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Quantum and thermodynamic self-organization conditions for artificial life of biological mobile micro-nano-robot with AI control. (Report 2. Methodology of RD and stochastic dynamic)

机译:具有AI控制的生物移动微型纳米机器人的人工生命的量子和热力学自组织条件。 (报告2.研发和随机动力学的方法论)

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A new methodology of R&D of micronano-robots (MNR) based on modelling of the nonlinear master dissipative stochastic equations of MNR-motion with minimum entropy production is described. The methodology includes: hierarchical levels for the description of the dynamic behavior of MNR based on laws of microphysics, an extraction of information from coherent states of MNR using quantum non-demolition (QND) measurement processes, logic of intelligent dynamic behavior, optimal control of states, and the dynamic system theory of mechanical motion. On the basis of nonlinear dissipative equations of motion a new quantum postulate for the description of MNR as open thermodynamic and quantum dynamic systems is introduced. Physical conditions for optimal intelligent control of thermodynamic and quantum systems are introduced. The intelligent thermodynamic behaviour of MNR from the artificial life point of view is described. New nonlinear mechanics with entropy exchange are used. The thermodynamic stability conditions for MNR are developed.
机译:描述了一种基于最小熵产生的MNR运动非线性主耗散随机方程建模的微型纳米机器人(MNR)研究与开发的新方法。该方法包括:基于微观物理学定律描述MNR动态行为的层次层次,使用量子非爆破(QND)测量过程从MNR的相干状态提取信息,智能动态行为的逻辑,最优控制状态,以及机械运动的动态系统理论。在非线性耗散运动方程的基础上,引入了一种新的量子假设,将MNR描述为开放的热力学和量子动力学系统。介绍了热力学和量子系统的最佳智能控制的物理条件。从人工寿命的角度描述了MNR的智能热力学行为。使用具有熵交换的新的非线性力学。建立了MNR的热力学稳定性条件。

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