三相逆变器并联系统,进行了热插拔实验,真正实现了冗余控制。展开更多
文摘In this paper, a high power factor LED driver with hot swap, smart output voltage regulation and dimming control is proposed. The dimming control is used to change LED brightness. During converter is working, the hot swap function supply users to remove and insert LED module. The smart output voltage can regulate quickly and rightly output voltage in different number of LED series connection. The system consists two stages, one is 50 W flyback converter which is used as power factor corrector, it is input source is 110-220 V, PF (power factor) is about 0,994. The other is Boost DC/DC converter, it can offer 35-60 V of output voltage. Finally, a prototype has been built and tested. The simulation and experimental results are shown to verify the feasibility of the proposed method.
文摘逆变器的冗余并联控制技术是实现变流器及不间断电源(Uninterruptible power supply,UPS)等设备高可靠性的关键。逆变器并联的控制方法有很多种,频率电压外特性下垂法存在输出外特性较差等不足;主从法必须依赖主模块工作,没有实现真正的冗余控制。本文采用了一种适合热插拔的平均电流分布式并联控制策略,并在其基础上加上了负载电流前馈控制技术,提高了输出外特性。分析比较了并联系统在加负载电流前馈技术前后的输出外特性,并研究了并联系统采用优化控制策略后进行热插拔的具体实现过程。在以上并联控制策略的基础上研制了一台三相逆变器并联系统,进行了热插拔实验,真正实现了冗余控制。