一种变频感应电机鲁棒速度控制器的计算与设计

IF 1.6 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
N. J. Khlopenko
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引用次数: 2

摘要

意图本工作的目的是计算和设计具有参数不确定性和反馈通道中存在干扰的频率控制感应电动驱动器的鲁棒速度控制器。方法论控制器的计算和设计分四个阶段进行。在第一阶段,构造了具有参数不确定性的控制对象的线性化数学模型,并在鲁棒控制工具箱中使用混合灵敏度方法计算了H∞-次优控制器的传递函数。在第二阶段,研究了对象和控制器的不确定参数在指定边界内随机变化时,鲁棒系统的稳定性和感应电机速度的稳定精度。在第三阶段,在Simulink软件包中探讨了反馈通道中产生的干扰对电机速度的影响。在最后阶段,使用欧几里得算法将H∞-次优控制器的传递函数分解为连续分数。该分数用于建立控制器的电气方案。后果对H∞-次优控制器的传递函数进行了计算机建模,建立了频率控制电驱动器速度的鲁棒稳定系统,该系统具有对象和控制器在特定边界处的不确定参数的随机变化,以及反馈通道中存在变强干扰的情况。变量参数的选择是根据蒙特卡罗方法进行的。构造了具有参数不确定性和不同干扰范围下感应电机转速的瞬态过程曲线,以及开放系统的波德图。通过获得的瞬态过程曲线的离散性,确定了机器速度稳定的精度,并根据波德图确定了鲁棒系统的振幅和相位的稳定性储备。它们在变化参数和干扰范围的偏差相对较大的公差范围内。在此基础上,建立了H∞-次优鲁棒控制器的电路。独创性建立了感应电机频率控制系统的数学模型,并给出了在确定边界和反馈通道中存在干扰的情况下,对象和控制器的不确定参数随机变化时,提出了在不确定系统参数和干扰的容差范围内,在允许的幅度和相位储备的情况下,确保系统的稳定性,并保证机器速度稳定的高精度。实用价值。从模拟元件获得的控制器的结构使得能够以最小的财务成本对运行中的电驱动频率控制系统进行现代化。参考文献11,图7。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CALCULATION AND DESIGN OF A ROBUST SPEED CONTROLLER OF A FREQUENCY-CONTROLLED INDUCTION ELECTRIC DRIVE
Purpose. The aim of the work is the calculation and design of a robust speed controller of a frequency-controlled induction electric drive with parametric uncertainty and the presence of interferences in the feedback channel. Methodology. The calculation and design of the controller was carried out in four stages. At the first stage, a linearized mathematical model of the control object with parametric uncertainty was constructed and the transfer function of the H∞-suboptimal controller was calculated in the Robust Control Toolbox using the mixed sensitivity method. At the second stage, the stability of the robust system and the accuracy of stabilization of the induction machine speed with random variations of the object's and controller's uncertain parameters within the specified boundaries were explored. At the third stage, the influence of interferences arising in the feedback channel on the speed of the electric motor was explored in the Simulink package. At the final stage, the transfer function of the H∞-suboptimal controller was decomposed into a continued fraction using the Euclidean algorithm. This fraction was used to build the electric scheme of the controller. Results. Computer modelling of the transfer function of H∞-suboptimal controller, the robust stabilization system for the speed of the frequency-controlled electric drive with random variations of the uncertain parameters of the object and the controller at specified boundaries, as well as with the presence of varying intensity interferences in the feedback channel, was carried out. The choice of variable parameters was carried out according to the Monte-Carlo method. The curves of transient processes of the induction machine speed with parametric uncertainty and at different ranges of interference are constructed, as well as a Bode diagram for an open system. By the scatter of the obtained curves of the transient processes, the accuracy of speed stabilization of the machine was determined, and according to the Bode diagram, stability reserves in the amplitude and the phase of the robust system were determined. They are within tolerances with comparatively large deviations of the varied parameters and the range of interferences. Based on the investigations, an electrical circuit of the H∞-suboptimal robust controller was developed. Originality. The mathematical model has been developed and the methodology for calculating and designing of H∞-suboptimal robust speed controller of the frequency-controlled system of an induction electric drive with random variations of the uncertain parameters of the object and the controller at determined boundaries and the presence of interferences in the feedback channel, ensuring the stability of the system with allowable reserves of the amplitude and the phase and high accuracy of speed stabilization of the machine within the tolerances of uncertain system parameters and interferences was proposed. Practical value. The obtained structure of the controller from analog elements makes it possible to carry out modernization of the electric drives frequency-controlled systems in operation with minimal financial costs. References 11, figures 7.
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来源期刊
Electrical Engineering & Electromechanics
Electrical Engineering & Electromechanics ENGINEERING, ELECTRICAL & ELECTRONIC-
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2.40
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50.00%
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