采用PBC技术控制感应电机

K. Baazouzi, A. Bensalah, S. Drid
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引用次数: 1

摘要

控制多变量电气系统的主要问题主要来自于其结构信息的缺乏,其结构通常是线性的,意外状态的变化可能导致系统不稳定,因此要求开发一种包含非线性效应和时变现象的新型控制结构,同时尊重其稳定性的期望规范。本文提出了一种基于状态反馈交换控制能量原理的异步电动机无源控制(PBC),它可以在多个领域工作。推导了感应电动机的端口控制哈密顿(PCH)模型,使能量的互连和阻尼在该方案上一目了然。通过MATLAB计算仿真验证了该控制器的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The PBC technical to control the induction motor
The major problem of controlling a multi-variable electrical system comes mainly from the lack of information on its structure, which was supposed to always linear, a change in unexpected state may cause system instability, hence the requirement development of a new control structure incorporating nonlinear effects and time-varying phenomena while respecting the desired specifications on their stabilities. A new control scheme for speed induction motors is proposed in the present paper, called "passivity based control (PBC) on the principle of exchange control energy via state feedback was presented it allows to work in several areas. A port-controlled Hamiltonian (PCH) model of the induction motor is deduced to make the interconnection and damping of energy explicit on the scheme. The proposed controller is validated under computational simulations MATLAB.
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