Using a power-dependent small-signal model for stability analysis in resonant dimming ballasts for fluorescent lamps

J. Ribas, R. E. Díaz, A. Calleja, J. Alonso, E. Lopez-Corominas, M. Rico-Secades, D. Gacio
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引用次数: 5

Abstract

One important aspect for the design of dimming ballasts for fluorescent lamps is the output power range that can be obtained. Some applications require that the output power can be reduced below 10%. However, in some ballast designs, there is no easy way to reduce the output power to the required minimum level without finding instabilities that could lead to light flicker, audible noise or arc extinction. In this paper, a new power-dependent small-signal model for fluorescent lamps is presented. This model is based in a double-pole double-zero approximation. The generalized multifrequency averaging technique is then used to analyze the lamp-ballast interaction in resonant inverters. This method was used to calculate the actual dimming range in two of the most widely used resonant configurations for a 26W compact fluorescent lamp.
用功率相关的小信号模型分析荧光灯谐振调光镇流器的稳定性
荧光灯调光镇流器设计的一个重要方面是可以获得的输出功率范围。一些应用要求输出功率可以降低到10%以下。然而,在一些镇流器设计中,没有简单的方法可以将输出功率降低到所需的最低水平,而不会发现可能导致光闪烁、可听噪音或电弧熄灭的不稳定性。本文提出了一种新的荧光灯功率依赖小信号模型。该模型基于双极双零近似。然后用广义多频平均技术分析了谐振逆变器中灯-镇流器的相互作用。用该方法计算了一盏26W紧凑型荧光灯在两种最常用的谐振结构下的实际调光范围。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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