PRODUCTION RULE ONTOLOGY OF AUTOMATIZED SMART EMERGENCY DISPATCHING SUPPORT OF THE POWER SYSTEM

V. Morkun, I. Kotov, O. Serdiuk, Iryna A. Haponenko
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引用次数: 1

Abstract

The research deals with improving methods and systems of control over power systems based on intellectualization of dispatch decision support. There are results of developing a principal trigger scheme of the decision support system algorithm. The proposed model of algorithm visualization in the form of a trigger state network of the computer system provides interaction with power objects of mining and metallurgical complexes and regions. A new interpretation of components of the network trigger model is introduced. The model is interactively related to both user-operator actions and states of power system components. With that, the state of the automata model is associated with fulfillment a set of metarules to control the logical inference. There are new forms of presenting algorithms controlling knowledgebases that interact with the external environment and aggregate primitives of states, triggers and transactions of operations and generalize standard visualization languages of algorithms are proposed. This allows unification of smart systems interacting with the external environment. The authors develop models for representing knowledgebase processing algorithms interacting with power objects that combine states, triggers and transaction operations and generalize standard visualization languages of algorithms. This enables description of functioning database algorithms and their event model, which provides a reliable unification of smart systems interacting with control objects of mining and metallurgical power systems. The research solves the problem of building a knowledgebase and a software complex of the dispatch decision support system based on the data of computational experiments on the power system scheme. The research results indicate practical effectiveness of the proposed approaches and designed models
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电力系统自动化智能应急调度支持的生产规则本体
研究了基于调度决策支持智能化的电力系统控制方法和系统。研究了决策支持系统算法的主要触发方案。提出的算法可视化模型以计算机系统的触发状态网络的形式提供了与矿冶联合体和地区电力对象的交互。对网络触发模型的组成部分进行了新的解释。该模型与用户-操作员的行为和电力系统组件的状态相互关联。这样,自动机模型的状态就与实现一组控制逻辑推理的元规则相关联。提出了控制与外部环境交互的知识库、聚合操作的状态原语、触发原语和事务原语的算法的新表示形式,并概括了算法的标准可视化语言。这使得智能系统与外部环境的交互成为可能。作者开发了表示知识库处理算法与结合状态、触发器和事务操作的权力对象交互的模型,并推广了算法的标准可视化语言。这使得能够描述功能数据库算法及其事件模型,从而提供与采矿和冶金电力系统控制对象交互的智能系统的可靠统一。本研究以电力系统方案计算实验数据为基础,解决了调度决策支持系统知识库和软件库的构建问题。研究结果表明所提出的方法和所设计的模型具有实际的有效性
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