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Comparison of the EMI Performance of LED PWM Dimming Techniques for LED Video Display Application

机译:LED视频显示应用的LED PWM调光技术的EMI性能比较

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摘要

Light-emitting diode (LED) video displays enclose thousands of LEDs which create the resulting image. LED intensity is regulated using pulse width modulation (PWM). Though the individual LED current is small, the total current consumed is large. Simultaneous switching of a large number of LEDs dimmed by PWM can cause serious electromagnetic interference (EMI). Three LED PWM dimming techniques have been studied for potential EMI. Techniques represent different current pulse positioning in time: the aim of study was to compare the spectrum of current produced in LED video display power supply circuits when discussed techniques are used for pixel intensity control. It was assumed that the produced EMI is proportional to the power supply current. The power supply filter and transient load decoupling capacitors were not taken into account. The uniform and nonuniform pixels' intensities distribution within an image were assumed. Spectrum has been studied on a single pixel and the video display tile containing 16$times$ 32 LEDs. Resulting time diagrams and frequency responses are presented. The results indicate that, despite expected significant advantage of binary PWM methods, in realistic case all methods' performance is similar.
机译:发光二极管(LED)视频显示器封装了成千上万个LED,这些LED产生了最终的图像。使用脉冲宽度调制(PWM)调节LED强度。尽管单个LED电流很小,但消耗的总电流却很大。同时开关大量被PWM调光的LED会导致严重的电磁干扰(EMI)。已经针对潜在的EMI研究了三种LED PWM调光技术。这些技术代表了时间上不同的电流脉冲定位:研究的目的是当将讨论的技术用于像素强度控制时,比较LED视频显示电源电路中产生的电流频谱。假定产生的EMI与电源电流成正比。没有考虑电源滤波器和瞬态负载去耦电容器。假设图像内像素均匀和不均匀的强度分布。已经对单个像素和包含16乘32的LED的视频显示块进行了光谱研究。给出了最终的时间图和频率响应。结果表明,尽管预期二进制PWM方法具有明显的优势,但在实际情况下,所有方法的性能都是相似的。

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