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Evaluation of power system security and development of transmission pricing method

机译:电力系统安全评估及输电定价方法的发展

摘要

The electric power utility industry is presently undergoing a change towards the deregulated environment. This has resulted in unbundling of generation, transmission and distribution services. The introduction of competition into unbundled electricity services may lead system operation closer to its security boundaries resulting in smaller operating safety margins. The competitive environment is expected to lead to lower price rates for customers and higher efficiency for power suppliers in the long run. Under this deregulated environment, security assessment and pricing of transmission services have become important issues in power systems. This dissertation provides new methods for power system security assessment and transmission pricing. In power system security assessment, the following issues are discussed 1) The description of probabilistic methods for power system security assessment 2) The computation time of simulation methods 3) on-line security assessment for operation. A probabilistic method using Monte-Carlo simulation is proposed for power system security assessment. This method takes into account dynamic and static effects corresponding to contingencies. Two different Kohonen networks, Self-Organizing Maps and Learning Vector Quantization, are employed to speed up the probabilistic method. The combination of Kohonen networks and Monte-Carlo simulation can reduce computation time in comparison with straight Monte-Carlo simulation. A technique for security assessment employing Bayes classifier is also proposed. This method can be useful for system operators to make security decisions during on-line power system operation.This dissertation also suggests an approach for allocating transmission transaction costs based on reliability benefits in transmission services. The proposed method shows the transmission transaction cost of reliability benefits when transmission line capacities are considered. The ratio between allocation by transmission line capacity-use and allocation by reliability benefits is computed using the probability of system failure.
机译:电力工业目前正朝着放松管制的环境发生变化。这导致发电,输电和配电服务的捆绑。在非捆绑电力服务中引入竞争可能会导致系统运行更接近其安全边界,从而导致较小的运行安全裕度。从长远来看,竞争环境有望导致更低的客户价格水平和更高的电源供应商效率。在这种放松管制的环境下,输电服务的安全评估和定价已成为电力系统中的重要问题。本文为电力系统安全评估和输电定价提供了新的方法。在电力系统安全评估中,讨论了以下问题:1)电力系统安全评估的概率方法的描述2)仿真方法的计算时间3)运行的在线安全评估。提出了一种使用蒙特卡洛模拟的概率方法进行电力系统安全评估。此方法考虑了与意外情况相对应的动态和静态影响。两种不同的Kohonen网络(自组织图和学习矢量量化)被用来加速概率方法。 Kohonen网络和蒙特卡洛仿真的组合与直接蒙特卡洛仿真相比可以减少计算时间。还提出了一种使用贝叶斯分类器的安全评估技术。该方法对系统运营商在电力在线运行中进行安全决策具有一定的参考价值。本文还提出了一种基于可靠性的输电交易成本分配方法。当考虑传输线容量时,所提出的方法显示了可靠性收益的传输事务成本。使用系统故障的概率来计算通过传输线容量使用进行的分配与通过可靠性收益进行的分配之间的比率。

著录项

  • 作者

    Kim Hyungchul;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类

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