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High Power Factor Electronic Ballast with Intelligent Energy Saving Control for Ultraviolet Lamps Drive

机译:具有智能节能控制的高功率因数电子镇流器,紫外线灯驱动

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A new design of high power factor low cost electronic ballast with intelligent energy saving control for water-treatment system ultraviolet lamps (UVL) drive is described in this paper to obtain truly pure and safe drinking water. Accurate knowledge of the characteristics of the UVL is essential for the ballast design. An automatic identification system is developed to obtain the characteristic parameters, the emissive theorem, the dynamic and steady state profiles of the UV lamps with various power ratings. According to the measured characteristics, a half-bridge series-resonant circuit is used to implement the driver topology. In order to design a high performance ballast for UVL drive, a full-automatic general circuit components design platform and post verification system are implemented. Cooperating with the developed graphic user interface (GUI), the design performance and effectiveness can be predicted in this integrated GUI environment through the computer simulation and data computation. The validity of the realized ballast can also be verified using this system. For the purposes of energy-saving, bacteria killing factors, and light lifespan extension, an intelligent green mode control is presented to dim the luminance of the UVL according to the sensed flow and illumination signals. In addition, a warning alarm will be set to alert users when the ballast or lamp is going down.
机译:本文描述了具有智能节能控制的高功率因数低成本电子镇流器具有智能节能控制,以获得真正纯净和安全的饮用水的紫外线灯(UVL)驱动器。准确了解UVL特性对于镇流器设计至关重要。开发了一种自动识别系统以获得具有各种电力额定值的UV灯的特征参数,发光定理,动态和稳态轮廓。根据测量的特性,半桥系列谐振电路用于实现驱动拓扑。为了为UVL驱动器设计高性能镇流器,实现了全自动的通用电路组件设计平台和后验证系统。与开发的图形用户界面(GUI)合作,通过计算机仿真和数据计算可以在该集成的GUI环境中预测设计性能和有效性。也可以使用该系统验证实现镇流器的有效性。出于节能,细菌杀伤因子和光寿命延伸的目的,提出了一种智能的绿色模式控制,以根据感测的流动和照明信号来暗淡UVL的亮度。此外,当镇流器或灯泡下降时,将设置警告警报以提醒用户。

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