IMPROVING OF ELECTROMECHANICAL STABILIZATION SYSTEMS ACCURACY

IF 1.6 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
B. Kuznetsov, T. Nikitina, I. Bovdui, B. Kobilyanskiy
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引用次数: 5

Abstract

Aim. Improving of accuracy parameters and reducing of sensitivity to changes of plant parameters for nonlinear robust tank main armament guidance and stabilization electromechanical systems based on synchronous motor with permanent magnets and vector control. Methodology. The method of multiobjective synthesis of nonlinear robust control by nonlinear tank main armament stabilization electromechanical system taking into account the elastic oscillations of the tank gun barrel as a discrete-continuous plant and with parametric uncertainty based on the multiobjective optimization. The target vector of robust control choice by solving the corresponding multicriterion nonlinear programming problem in which the calculation of the vectors of the objective function and constraints is algorithmic and associated with synthesis of nonlinear robust controllers and modeling of the synthesized system for various modes of operation of the system, with different input signals and for various values of the plant parameters. Synthesis of nonlinear robust controllers and non-linear robust observers reduces to solving the system of Hamilton-Jacobi-Isaacs equations. Results. The results of the synthesis of a nonlinear robust tank main armament guidance and stabilization electromechanical systems are presented. Comparison of the dynamic characteristics of the synthesized tank main armament stabilization electromechanical systems showed that the use of synthesized nonlinear robust controllers allowed to improve the accuracy parameters and reduce the sensitivity of the system to changes of plant parameters in comparison with the existing system. Originality. For the first time carried out the multiobjective synthesis of nonlinear robust tank main armament stabilization electromechanical systems. Practical value. Practical recommendations are given on reasonable choice of the gain matrix for the nonlinear feedbacks of the regulator and the nonlinear observer of the tank main armament stabilization electromechanical systems, which allows improving the dynamic characteristics and reducing the sensitivity of the system to plant parameters changing in comparison with the existing system.
机电稳定系统精度的提高
的目标。基于永磁同步电机和矢量控制的非线性鲁棒坦克主武器制导与稳定机电系统的精度参数提高和对对象参数变化的敏感性。方法。基于多目标优化,将坦克炮身弹性振动作为一个离散连续对象,考虑参数不确定性,提出了非线性坦克主武器稳定机电系统非线性鲁棒控制的多目标综合方法。鲁棒控制的目标向量的选择是通过求解相应的多准则非线性规划问题来实现的,其中目标函数和约束向量的计算是通过算法实现的,并与非线性鲁棒控制器的综合和综合系统的建模相关联,以适应系统的各种运行模式,具有不同的输入信号和不同的对象参数值。非线性鲁棒控制器和非线性鲁棒观测器的综合可归结为求解Hamilton-Jacobi-Isaacs方程组。结果。给出了一种非线性鲁棒坦克主武器制导与稳定机电系统的综合研究结果。对坦克主武器装备综合稳定机电系统的动态特性进行了比较,结果表明,与现有系统相比,采用综合非线性鲁棒控制器可以提高系统的精度参数,降低系统对对象参数变化的敏感性。创意。首次对非线性鲁棒坦克主武器稳定机电系统进行了多目标综合。实用价值。针对坦克主武器稳定机电系统的非线性反馈调节器和非线性观测器,给出了合理选择增益矩阵的实用建议,与现有系统相比,改善了系统的动态特性,降低了系统对目标参数变化的敏感性。
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来源期刊
Electrical Engineering & Electromechanics
Electrical Engineering & Electromechanics ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
2.40
自引率
50.00%
发文量
53
审稿时长
10 weeks
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