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Analysis of brushless doubly-fed, stand-alone generator systems.

机译:分析无刷双馈独立发电机系统。

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摘要

This thesis introduces a Brushless Doubly-Fed Machine (BDFM), stand-alone generator system. Development of a BDFM current-forced model, along with the analysis of air gap power distribution between the two stator windings and the rotor circuit, pave the way for the characterization and analysis of stand-alone generator systems.; The main disadvantage of the conventional diesel-driven generators viz., the frequency regulation through the prime mover system, can be eliminated by using doubly-fed generators, where the frequency of the ac excitation provides a means of controlling the generator output frequency electrically. This facilitates the regulation of both the generator terminal quantities (Voltage and Frequency) through the generator unit itself, thus making the prime mover governor system cheaper and of less importance. When compared with converter-based generator systems, the focus of comparison shifts towards the economic viability since the converter-based system dynamic responses can be comparable with a BDFM generator system.; For dynamic analysis, this work assumes a diesel engine as the prime mover. A permanent speed-droop governor is assumed to prove the versatility of a BDFM stand-alone generator. The stand-alone system is characterized by a seventh order system, by assuming passive electrical load at the generator terminals.; The steady-state characteristics of the BDFM stand-alone generator system, both simulation and experimental results, are discussed. A case study is presented in evaluating the converter rating for a 1001kW system and it is shown that BDFM stand-alone generator operation about the synchronous speed results in a fractional converter rating. A brief discussion on system component sizing is presented.; To facilitate the dynamic control and stability studies, linearized models of the BDFM stand-alone generator are derived. These models can be used even with a prime mover other than the diesel engine. The results of the studies showing the effect of generator loading on the system eigenvalues are given.; Simulated dynamic chatacteristics of the BDFM stand-alone generator system, under closed-loop control, are presented. The conventional proportional-integral (PI) as well as the modern fuzzy control methods are used in obtaining the system dynamic responses. It is observed that the BDFM dynamic characteristics ate superior to those of the conventional stand-alone generator systems.; Finally, experimental results obtained by using a laboratory, prototype BDFM are included. A shunt connected DC machine drive is used as the prime mover and the results show satisfactory dynamic responses of the generator terminal quantities, both under startup and sudden load changes.
机译:本文介绍了一种无刷双馈电机(BDFM),独立发电机系统。 BDFM电流模型的开发,以及对两个定子绕组和转子电路之间的气隙功率分布的分析,为表征和分析独立发电机系统铺平了道路。常规柴油驱动发电机的主要缺点,即通过原动机系统的频率调节,可以通过使用双馈发电机来消除,其中交流励磁的频率提供了一种电气控制发电机输出频率的手段。这有助于通过发电机单元本身对发电机端子数量(电压和频率)进行调节,从而使原动机调速器系统更便宜且重要性更低。与基于转换器的发电机系统相比,比较的重点转向了经济可行性,因为基于转换器的系统动态响应可以与BDFM发电机系统相媲美。为了进行动态分析,本文假设柴油发动机为原动机。假设使用永久性的调速调速器来证明BDFM独立发电机的多功能性。独立系统的特征是七阶系统,其在发电机端子处承担无源电负载。讨论了BDFM独立发电机系统的稳态特性,包括仿真结果和实验结果。在评估1001kW系统的变频器额定值时,进行了案例研究,结果表明,BDFM独立发电机在同步转速附近的运行会导致变频器额定值的分数降低。简要讨论了系统组件的大小。为了促进动态控制和稳定性研究,导出了BDFM独立发电机的线性化模型。这些型号甚至可以与柴油发动机以外的原动机一起使用。研究结果给出了发电机负荷对系统特征值的影响。提出了闭环控制下BDFM独立发电机系统的仿真动态特性。传统的比例积分(PI)以及现代的模糊控制方法都用于获得系统动态响应。可以看出,BDFM动态特性要优于传统的独立发电机系统。最后,包括使用实验室BDFM原型获得的实验结果。并联连接的直流电机驱动器用作原动机,结果表明,在启动和负载突然变化的情况下,发电机端子数量的动态响应令人满意。

著录项

  • 作者

    Gorti, Bhanuprasad Venkata.;

  • 作者单位

    Oregon State University.;

  • 授予单位 Oregon State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1996
  • 页码 152 p.
  • 总页数 152
  • 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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