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Static and transient voltage stability assessment of hybrid AC/DC power systems.

机译:混合交流/直流电源系统的静态和瞬态电压稳定性评估。

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摘要

Voltage stability is a challenging problem in the design and operation of terrestrial and shipboard power systems. DC links can be integrated in the AC systems to increase the transmission capacity or to enhance the distribution performance. However, DC links introduce voltage stability issues related to the reactive power shortage due to power converters. Multi-infeed DC systems make this existing phenomenon more complicated. In addition, shipboard power systems have unique characteristics, and some concepts and methodologies developed for terrestrial power systems need to be investigated and modified before they are extended for shipboard power systems.;One goal of this work was to develop a systematic method for voltage stability assessment of hybrid AC/DC systems, independent of system configuration. The static and dynamic approaches have been used as complementary methods to address different aspects in voltage stability. The other goal was to develop or to apply voltage stability indicators for voltage stability assessment. Two classical indicators (the minimum eigenvalue and loading margin) and an improvement (the 2nd order performance indicator) have been jointly used for the prediction of voltage stability, providing information on the system state and proximity to and mechanism of instability. The eliminated variable method has been introduced to calculate the partial derivatives of AC/DC systems for modal analysis. The previously mentioned methodologies and the associated indicators have been implemented for the application of integrated shipboard power system including DC zonal arrangement.;The procedure of voltage stability assessment has been performed for three test systems, the WSCC 3-machine 9-bus system, the benchmark integrated shipboard power system, and the modified IEEE RTS-96. The static simulation results illustrate the critical location and the contributing factors to the voltage instability, and screen the critical contingencies for dynamic simulation. The results obtained from various static methods have been compared. The dynamic simulation results demonstrate the response of dynamic characteristics of system components, and benchmark the static simulation results.
机译:在地面和舰船电源系统的设计和运行中,电压稳定性是一个具有挑战性的问题。直流链路可以集成在交流系统中,以增加传输容量或增强配电性能。然而,DC链路引入了与由于功率转换器引起的无功功率短缺有关的电压稳定性问题。多馈直流系统使这种现存现象更加复杂。此外,船用电力系统具有独特的特性,在扩展到船用电力系统之前,需要研究和修改为陆用电力系统开发的一些概念和方法。该工作的目标之一是开发一种系统的电压稳定方法独立于系统配置的混合AC / DC系统评估。静态和动态方法已被用作补充方法来解决电压稳定性的不同方面。另一个目标是开发或应用电压稳定性指标进行电压稳定性评估。两种经典指标(最小特征值和负载裕度)和改进指标(二阶性能指标)已共同用于预测电压稳定性,从而提供了有关系统状态以及与不稳定程度和接近程度有关的信息。引入了消除变量法来计算用于模态分析的AC / DC系统的偏导数。前面提到的方法和相关指标已针对包括直流区域布置在内的综合舰船电力系统的应用而实施。对三个测试系统WSCC 3机9总线系统,基准集成舰载电源系统,以及经过修改的IEEE RTS-96。静态仿真结果说明了电压不稳定的关键位置和影响因素,并筛选了动态仿真的关键意外事件。比较了从各种静态方法获得的结果。动态仿真结果展示了系统组件动态特性的响应,并为静态仿真结果提供了基准。

著录项

  • 作者

    Lin, Minglan.;

  • 作者单位

    Mississippi State University.;

  • 授予单位 Mississippi State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 152 p.
  • 总页数 152
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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