应用正交阵列法设计自激电子镇流器

C. Moo, H. Yen, H. Cheng, C. Lee
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引用次数: 3

摘要

提出了一种实用、高效的日光灯电子镇流器自激驱动电路设计方法——连续正交阵列法。将待测电子镇流器的电路参数作为正交阵列中的控制变量,根据实验测试得到的电路性能计算各控制变量对应的平均效应。根据推理规则,将平均效应作为观测指标,为后续正交阵列调整控制变量的水平。通过对连续正交阵列的逐步操作,缩小电路参数的适用范围,进而逼近输出性能理想的区域。以自激串联谐振型逆变器电子镇流器为例,说明了设计过程和推导规律。在设计示例中,我们可以从5个正交阵列操作步骤中找到8种具有期望输出性能的电路参数组合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The implementation of orthogonal array method on designing self-excited electronic ballast
A pragmatic and efficient method using consecutive orthogonal arrays is proposed for designing a fluorescent lamp electronic ballast with a self-excitation driving circuit. The circuit parameters of the electronic ballast to be determined are assigned as the control variables in the orthogonal arrays, and the average effects corresponding to each control variable are calculated from the circuit performances which are obtained from experimental tests. In accordance with the inferential rules, the average effects are used as the observational indexes to adjust the levels of the control variables for the subsequent orthogonal array. Through manipulating consecutive orthogonal arrays step by step, the applicable ranges of circuit parameters are shrunk, and then the region with desired output performances can be approached. The design procedure and the inferential rules are illustrated by an example of the electronic ballast with the self-excited series resonant inverter. In the design example, one can find 8 combinations of circuit parameters with the desired output performances from 5 steps of orthogonal array manipulation.
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