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DEVELOPMENT OF EXPERT SYSTEMS AS ONLINE OPERATIONAL AIDS.

机译:开发作为在线操作艾滋病的专家系统。

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摘要

In recent years, the interest in Expert Systems (ES) has grown rapidly. The application of expert systems to power system operations and on-line environments is a new area of research. In this thesis, the issues involved with on-line knowledge based systems for operations is investigated. To begin, the development and validation process involved in building two ES operational aids are discussed. One incorporated logical and heuristic rules for Customer Restoration And Fault Testing (CRAFT) of power lines with automatic switches. The other, referred to as VCES (Voltage Control Expert System), integrated numerical and heuristic techniques for reactive power/voltage control in a power system. Both expert systems are implemented as rule-based forward-chaining systems.; Can expert systems such as CRAFT and VCES be applied in an on-line operation environment? The answer depends on the quality of the knowledge base and the computational efficiency. Besides validating the knowledge base, computation time is analyzed. Based on discrimination nets, used in many production system languages for pattern matching efficiency, a method is proposed to obtain the worst case computation time of a rule-based system. The method depends on bounding the individual computational components of the inference engine (pattern matching, conflict resolution, and actions) and partitioning rules into groups performing different tasks in the decision-making. The worst case time is obtained by combining the costs of each of these tasks. This research is a step toward insights into the application of knowledge based systems to power system operations and the efficient implementation of rule-based systems.
机译:近年来,对专家系统(ES)的兴趣迅速增长。专家系统在电力系统操作和在线环境中的应用是一个新的研究领域。本文研究了基于在线知识的作战系统所涉及的问题。首先,讨论了构建两个ES操作帮助所涉及的开发和验证过程。其中一项包含逻辑和启发式规则,用于具有自动开关的电力线的客户恢复和故障测试(CRAFT)。另一种称为VCES(电压控制专家系统),它集成了用于电力系统中无功功率/电压控制的数值和启发式技术。这两个专家系统都实现为基于规则的前向链接系统。可以将CRAFT和VCES之类的专家系统应用于在线操作环境吗?答案取决于知识库的质量和计算效率。除了验证知识库之外,还分析了计算时间。基于多种生产系统语言中用于模式匹配效率的判别网,提出了一种获取基于规则的系统最坏情况下的计算时间的方法。该方法取决于对推理引擎的各个计算组件(模式匹配,冲突解决方案和操作)进行限制,并将规则划分为在决策中执行不同任务的组。最坏的情况是通过合并这些任务中的每一项的成本获得的。这项研究是朝着深入了解基于知识的系统应用于电力系统操作和有效执行基于规则的系统迈出的一步。

著录项

  • 作者

    TOMSOVIC, KEVIN LOUIS.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1987
  • 页码 124 p.
  • 总页数 124
  • 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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