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A NOVEL LED DRIVING CIRCUITS DEVELOPMENT FOR DECORATIVE LIGHTING SYSTEM ENERGY SAVING

机译:用于装饰照明系统节能的新型LED驱动电路开发

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The forward current draft with the temperature changes is a characteristic of LED. This research used this characteristic to achieve control optimization of LED by the forward current feedback. Temperature detection through forward current measurements was applied to LED PWM to carry out the best thermal management of LED arrays under temperature variations, which can offer steady illumination and keep constant chromaticity. LED spotlight products are mainly used for lighting show box display to replace the incandescent lamp which has been forbidden by EU from the year of 2009. Such kind of products now is available on the market. However, the illumination decay and chromaticity changes with operation temperature obstruct wide distribution of LED spotlight for decorative lighting systems. The developed technology by this research can be used to control the chromaticity and the illumination of the LED spotlight and a great niche is outward. This research tested various types of LED are provided by different manufacturers, and the database of the changes of LED chip grains against forward current is build. Constant temperature bath was employed to get the curve of forward current and temperature, which will be a basis of forward current feedback and temperature conversions. Self-developed driving circuits were used to control LED to make the relative illumination decays to be less than 5% and the coordinate excursion of Color rendering index on the CIE chromaticity diagram is lower than 0.1. The circuit control of LED spotlight with low difference of illumination and Color rendering index were therefore successfully realized in this study.
机译:温度变化的前进电流牵伸是LED的特征。本研究采用了通过前进电流反馈实现LED的控制优化。通过正向电流测量的温度检测应用于LED PWM,以在温度变化下执行LED阵列的最佳热管理,这可以提供稳定的照明并保持恒定的色度。 LED聚光灯产品主要用于照明展示盒展示,取代欧盟禁止的白炽灯从2009年开始。此类产品现已上市。然而,使用操作温度的照明衰减和色度变化阻碍了用于装饰照明系统的LED聚光灯的广泛分布。该研究的开发技术可用于控制色度和LED聚光灯的照明和伟大的利基是向外的。该研究通过不同的制造商提供了各种类型的LED,并且LED芯片晶粒的变化数据库是对正向电流的构建。恒温浴被采用恒温和温度曲线,这将是正向电流反馈和温度转化的基础。自开发的驱动电路用于控制LED以使相对照明衰减小于5%,CIE色度图上的显色指数的坐标偏移低于0.1。因此,在本研究中成功地实现了具有低差异的LED聚光灯的电路控制。

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