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Design and Control of Series Resonant Converters for DC Current Power Distribution Applications

机译:直流电流分配应用中的串联谐振转换器的设计和控制

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摘要

With the growth of renewable energy usage and energy storage adoption in recent decades, people have started to reevaluate the possible roles of dc systems in current and future electrical systems. The dc voltage distribution has been applied in various applications, such as data centers and aircraft industry, for high efficiency and power density. However, for some applications such as subsea gas and oil fields, and ocean observatory systems, the dc current distribution is preferred over dc voltage distribution for its low cost and robustness against cable faults. Design and control of dc power distribution systems for different applications is an emerging research area with complex technical challenges. This dissertation solves the technical challenges in analysis, design, modeling, control and protection of series resonant converters (SRCs) for dc current distribution applications. An optimum design that has high efficiency, high reliability, and minimum required control efforts for the SRC with constant input current has been achieved and demonstrated by applying the analysis and design procedures developed in this dissertation. The modeling and analysis presented in this dissertation represents an operating condition that has not been studied in the literature and could be easily extended to other resonant converter topologies. Explicit analytical expressions have been provided for all key transfer functions, including input impedance and control-to-output, offering valuable resources to design feed-back regulation and to evaluate system stability. Based on the control strategies and control design presented in this dissertation, stable and reliable operation of dc current distribution systems with long distance cable has been achieved and demonstrated. The proposed analysis, design procedure, stability evaluation, control strategy and protection techniques in this dissertation can be applied to a wide range of similar scenarios as well, which greatly increases their value.
机译:近几十年来,随着可再生能源使用和能源存储应用的增长,人们开始重新评估直流系统在当前和未来的电气系统中的可能作用。直流电压分配已应用于各种应用中,例如数据中心和飞机行业,以实现高效率和功率密度。但是,对于某些应用,例如海底气田和油田以及海洋观测系统,由于其低成本和抗电缆故障的坚固性,直流电流分布优于直流电压分布。针对不同应用的直流配电系统的设计和控制是一个新兴的研究领域,面临着复杂的技术挑战。本论文解决了直流配电应用中串联谐振变换器(SRC)的分析,设计,建模,控制和保护方面的技术难题。本文通过分析和设计程序,实现了具有恒定输入电流的SRC的高效率,高可靠性和最小的控制工作量的优化设计。本文提出的建模和分析代表了一种在文献中尚未研究的工作条件,可以很容易地扩展到其他谐振变换器拓扑。已经为所有关键传递函数提供了明确的分析表达式,包括输入阻抗和输出控制,为设计反馈调节和评估系统稳定性提供了宝贵的资源。基于本文提出的控制策略和控制设计,实现并证明了长距离电缆直流配电系统的稳定可靠运行。本文所提出的分析,设计程序,稳定性评估,控制策略和保护技术也可以应用于各种类似的情况,极大地增加了它们的价值。

著录项

  • 作者

    Wang, Hongjie.;

  • 作者单位

    Utah State University.;

  • 授予单位 Utah State University.;
  • 学科 Electrical engineering.
  • 学位 Ph.D.
  • 年度 2018
  • 页码 212 p.
  • 总页数 212
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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