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Biological Principles of Intellectual Motion Control: Models and Implementation Options

机译:知识运动控制的生物学原理:模型与实现选项

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The article is devoted to the development of information processing models of the organization of human motion control in the central nervous system (CNS). The CNS function, providing control of mechanical movements, is one of the oldest and most important ones for the survival of individuals. The study of the transformation of this function in living systems from the simplest to the highest in the evolutionary process, as well as the comparative availability of experimental studies of the manifestation of this function in humans, make it possible to formulate the basic principles of intelligent information processing in the organization of motion. Examples of the implementation of the proposed principles in the study of the functioning of complex systems of different origin are given. The basis of the research and development of mathematical models is the theory of the levels of the Russian physiologist N.A. Bernstein, as well as his description of the main physiological information processes occurring in the human central nervous system in the organization of movement. The mechanisms of information processing at each level are described. A hierarchical description of a system for processing various types of information is presented. The variants of possible mathematical models of various levels of information processing are considered. The integration of these models in the process of motion control provides self-organization and adaptive properties for the given control objectives. The technical implementation of intelligent control of mechanical movements on the principles of biomechanics is one of the most popular applications in various fields. Examples of intelligent control systems implemented in the principles of bio-cybernetics are given.
机译:本文致力于在中枢神经系统(CNS)中的人体运动控制组织信息处理模型的发展。 CNS功能,提供机械运动的控制,是个人生存的最古老,最重要的一种。研究从最简单到进化过程中最简单的生活系统中这种功能的转变,以及对人类在人类中这种功能的表现的实验研究的比较可用性,使得可以制定智能的基本原则运动组织中的信息处理。给出了研究不同起源复杂系统的运作研究中提出的原则的实施例。数学模型的研究和发展的基础是俄罗斯生理学家N.A.Bernstein的水平的理论,以及他在运动组织中人体中枢神经系统中发生的主要生理信息过程的描述。描述了每个级别的信息处理机制。呈现用于处理各种类型信息的系统的分层描述。考虑了各种信息处理的可能数学模型的变体。这些模型在运动控制过程中的集成为给定的控制目标提供了自组织和自适应属性。对生物力学原理的机械运动智能控制的技术实施是各个领域中最受欢迎的应用之一。给出了在生物 - 控制器的原则中实现的智能控制系统的例子。

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