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Speed control of induction motors based on energy-shaping and signal transformation principle

机译:基于能量整形和信号变换原理的感应电动机调速

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Applying a novel control method of the Port-Controlled Hamiltonian (PCH) systems with dissipation, the modelling and speed tracking control of induction motor is presented when load torque is known and unknown. A PCH model of induction motor is established. The induction motor and controller are interconnected, and desired closed-loop PCH system structure is obtained by the feedback control. The desired closed-loop Hamiltonian function is given. The controller and load torque observer are designed. The equilibrium stability of the closed-loop system is also verified. Using SVPWM signal transformation method, speed regulation of induction motor is implemented by controlling the duty ratio of every converter switch. The simulation results show the system has good load disturbances attenuation and good speed tracking performances.
机译:应用具有耗散的端口控制哈密顿系统(PCH)的新型控制方法,给出了已知和未知负载转矩时感应电动机的建模和速度跟踪控制。建立了感应电动机的PCH模型。感应电动机和控制器相互连接,并通过反馈控制获得所需的闭环PCH系统结构。给出了所需的闭环哈密顿函数。设计了控制器和负载扭矩观测器。还验证了闭环系统的平衡稳定性。使用SVPWM信号转换方法,通过控制每个转换器开关的占空比来实现感应电动机的速度调节。仿真结果表明,该系统具有良好的负载扰动衰减和良好的速度跟踪性能。

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