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LOGICAL NETWORK OF VECTOR SPACES FOR INTELLIGENT OPTIMUM VALUES OF OPERATIONAL SLIDE BEARING PARAMETERS

机译:矢量的逻辑空间网络,用于操作滑动轴承参数的智能最佳值

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This paper presents the implementation of logical network of vector spaces in topological form as a artificial intelligence component applied for determination of optimum system design regard to the micro-bearing operating parameters such as carrying load capacity, friction forces, friction coefficient and bearing wear. The tools of fuzzy logic, and robotics development calculations are applied. Presented in this paper artificial intelligence tools of calculations for micro-bearings systems determine the method using in mechatronics where are investigated the principles of intelligent behavior of micro-bearings and are created its new formal models using computer programs which can make simulations models of slide micro-bearing behavior during the exploitation process. Fuzzy logic is a mathematical object with defined multivalued function which has values in closed set [0,1]. In classical case mentioned function has only two values namely zero and one. This paper presents the fuzzy logic tools in intelligent micro-bearing systems. Efficient functioning of slide micro-bearings systems require to choice the proper journal shapes, bearing materials, roughness of bearing surfaces and many other features to which belongs capability to the processes and control. Artificial intelligence of micro-bearing leads to the creating and indicating of the network logical models to describe most simple and most proper topological graphical schemes presenting the design of anticipated processes. Application of the logical network analysis into the micro-bearing HDD design is the subject-matter of this paper.
机译:本文以拓扑形式介绍了矢量空间逻辑网络的实现,将其作为人工智能组件,用于确定关于微轴承运行参数(例如承载能力,摩擦力,摩擦系数和轴承磨损)的最佳系统设计。应用了模糊逻辑工具和机器人开发计算。本文介绍的用于微轴承系统的人工智能计算工具确定了机电一体化中使用的方法,在该方法中,研究了微轴承的智能行为原理,并使用计算机程序创建了其新的形式化模型,该程序可以使载玻片微仿真模型开发过程中的行为。模糊逻辑是具有定义的多值函数的数学对象,该函数具有闭集[0,1]中的值。在经典情况下,提到的函数只有两个值,即零和一。本文介绍了智能微轴承系统中的模糊逻辑工具。滑动微型轴承系统的有效功能需要选择合适的轴颈形状,轴承材料,轴承表面粗糙度以及许多其他过程和控制功能。微型轴承的人工智能导致创建和指示网络逻辑模型,以描述最简单和最适当的拓扑图形方案,从而提出预期过程的设计。逻辑网络分析在微型轴承硬盘设计中的应用是本文的主题。

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