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An H-infinity approach to optimal control of doubly-fed reluctance machines

机译:H无限方法优化双馈磁阻电机的控制

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摘要

Abstract: An H-infinity approach is developed for the problem of nonlinear optimal control of doubly-fed reluctance machines. The dynamic model of the machines is subjected to linearization round local operating points, through Taylor series expansion and the computation of Jacobian matrices. For the linearized model an H-infinity feedback controller is designed, capable of compensating for the modelling error of the approximate linearization as well as for external perturbations affecting the machine. The computation of the feedback control gain is based on the solution of an algebraic Riccati equation that is performed at each iteration of the control algorithm. Lyapunov stability analysis for the control loop of the reluctance machine arrives at an H-infinity tracking performance criterion, and finally the asymptotic stability of the control loop is demonstrated. The excellent tracking performance of the H-infinity control method is confirmed through simulation experiments.
机译:摘要:针对双馈磁阻电机的非线性最优控制问题,开发了一种H无限方法。通过泰勒级数展开和雅可比矩阵的计算,对机器的动力学模型进行局部操作点周围的线性化处理。对于线性化模型,设计了H无限反馈控制器,该控制器能够补偿近似线性化的建模误差以及影响机器的外部扰动。反馈控制增益的计算基于在控制算法的每次迭代中执行的代数Riccati方程的解。对磁阻电机控制环的Lyapunov稳定性分析得出了H无限跟踪性能准则,最后证明了控制环的渐近稳定性。仿真实验证实了H无限控制方法的出色跟踪性能。

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