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Variable speed constant frequency power conversion with permanent magnet synchronous and switched reluctance generators.

机译:带有永磁同步和开关磁阻发电机的变速恒频功率转换。

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摘要

Power electronics is inevitably concerned with the processing of variable speed power generations such as in wind turbines, aircraft systems and naval on-board ship systems. The nature of these types of energy is distinct in that their frequency and power vary depending on the speed of the prime-mover. To make use of the variable speed energy, a power processing scheme which transforms the variable speed energy into a constant frequency power is required. There are measures such as mechanical and electrical links for such purposes. Electrical link systems are chosen in this study due to their fast responses and high reliabilities. The power conversion stage may be a dc link with a line-commutated converter, a dc link with a self-commutated inverter, or a cycloconverter. The line-commutated converter and cycloconverter power stages require a fixed frequency supply for operation whereas the self-commutated inverter is capable of stand-alone operation, thus making it attractive.; Two cases of variable speed power generation using a permanent magnet synchronous machine (hereafter referred to as PMSM) and a switched reluctance machine (hereafter referred to as SRM) were studied in this dissertation. The possible use of PMSMs has been proved by the good correlation between the experimental results and the theoretically predicted results. Three different control strategies have been proposed, implemented in hardware, and experimentally verified. The efficiency of the VSCF power conversion with a self commutated converter were comparable to the one using a line-commutated converter.; A novel converter topology with no dc link capacitor has been proposed for the application of SRMs to the VSCF power conversion. The proposed topology directly links the constant frequency ac source to the SRM. This feature enhances the reliability of the power conversion scheme and reduces the weight and volume of the system. The correlation between the theoretical and experimental results of some key issues showed the feasibility of the proposed VSCF power conversion scheme.; In the course of the study, one stage ac to dc power conversion with a compact transformer was required for dc loads. However, phase-controlled ac to dc conversion has the disadvantages of low power factor and harmonic pollution on the utility side, particularly in the case where dc voltage regulation is required. Therefore, a novel single phase rectifier for dc load which provides ohmic isolation with a high frequency transformer is extensively investigated. The proposed scheme had a wide output variation on dc output while maintaining unity power factor and sinusoidal current in the ac input side. Three control strategies for the operation of the converter were proposed and verified experimentally. The harmonic spectra on ac and dc sides are analytically derived and experimentally proved under some load conditions.
机译:电力电子学不可避免地关注诸如风力涡轮机,飞机系统和海军舰船系统中的变速发电的处理。这些类型的能量的本质是不同的,因为它们的频率和功率取决于原动机的速度而变化。为了利用变速能量,需要将变速能量转换成恒定频率的功率的功率处理方案。为此有一些措施,例如机械和电气连接。本研究选择电气链接系统是因为它们具有快速响应和高可靠性的特点。功率转换级可以是具有线路换向转换器的直流链路,具有自换向逆变器的直流链路或循环转换器。线路换向转换器和循环换流器功率级需要固定频率的电源才能运行,而自换相逆变器可以独立运行,因此具有吸引力。本文研究了使用永磁同步电机(以下称为PMSM)和开关磁阻电机(以下称为SRM)进行变速发电的两种情况。实验结果与理论预测结果之间的良好相关性证明了PMSM的可能用途。已经提出了三种不同的控制策略,以硬件实现,并进行了实验验证。带有自换向转换器的VSCF功率转换的效率与使用线换向转换器的效率相当。对于SRM在VSCF功率转换中的应用,已经提出了一种不带直流链路电容器的新型转换器拓扑。所提出的拓扑将恒定频率的交流电源直接链接到SRM。此功能增强了电源转换方案的可靠性,并减少了系统的重量和体积。一些关键问题的理论和实验结果之间的相关性表明了所提出的VSCF功率转换方案的可行性。在研究过程中,直流负载需要使用紧凑型变压器进行一级交流到直流功率转换。但是,相位控制的交流到直流转换的缺点是功率因数低,并且在公用事业方面受到谐波污染,特别是在需要直流电压调节的情况下。因此,广泛研究了一种新颖的用于直流负载的单相整流器,该整流器通过高频变压器提供欧姆隔离。所提出的方案在直流输出上具有宽输出变化,同时在交流输入侧保持单位功率因数和正弦电流。提出了三种控制变频器运行的控制策略,并进行了实验验证。在某些负载条件下,可以分析得出交流和直流侧的谐波频谱,并通过实验证明。

著录项

  • 作者

    Rim, Geun-hie.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1992
  • 页码 173 p.
  • 总页数 173
  • 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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