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To the question about the states of workability for automatic control systems with complicated structure

机译:关于具有复杂结构的自动控制系统的可操作性状态的问题

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The article discusses the reliability of automated control systems. Analyzes the approach to the classification systems for health States. This approach can be as traditional binary approach, operating with the concept of "serviceability", and other variants of estimation of the system state. This article provides one such option, providing selective evaluation of components for the reliability of the entire system. Introduced description of various automatic control systems and their elements from the point of view of health and risk, mathematical method of determining the transition object from state to state, they differ from each other in the implementation of the objective function. Explores the interplay of elements in different States, the aggregate state of the elements connected in series or in parallel. Are the tables of various logic States and the principles of their calculation in series and parallel connection. Through simulation the proposed approach is illustrated by finding the probability of getting into the system state data in parallel and serially connected elements, with their different probabilities of moving from state to state. In general, the materials of article will be useful for analyzing of the reliability the automated control systems and engineering of the highly-reliable systems. Thus, this mechanism to determine the State of the system provides more detailed information about it and allows a selective approach to the reliability of the system as a whole. Detailed results when assessing the reliability of the automated control systems allows the engineer to make an informed decision when designing means of improving reliability.
机译:本文讨论了自动控制系统的可靠性。分析了健康国家分类系统的方法。这种方法可以作为传统的二进制方法,操作与“可维护性”的概念以及系统状态估计的其他变体。本文提供了一种此类选项,为整个系统的可靠性提供了对组件的选择性评估。介绍了各种自动控制系统及其元素的描述,从健康和风险的角度来看,确定从状态到状态的转换对象的数学方法,它们在目标函数的实施中彼此不同。探索不同状态中的元素的相互作用,串联或并行连接的元素的聚合状态。是各种逻辑状态的表以及它们串联和并行连接计算的原理。通过模拟来通过查找并行和串联连接的元件中进入系统状态数据的概率来说明所提出的方法,其不同的移动从状态移动到状态。通常,物品材料可用于分析可靠性的可靠性控制系统和高可靠性系统的工程。因此,确定系统状态的这种机制提供了关于它的更详细信息,并允许选择性地实现整个系统的可靠性。在评估自动控制系统的可靠性时的详细结果允许工程师在设计提高可靠性的手段时做出明智的决定。

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