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Power system fault analysis based on intelligent techniques and intelligent electronic device data.

机译:基于智能技术和智能电子设备数据的电力系统故障分析。

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摘要

This dissertation has focused on automated power system fault analysis. New contributions to fault section estimation, protection system performance evaluation and power system/protection system interactive simulation have been achieved. Intelligent techniques including expert systems, fuzzy logic and Petri-nets, as well as data from remote terminal units (RTUs) of supervisory control and data acquisition (SCADA) systems, and digital protective relays have been explored and utilized to fulfill the objectives.; The task of fault section estimation is difficult when multiple faults, failures of protection devices, and false data are involved. A Fuzzy Reasoning Petri-nets approach has been proposed to tackle the complexities. In this approach, the fuzzy reasoning starting from protection system status data and ending with estimation of faulted power system section is formulated by Petri-nets. The reasoning process is implemented by matrix operations. Data from RTUs of SCADA systems and digital protective relays are used as inputs. Experiential tests have shown that the proposed approach is able to perform accurate fault section estimation under complex scenarios.; The evaluation of protection system performance involves issues of data acquisition, prediction of expected operations, identification of unexpected operations and diagnosis of the reasons for unexpected operations. An automated protection system performance evaluation application has been developed to accomplish all the tasks. The application automatically retrieves relay files, processes relay file data, and performs rule-based analysis. Forward chaining reasoning is used for prediction of expected protection operation while backward chaining reasoning is used for diagnosis of unexpected protection operations. Lab tests have shown that the developed application has successfully performed relay performance analysis.; The challenge of power system/protection system interactive simulation lies in modeling of sophisticated protection systems and interfacing the protection system model and power system network model seamlessly. An approach which utilizes the "compiled foreign model" mechanism of ATP MODELS language is proposed to model multifunctional digital protective relays in C++ language and seamlessly interface them to the power system network model. The developed simulation environment has been successfully used for the studies of fault section estimation and protection system performance evaluation.
机译:本文主要研究电力系统自动化故障分析。在故障区间估计,保护系统性能评估以及电力系统/保护系统交互仿真方面取得了新的贡献。已经探索并利用了智能技术,包括专家系统,模糊逻辑和Petri网,以及来自监督控制和数据采集(SCADA)系统的远程终端单元(RTU)的数据以及数字保护继电器,以实现这些目标。当涉及多个故障,保护装置的故障以及错误的数据时,故障区间估计的任务很困难。已经提出了一种模糊推理Petri网方法来解决复杂性。在这种方法中,由Petri网建立从保护系统状态数据开始到故障电力系统区间估计结束的模糊推理。推理过程是通过矩阵运算实现的。来自SCADA系统的RTU和数字保护继电器的数据用作输入。经验测试表明,所提出的方法能够在复杂的情况下执行准确的断面估计。对保护系统性能的评估涉及数据采集,预期运行的预测,意外运行的识别以及意外运行原因的诊断等问题。已经开发了自动保护系统性能评估应用程序来完成所有任务。该应用程序自动检索中继文件,处理中继文件数据,并执行基于规则的分析。前向链接推理用于预测预期的保护操作,而后向链接推理用于诊断意外的保护操作。实验室测试表明,开发的应用程序已成功执行了继电器性能分析。电力系统/保护系统交互仿真的挑战在于复杂的保护系统的建模以及保护系统模型和电力系统网络模型的无缝接口。提出了一种利用ATP MODELS语言的“外来模型”机制对C ++语言中的多功能数字保护继电器进行建模并将其无缝连接到电力系统网络模型的方法。所开发的仿真环境已成功用于故障区间估计和保护系统性能评估的研究。

著录项

  • 作者

    Luo, Xu.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Electronics and Electrical.; Computer Science.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 141 p.
  • 总页数 141
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;自动化技术、计算机技术;
  • 关键词

  • 入库时间 2022-08-17 11:39:14

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