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首页> 外文期刊>Advances in Mechanical Engineering >The decoupled vector-control of PMSM based on nonlinear multi-input multi-output decoupling ADRC
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The decoupled vector-control of PMSM based on nonlinear multi-input multi-output decoupling ADRC

机译:基于非线性多输入多输出去耦ADRC的PMSM解耦载体控制

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摘要

The Permanent Magnet Synchronous Motor (PMSM) is widely used in many fields. Aiming at nonlinearity, strong coupling and uncertainty of the PMSM, this paper proposes a nonlinear multi-input multi-output (MIMO) decoupling PMSM algorithm based on Active Disturbance Rejection Control (ADRC). A Lower-Upper matrix factorization approach is introduced to solve a general inverse of the measured time-varying matrix in real-time decoupling ADRC. This PMSM is based on the vector control. First, the PMSM model and vector control are simulated. Then, a first-order ADRC is introduced and used to replace the PID controller in the d and q axis of PMSM respectively. The simulation shows that the replaced system has a smaller fluctuation, faster response and better stability. Finally, the nonlinear MIMO decoupling ADRC and its inverse matrix method are deduced. Then, the decoupling PMSM control based on ADRC is verified. The simulation shows that this system has a better static and dynamic performance, and it conforms to the PMSM characteristics better. All this shows that the nonlinear MIMO decoupling ADRC is a better strategy for the PMSM. The presented algorithm also has advantage in method compared with some recent results of decoupling PMSM control.
机译:永磁同步电动机(PMSM)广泛用于许多领域。旨在瞄准非线性,PMSM的强耦合和不确定度,本文提出了一种基于主动干扰抑制控制(ADRC)的非线性多输入多输出(MIMO)去耦PMSM算法。引入了较低的矩阵分解方法以解决实时解耦ADRC中测量的时变矩阵的一般逆。此PMSM基于矢量控制。首先,模拟PMSM模型和矢量控制。然后,引入了一阶ADRC并用于分别替换PMSM的D和Q轴中的PID控制器。该模拟表明,替代的系统的波动较小,响应快,稳定性更快。最后,推导出非线性MIMO去耦ADRC及其逆矩阵法。然后,验证了基于ADRC的去耦PMSM控制。该系统显示该系统具有更好的静态和动态性能,并且它符合PMSM特性更好。所有这些都表明,非线性MIMO解耦ADRC是PMSM的更好策略。与解耦PMSM控制的一些最近结果相比,呈现的算法在方法中也具有优势。

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