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PCH control and L2 gain disturbance attenuation of induction motor

机译:感应电动机的PCH控制和L2增益扰动衰减

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Aiming at the problem of induction motor (IM) parameters uncertainty, a novel L2 gain disturbance attenuation control algorithm based on Port-Controlled Hamiltonian (PCH) systems theory is presented for IM. Firstly, a PCH system model of IM is established. Secondly, using interconnection and damping assignment, the desired state error PCH structure is assigned to the closed-loop IM system by the energy-shaping (ES) principle when inductance and resistance parameters are known and constant. Thirdly, following the idea of field orientation, the desired equilibrium of the system is obtained. At last, L2 gain disturbance attenuation technique is applied to the closed-loop PCH control of IM system when inductance and resistance parameters are uncertain. The simulation results show that the proposed scheme has a good performance and designed control system has better robustness than ever before.
机译:针对感应电机参数不确定性问题,提出了一种基于端口控制哈密顿系统理论的L2增益扰动衰减控制算法。首先,建立IM的PCH系统模型。其次,使用互连和阻尼分配,在电感和电阻参数已知且恒定的情况下,通过能量整形(ES)原理将所需的状态误差PCH结构分配给闭环IM系统。第三,遵循场定向的思想,获得了系统的理想平衡。最后,在电感和电阻参数不确定的情况下,将L2增益扰动衰减技术应用于IM系统的闭环PCH控制。仿真结果表明,该方案具有良好的性能,设计的控制系统具有比以往更好的鲁棒性。

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