基于传感器技术的交流永磁同步电机伺服系统线性化控制

Yongqiu Liu
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引用次数: 1

摘要

交流永磁同步电机伺服控制系统是一个复杂的非线性、强耦合时变系统。它具有较强的不确定性和非线性,并且在系统运行时也会受到不同程度的干扰,因此传统的控制策略难以满足高精度、高速度和高性能伺服系统的控制要求。本文采用了基于传感器技术的直接反馈线性化控制策略,并利用,作为系统的输出来实现系统的解耦。此外,为了克服直接反馈线性化对参数敏感的缺点,增加了灰色预测。通过灰色预测对不确定因素块进行调整,以适应直接反馈线性化规则,达到预期效果。利用MATLAB/Simulink完成了伺服控制算法的仿真。仿真结果表明,直接反馈线性化控制优于常规PID控制,采用灰色预测的直接反馈线性化控制算法可以提高永磁同步电机伺服控制系统的性能,满足高性能伺服控制系统的基本要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Linearisation control of AC permanent magnet synchronous motor servo system based on sensor technology
AC permanent magnet synchronous motor servo control system is a complex nonlinear, strong coupling and time-varying system. It has strong uncertainty and nonlinearity, and when the system is running, it also will be disturbed to varying degrees, so the conventional control strategy is difficult to meet the control requirements of high accuracy, high speed and high-performance servo system. This paper adopts a direct feedback linearisation control strategy based on sensor technology and uses, as the output of the system to realise the decoupling of the system. In addition, the grey prediction is added to overcome the shortcomings of direct feedback linearisation that is sensitive to parameters. Adjusting the uncertain factors block by grey prediction to adapt to the direct feedback linearisation rule and achieve the desired effect. MATLAB/Simulink is used to complete the simulation of servo control algorithm. The simulation results show that the direct feedback linearisation control is better than the conventional PID control, and the direct feedback linearisation control algorithm with grey prediction can improve the performance of the permanent magnet synchronous motor servo control system and can meet the basic requirements of the high-performance servo control system.
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