An Electrical Cathode Model of a High Pressure Sodium Lamp

Jose L Tapia, Joel O. Pacheco Sotelo, E. Díaz Rodríguez, Yulia Nikolaevna Ledeneva, Rene Arnulfo Garcia Hernandez
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Abstract

An electrical cathode model (ECM) of a high pressure sodium lamp (HPS) based on physical laws has been developed. The proposed ECM calculates the instantaneous voltage drop in a cathode sheath and the temperature distribution inside the cathode using as input parameter the cathode geometry and the positive column current. The model is based on the electrode heat transport equation, solved using the finite elements method. It is found that the ECM predicts in a satisfactory way the cathode voltage drop over a wide range of work conditions. The obtained results were compared with those reported in the current literature. It can be concluded that the ECM is a useful tool in understanding the interaction between the positive column and the cathode in order to improve, for instance, HPS lamp ballast designs.
高压钠灯的电阴极模型
建立了基于物理定律的高压钠灯电阴极模型。所提出的ECM计算阴极护套中的瞬时电压降和阴极内部的温度分布,使用阴极几何形状和正柱电流作为输入参数。该模型基于电极传热方程,采用有限元法求解。结果表明,在较宽的工作条件下,ECM能较好地预测阴极电压降。所得结果与现有文献报道的结果进行了比较。可以得出结论,ECM是了解正极柱和阴极之间相互作用的有用工具,以改进HPS灯镇流器的设计。
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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