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在振动系统中,通过固定频率比法实现四台感应电动机的多频率控制同步。

Multifrequency controlled synchronization of four inductor motors by the fixed frequency ratio method in a vibration system.

机构信息

School of Mechanical Engineering, Shenyang Ligong University, Shenyang, 110159, China.

出版信息

Sci Rep. 2023 Feb 11;13(1):2467. doi: 10.1038/s41598-023-29603-y.

Abstract

In this article, multifrequency controlled synchronization of four inductor motors by the fixed frequency ratio method in a vibration system is investigated. The electromechanical coupling dynamical model of the vibrating system is established. The synchronous condition of the vibrating system is obtained with the small parameter method. Through the theoretical derivation and numerical simulation, multifrequency self-synchronization of four induction motors in the vibration system can't be realized. To achieve the purpose of multifrequency synchronization motion, the method of multifrequency controlled synchronization is proposed, and a fuzzy PID controlling method is introduced. The stability of the controlling system is certified by the Lyapunov criterion. An arbitrariness of the proposed controlling method which is applied to the vibration system is presented. To certify the accuracy of the theory and simulation, a vibrating test bench is constructed. Some experiments are operated to validate the effectiveness and the proposed controlled synchronization method.

摘要

本文研究了振动系统中通过固定频率比方法实现四台感应电动机的多频控制同步。建立了振动系统的机电耦合动力学模型。通过小参数法得到了振动系统的同步条件。通过理论推导和数值模拟,发现振动系统中的四台感应电动机无法实现多频自同步。为了实现多频同步运动的目的,提出了多频控制同步的方法,并引入了模糊 PID 控制方法。通过李雅普诺夫准则证明了控制系统的稳定性。提出的控制方法在振动系统中的任意性也得到了验证。为了验证理论和仿真的准确性,构建了一个振动试验台。进行了一些实验来验证所提出的控制同步方法的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb36/9922278/890dc58ecdaa/41598_2023_29603_Fig1_HTML.jpg

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