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Design of optimal-robust speed T-S fuzzy controller for a wounded rotor induction motor coupled with a nonlinear load

机译:带有非线性负载的绕线转子感应电动机的最优鲁棒速度T-S模糊控制器设计

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This paper introduces designing of a Takagi-Sugeno (T-S) fuzzy, state feedback controller so as to have optimal and robust full-range speed control over the wounded rotor induction motor. A slip energy recovery drive system, using 12-pulse converter and a shunt chopper is used as a modified system to drive a slip ring induction motor, which is coupled with a class of nonlinear uncertain load. Using parallel distributed compensator (PDC) scheme, the control law is obtained by minimizing linear quadratic regulator (LQR) cost function and in parallel maximizing the allowed norm bounded uncertainty of the system parameters. Finally, illustrative simulation results represented to validate the performance of the proposed controller.
机译:本文介绍了Takagi-Sugeno(T-S)模糊状态反馈控制器的设计,以便对缠绕的转子感应电动机具有最佳且鲁棒的全范围速度控制。一种使用12脉冲转换器和并联斩波器的滑移能量回收驱动系统作为改进的系统来驱动滑环感应电动机,该电动机与一类非线性不确定负载耦合。使用并行分布补偿器(PDC)方案,可以通过最小化线性二次调节器(LQR)成本函数并并行最大化系统参数的允许范数有界不确定性来获得控制律。最后,说明性的仿真结果表示可以验证所提出控制器的性能。

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