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On-line transient stability studies incorporating wind power.

机译:结合风力发电的在线暂态稳定研究。

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摘要

Transient stability is a major concern in power system security and reliability because it is the most common type of instability and its impacts can cause greatest economic losses. For enhancing the energy security, it requires the power system operation to be evaluated during both the planning and the operation stage. Many online/offline transient stability assessment techniques have already been developed for this purpose. However, due to the increase in energy demand, the modern power system has grown to a very sophisticated and large system for which extent transient stability assessment methods may not be able to handle. In addition, the new published regulation rules and new concepts such as the smart grid have also pushed the requirement for transient stability assessment to a higher level. Thus, this dissertation is intended to study large scale power system transient stability. It starts from establishing an analytical approach for power system transient stability assessment. Based on the results, the disadvantages of traditional concepts used in transient stability assessment have been discussed. In order to overcome the difficulties encountered by classical approaches, a new technique for estimating the generator rotor angle difference in multi-machine power system is developed. It is more practical and has been applied to study the impact of wind power generation on power system transient stability afterwards. Since recently there is a significant increase in the importance of renewable energy and its related optimizations in power systems, the final goal of this dissertation focuses on the power system optimal power flow technique with wind power penetration and transient stability constrains. For making results more convincible, the South Carolina offshore wind speed data is used as the availability of wind power. An approach for maintaining the power system economic operation within the security range has been given at the end of this dissertation.
机译:暂态稳定性是电力系统安全性和可靠性的主要问题,因为它是最常见的不稳定类型,其影响可能导致最大的经济损失。为了提高能源安全性,它要求在规划和运行阶段都对电力系统的运行进行评估。为此已经开发了许多在线/离线暂态稳定性评估技术。但是,由于能源需求的增加,现代电力系统已发展成为一个非常复杂的大型系统,在此程度上暂态稳定性评估方法可能无法应对。此外,新发布的监管规则和新概念(例如智能电网)也将对暂态稳定性评估的要求推向了更高的水平。因此,本文旨在研究大规模电力系统的暂态稳定性。它从建立用于电力系统暂态稳定性评估的分析方法开始。根据结果​​,讨论了用于暂态稳定评估的传统概念的缺点。为了克服经典方法遇到的困难,开发了一种用于估计多机电力系统中的发电机转子角差的新技术。此方法更为实用,后来已被用于研究风力发电对电力系统暂态稳定的影响。由于最近可再生能源及其在电力系统中的相关优化的重要性有了显着提高,因此本论文的最终目标集中在具有风力穿透力和暂态稳定约束的电力系统最优潮流技术上。为了使结果更具说服力,南卡罗来纳州海上风速数据被用作风力的可用性。本文最后提出了一种将电力系统经济运行保持在安全范围内的方法。

著录项

  • 作者

    Wang, Zhenhua.;

  • 作者单位

    Clemson University.;

  • 授予单位 Clemson University.;
  • 学科 Alternative Energy.;Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 138 p.
  • 总页数 138
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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