首页> 外文会议>2018 IEEE 59th International Scientific Conference on Power and Electrical Engineering of Riga Technical University >OPTIMIZATION OF MECHANICAL PROBABILITY OF FAILURE WITH INTEGRAL-DIFFERENTIAL MODEL FOR POWER PLANTS OPERATION : A series of computational formulas/simulations with stochastic-optimization methods
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OPTIMIZATION OF MECHANICAL PROBABILITY OF FAILURE WITH INTEGRAL-DIFFERENTIAL MODEL FOR POWER PLANTS OPERATION : A series of computational formulas/simulations with stochastic-optimization methods

机译:用积分微分模型对电厂运行的机械故障概率进行优化:一系列带有随机优化方法的计算公式/模拟

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This contribution follows previous publications in Integral-Differential Model for mechanical systems of power plants. The objective of research was to obtain practical mathematical algorithms to optimize the probability of cracks/breaks of the mechanical system by impact erosion wear. Probability of failure concept and its mathematical formulation are developed to set algorithms for lifetime determination of mechanical systems .In other words, to prevent unexpected mechanical failures by severe damage of mechanical parts that could lead to power plant stops for repair. Firstable, the article presents the fundamental formulation/mathematical-definitions for lifetime determination and probability of failure of a mechanical system-with focus on further applications for Integral Differential model. Subsequently, a series of modeling optimization and simulations are shown with Gaussian models and stochastic ones. Methods applied in programming are outlined in brief and software development is explained. Formal results are a group of Bayesian formulas, computational graphs and numerical database charts to support the initial hypotheses and mathematical framework. Practical engineering-tribological consequences for optimal operation of power plants derive from the basics of the study.
机译:此贡献是在以前的发电厂机械系统积分微分模型出版物中得出的。研究的目的是获得实用的数学算法,以通过冲击腐蚀磨损来优化机械系统裂缝/断裂的可能性。开发了故障概率的概念及其数学公式,以设置用于确定机械系统寿命的算法。换句话说,是要防止由于机械零件的严重损坏而导致意料之外的机械故障,而这可能会导致电厂停运维修。首先,本文介绍了用于确定机械系统寿命和失效概率的基本公式/数学定义-着重于积分微分模型的进一步应用。随后,利用高斯模型和随机模型展示了一系列建模优化和仿真。简要概述了编程中应用的方法,并解释了软件开发。正式结果是一组贝叶斯公式,计算图和数值数据库图,以支持初始假设和数学框架。从研究的基础上得出电厂最佳运行的实际工程摩擦学后果。

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