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Resonant inverters and their applications to electronic ballasts and high-voltage power conversions

机译:谐振逆变器及其在电子镇流器和高压电源转换中的应用

摘要

Two novel zero-current-switching dc-to-ac inverters: Class-L and Class-M resonant inverters are presented. They are especially suitable for high voltage applications because of their parallel resonant nature. Lamps, particularly fluorescent lamps in the lighting industry, possess a negative impedance feature and require high voltage to start the ignition process, require operating circuits tailored to meet their characteristics. The two inverters are well-suited in these applications. A detailed analysis, systematic design procedure and experimental verification of the two inverters are given. A Fundamental component analysis in the Fourier series expansion is applied for the analysis of the circuits. Steady state characteristics of the inverters, analytically described by the relationship between the output current and voltage are also graphically represented. This provides insight into the characteristics and design of the inverters. The techniques are extended and applied to analyze the zero-voltage-switching Class-D and Class-E resonant inverters. These four inverters form a family of dc-to-ac resonant inverters in terms of input sources and output characteristics. A unique design procedure is also discussed which is made possible from the construction of constant-gain trajectories in the conductance (impedance) plane, where the conductance (impedance) consists of the resonant tank circuit and the load for a given operating frequency. One of the applications of the dc-to-ac inverters is dc-to-dc converter. The Class-D dc-to-dc converters are illustrated as examples. The analytic techniques are also applied to the analysis of the dc-to-dc converters. The flow of the analysis starts with the zero-voltage-switching (ZVS) dc-to-ac inverter and moves to the ZVS dc-to-dc converters, then the ZVS dc-to-dc converters regulated at fixed switching frequency are analyzed, and finally the ZVS dc-to-dc converter is regulated at a fixed switching frequency with a shunt inductor which operates over a wide range of load. A detailed analysis and design procedure for the ZVS Class-D dc-to-dc converter is discussed. An experimental verification of a 1-MHz ZVS Class-D converter is presented. Good agreement is obtained between experimental and theoretical results.
机译:介绍了两种新颖的零电流开关型DC-AC逆变器:L类和M类谐振逆变器。它们具有并联谐振特性,因此特别适合高压应用。灯,特别是照明行业中的荧光灯,具有负阻抗特性,需要高压才能启动点火过程,需要定制满足其特性的工作电路。这两个逆变器非常适合这些应用。给出了这两个逆变器的详细分析,系统设计程序和实验验证。将傅里叶级数展开中的基本成分分析应用于电路分析。还通过图形表示了逆变器的稳态特性,通过输出电流和电压之间的关系进行了分析描述。这可以深入了解逆变器的特性和设计。扩展了该技术并将其应用于分析零电压开关D类和E类谐振逆变器。这四个逆变器在输入源和输出特性方面形成了一系列DC-AC谐振逆变器。还讨论了一种独特的设计程序,该程序可以通过在电导(阻抗)平面中构造恒定增益轨迹来实现,其中电导(阻抗)由谐振回路电路和给定工作频率的负载组成。 DC-AC逆变器的应用之一是DC-DC转换器。以D类DC-DC转换器为例。该分析技术还应用于DC-DC转换器的分析。分析流程始于零电压开关(ZVS)DC-AC逆变器,然后转移到ZVS DC-DC转换器,然后分析以固定开关频率调节的ZVS DC-DC转换器,最后通过并联电感器将ZVS DC-DC转换器调节到固定的开关频率,该电感器可在很大的负载范围内工作。讨论了ZVS D类DC-DC转换器的详细分析和设计过程。提出了一个1MHz ZVS D类转换器的实验验证。实验和理论结果之间取得了很好的一致性。

著录项

  • 作者

    Lin Yung-Lin N. M. I. 1958-;

  • 作者单位
  • 年度 1996
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类

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