Operational Optimization of the Electromechanical System in Non-deterministic Conditions

V. Budashko, O. Onishchenko, I. Hvozdeva, V. Shevchenko, Ruslan Kudelkin
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引用次数: 0

Abstract

On the basis of theoretical and practical studies of the electromechanical system, the scientific and technical problem of improving the control system of the electromechanical system during the impact on it of multi-vector perturbations is solved. The result of the study is the integration of differential equations with coefficients dependent on the oscillations of the control object. In the theoretical part, the mathematical model of the electromechanical system was synthesized, which made it possible to investigate ways of minimizing the deviation angles and time intervals required to stabilize the motion of the electromechanical system, which allowed indirectly to realize the associated signal with the stochastic nature of the moment of oscillation of the control object on the coordinate plane. The method of parametric optimization of the mathematical model of the electromechanical system in the function of the angle of inclination is also improved and investigated. Based on the definition of the structure and algorithms of work, the efficiency of the control system of the electromechanical system increases in terms of reducing the stabilization time of the control object.
不确定条件下机电系统的运行优化
在对机电系统进行理论和实践研究的基础上,解决了多矢量摄动对机电系统影响时改进控制系统的科学技术问题。研究的结果是微分方程的积分,其系数取决于控制对象的振动。在理论部分,综合了机电系统的数学模型,研究了使机电系统运动稳定所需的偏差角和时间间隔最小的方法,从而间接地实现了控制对象在坐标平面上的振荡力矩的随机关联信号。改进并研究了以倾角为函数的机电系统数学模型的参数优化方法。基于工作结构和算法的定义,从减少控制对象的稳定时间方面提高了机电系统控制系统的效率。
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