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Circuit Theoretic Considerations of LED Driving: Voltage-Source Versus Current-Source Driving

机译:LED驱动的电路理论考虑因素:电压源与电流源驱动

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Light-emitting diodes (LEDs) are solid-state devices with specific v-i characteristics. In this paper, we study the basic requirement of the driving circuits and discuss the proper approach to drive LEDs in view of their characteristics. We compare voltage source driving and current source driving, and discuss their relative advantages and constraints. We specifically introduce the use of circuit duality principle for developing new current-source-mode (CSM) drivers that are less known but are theoretically more versatile compared to their conventional voltage-source-mode counterparts. The study highlights the effects of the choice of driving circuits in terms of the number and size of circuit components used, duty cycle variation, sensitivity of control, nonlinearity and control complexity of LED drivers. We propose a CSM single-inductor multiple-output (SIMO) converter, which demonstrates the advantage of having inductorless and easily controlled current-source drivers, and present a comparison of the CSM SIMO converter with the existing SIMO converters. We further illustrate that a high-voltage-step-down ratio can be naturally achieved by the CSM high-voltage-step-down converter without the use of transformers. This paper presents a systematic and comparative exposition of the circuit theory of driving LEDs, with experimental evidence supporting the major conclusions.
机译:发光二极管(LED)是具有特定V-I特性的固态设备。在本文中,我们研究了驱动电路的基本要求,并鉴于其特征来讨论驱动LED的适当方法。我们比较电压源驱动和电流源驱动,并讨论它们的相对优势和约束。我们具体介绍了电路二元原理的使用,用于开发较少已知的新电流 - 源模式(CSM)驱动器,而是与其传统的电压源模式对应物相比理论上更通用。该研究强调了在所使用的电路元件的数量和尺寸,占空比变化,控制的敏感度,LED驱动器的控制复杂性方面选择驾驶电路的影响。我们提出了一个CSM单电感器多输出(SIMO)转换器,其演示了具有无电感和易于控制的电流驱动器的优点,并与现有SIMO转换器一起提供CSM SIMO转换器的比较。我们进一步说明了CSM高压降压转换器可以自然地实现高压降压比而不使用变压器。本文介绍了驾驶LED电路理论的系统和比较阐述,实验证据支持主要结论。

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