在不确定条件下用于分析和过程管理的模型和智能技术

V. Skalozub, V. Horiachkin, I. Klymenko
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引用次数: 1

摘要

目的:乌克兰铁路运输(RTU)的现代生产活动的特点是高水平的复杂过程和广泛的不确定条件。本文研究了不确定RTU过程的统一自动化智能分析与控制技术的开发任务。方法/途径:为实现这一目标,提出了RTU自动化智能技术形成概念的新模型,该模型的实现基于统一分析服务的模块化平台,旨在有效解决某些典型任务(诊断、分类、预测、管理等)。作为一个系统的概念包括过程属性的研究阶段,理论和方法论基础以及建模和自动化控制的方法,在不确定情况下的场景和智能接受程序决策。结果:作为将该概念应用于统一技术形成的示例,RTU提供了具有多类不确定性的过程诊断以及抗阻力过程参数分析和预测的智能服务。本文开发的分析程序采用了适用于具有不同类型不确定性(统计、模糊等)的诊断任务的模糊控制方法Takagi-Sugeno的方案,该方案由使用综合指标-可靠性指标以及个人对过程模型控制变量重要性的形式能力提供,用于所有诊断规则,并单独用于每个规则。通过对不确定性RTU过程的时间序列层次进行汇总,开发和研究了铁路运输反持续性过程统一过程分类和特性研究的正确数学模型和算法。结论:为了开发统一的智能自动化技术,RTU基于平台分析服务开发了不确定性RTU过程的概念分析和管理。在形成自动化智能系统的特定服务的工作中,该技术开发了先进的诊断程序,该程序使用takagi - sugeno型模型来处理几种不确定性类别,以及分类反持久性过程的方法,聚集范围内水平的算法插值,分析模型和短期预测过程,旨在开发改进自动化系统RTU的理论基础和方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Models and intellectual technologies used for analysis and process management under uncertainty
Objectives: Modern production activity of railway transport of Ukraine (RTU) is characterized by high the level of complexity of processes and a wide range of conditions of uncertainty. The article is devoted to the tasks of development of unified automated intelligent analysis and control technologies indeterminate RTU processes in case of uncertainty. Methods / Approach: To achieve the goal a new model of the concept of formation of automated intellectual technologies of RTU is offered, implementation of which is based on a modular platform of unified analytical services designed for effective solution of certain typical tasks (diagnosis, classification, forecasting, management, etc.). The concept as a system includes stages of research of properties of processes, theoretical and methodological basis and methods of modeling and automated control, scenarios and intelligent acceptance procedures decisions in case of uncertainty. Results: As examples of application of the concept to the formation of unified technologies RTU presented intelligent services for diagnosing processes with several categories of uncertainty, as well as analysis and forecasting the parameters of anti-resistance processes. The analysis procedures developed in the article differ using the scheme of fuzzy control method Takagi-Sugeno adapted for diagnostic tasks with the uncertainty of different types (statistical, fuzzy, etc.), which is provided by the use integrated indicator – the reliability index, as well as the formal capabilities of the individual accounting for the importance of controlled variables of the process model together for all rules of diagnosis, and for each rule separately. By aggregating the levels of time series of non-deterministic RTU processes developed and researched correct mathematical models and algorithms designed for unified procedures classification and research of properties of anti-persistent processes of railway transport. Conclusions: In order to develop unified intelligent automated technologies RTU developed a concept analysis and management of non-deterministic RTU processes in case of uncertainty based on the platform analytical services. In work at formation of the specified services of the automated intellectual The technology has developed advanced diagnostic procedures that use Takagi-Sugeno-type models for several categories of uncertainty, as well as methods for classifying anti-persistence processes, algorithms interpolation of levels within aggregation ranges, analysis models and short-term forecasting processes designed to develop the theoretical basis and means of improving automated systems RTU.
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