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Power conditioning for high voltage pulse applications.

机译:高压脉冲应用的功率调节。

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摘要

This dissertation addresses advances in power conditioning for high voltage pulse applications. In particular an opening switch based on exploding wire technology for inductive energy storage systems, and a rapid capacitor charger for compact marx-generators are discussed. The first section about the exploding wire-fuse opening switch presents basic fuse sizing rules for various fuse materials as well as for a variety of primary energy sources. The basic mechanisms of wire explosion are discussed and a new method to determine the optimum fuse material is proposed. To aid the simulation of circuits involving exploding wires a phenomenological fuse resistance model is presented and a number of results of real data and simulation data are given. Furthermore, a literature survey of a number of important material properties as well as for the integral of current action is presented. Concluding the first section is a discussion of an aqueous-electrolyte load, which also presents resistivity/concentration formulae. The second section of this dissertations concentrates on the rapid capacitor charger developed at the Center for Pulsed Power and Power Electronics at Texas Tech University. Basic charging mechanisms are discussed with an emphasis on capacitor charging utilizing hard switching technology. The basic building blocks of the capacitor charger, the low inductance bus bar with the H-bridge inverter, the controller with an HC12 microprocessor, the high-voltage multi-tap step-up transformer, and the multi-tap full-bridge rectifier are addressed. Tools are provided to estimate optimum frequency, optimum primary turns, and volume for an e-core type transformer in pulse environments. Furthermore, a thermal model for the employed IGBTs is presented to address junction temperature concerns. The implementation of the HC12 microprocessor is addressed and discusses the basic charging principle and, in addition, its assembler-code representation. The impact of different charging-functions like constant, linear, or exponential charging is presented in a number of detailed graphs, including DC-bus voltage, transformer input current, capacitor input current, and capacitor voltage. Concluding the section about the rapid capacitor charger is a presentation of a complex PSpice system model including the DC-bus voltage swing, the switch junction temperature, the non-ideal transformer, and an arbitrary duty-cycle function.
机译:本文探讨了高压脉冲应用中功率调节的进展。特别地,讨论了基于用于感应能量存储系统的爆炸线技术的断开开关,以及用于紧凑型马克思发电机的快速电容器充电器。关于爆炸式电线保险丝断开开关的第一部分介绍了各种保险丝材料以及各种主要能源的基本保险丝尺寸规则。讨论了导线爆炸的基本机理,并提出了一种确定最佳熔断器材料的新方法。为了帮助涉及爆炸导线的电路仿真,提出了一种现象学的保险丝电阻模型,并给出了许多实际数据和仿真数据的结果。此外,还提供了对许多重要材料特性以及当前作用积分的文献调查。在第一部分的最后是对水电解质负载的讨论,该负载电解质也提出了电阻率/浓度公式。本论文的第二部分集中于由德州理工大学的脉冲功率和功率电子中心开发的快速电容器充电器。讨论了基本充电机制,重点是利用硬开关技术对电容器充电。电容器充电器的基本组成部分,带有H桥逆变器的低电感母线,带有HC12微处理器的控制器,高压多抽头升压变压器和多抽头全桥整流器是已解决。提供了一些工具来估算脉冲环境中e型铁心变压器的最佳频率,最佳初级匝数和体积。此外,针对所采用的IGBT提出了一种热模型来解决结温问题。论述了HC12微处理器的实现,并讨论了基本的充电原理以及其汇编代码表示形式。许多详细的图表显示了不同的充电功能(如恒定,线性或指数充电)的影响,包括直流总线电压,变压器输入电流,电容器输入电流和电容器电压。关于快速电容器充电器的部分总结了一个复杂的PSpice系统模型,其中包括DC总线电压摆幅,开关结温,非理想变压器和任意占空比功能。

著录项

  • 作者

    Heeren, Tammo.;

  • 作者单位

    Texas Tech University.;

  • 授予单位 Texas Tech University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 146 p.
  • 总页数 146
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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