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首页> 外文期刊>International journal of applied electromagnetics and mechanics >Inverse system modeling and decoupling control of bearingless induction motor based on air gap flux orientation
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Inverse system modeling and decoupling control of bearingless induction motor based on air gap flux orientation

机译:基于气隙磁通方向的无轴承感应电动机的逆系统建模与去耦控制

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摘要

Three-phase bearingless induction motor is a multivariable, nonlinear and strong coupling object, to achieve its decoupling control with high performance, an inverse system decoupling control strategy based on air gap flux orientation is proposed. Under the conditions of air gap flux orientation of torque system, the stator currents of torque winding and suspension winding are taken as input variables, and the inverse system mathematical model of bearingless induction motor is established; adopting the inverse system method, the bearingless induction motor is decoupled into four pseudo linear subsystems, include motor speed first-order integral subsystem, air gap flux-linkage first-order integral subsystem, a and alpha displacement components second-order integral subsystems. The structure of decoupling control system is presented also. From the simulation results, it is clear that not only the air gap flux-linkage of torque system can be controlled accurately and directly, but also the dynamic decoupling control between motor speed, air gap flux-linkage of torque system and two radial displacement components can be achieved; Meanwhile, the control system has the characteristics of small overshoot and fast response speed.
机译:三相无轴承感应电动机是多变量,非线性和强耦合物体,实现其具有高性能的去耦控制,提出了一种基于气隙磁通方向的逆系统去耦控制策略。在扭矩系统的气隙磁通取向的条件下,扭矩绕组和悬架绕组的定子电流被视为输入变量,建立了无轴承感应电动机的逆系统数学模型;采用逆系统方法,无轴承感应电动机与四个伪线性子系统分离,包括电动机速度一直积分子系统,气隙磁通连杆一阶积分子系统,A和α位移组件二阶积分子系统。还提供了去耦控制系统的结构。从仿真结果看,很明显,不仅可以准确且直接控制扭矩系统的气隙磁通连杆,而且还可以准确地控制电动机速度,气隙磁通连杆之间的动态去耦控制,扭矩系统和两个径向位移部件可以实现;同时,控制系统具有小的过冲和快速响应速度的特点。

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