当环境温度变化时用于控制Led光源的电子设备的操作

IF 3.8 Q2 COMPUTER SCIENCE, INFORMATION SYSTEMS
I. Belyakova, Vadim Piscio, P. Maruschak, Oleksandr Shovkun, Volodymyr Medvid, Mariya Markovych
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引用次数: 1

摘要

环境温度显著影响LED的电气和光参数,如正向和反向电流、LED压降和光通量。随着温度的升高,LED辐射强度的降低可以用物理过程来解释,包括由于杂质水平引起的非辐射复合、表面上的复合、异质结构阻挡层中的载流子损失等现象。温度的升高也显著降低了LED和LED器件的使用寿命。驱动器,它允许通过设备电源电压的变化来稳定工作电流,从而产生光通量。但是在各种类型的LED中,当其操作的温度范围改变时,电流稳定并不能导致光通量的稳定。当环境温度在+40…+60°C范围内变化时,即使在电流保持不变的情况下,LED的光通量也会显著降低,正如我们从大多数LED类型的文档中看到的那样。本文分析了温度对电参数和光参数的影响,将不同类型的驱动器作为LED照明设备的一部分,如LED灯和LED聚光灯,以提供可能的建设性解决方案,部分减少或消除LED设备在高温运行条件下的光通量下降问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Operation of Electronic Devices for Controlling Led Light Sources when the Environment Temperature Changes
Ambient temperature significantly affects the electrical and light parameters of LEDs, such as forward and reverse current, voltage drop LEDs and luminous flux. With an increase in temperature, the decrease in the intensity of LED radiation is explained by physical processes, including the phenomena of non-radiative recombination due to impurity levels, recombination on the surface, losses carriers in the barrier layers of heterostructures, etc. The increase in temperature is also significantly reduces the useful life of LEDs and the LED device in general. Drivers, which allows to stabilize the operating current with a change in the supply voltage of the device and, as the result is light flux. But in LEDs of various types, current stabilization does not lead to the stabilization of the light flux when the temperature regime of their operation changes. When changing ambient temperature in the range of +40…+60 °C, the luminous flux of LEDs is significant decreases even in the case when their current is kept constant, as we can see from documentation for most of LED types. An article analyzes the effect of temperature on electrical and light parameters LEDs with different types of drivers as part of LED lighting devices, such as LED lamps and LED spotlights, in order to offer possible constructive solutions for partial reduction or elimination of the decline problem luminous flux of LED devices under conditions of their operation at high temperatures.
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来源期刊
Applied System Innovation
Applied System Innovation Mathematics-Applied Mathematics
CiteScore
7.90
自引率
5.30%
发文量
102
审稿时长
11 weeks
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