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自抗擾控制器在同步電機調速系統中的應用

Application of active disturbance rejection controllers to the adjusting speed system of synchronous motors

  • 摘要: 針對同步電機磁場定向控制系統受負載擾動、電機參數變化影響問題,將自抗擾控制器(ADRC)應用于調速系統中.為解決傳統磁鏈觀測器存在的直流偏置和依賴電機參數的問題,提出了基于ADRC的磁鏈觀測器.仿真結果表明:ADRC對負載擾動和參數變化具有較強的魯棒性,并且響應速度快、超調小,具有優良的穩態和動態性能;改進后的磁鏈觀測器能有效抑制直流偏置和參數變化帶來的影響,提高磁鏈的觀測精度.

     

    Abstract: In order to deal with the negative effects of load disturbances and parametric perturbation on the field oriented control system of synchronous motors, an active disturbance rejection controller (ADRC) was transplanted into the speed control of synchronous motors. A novel flux observer based on ADRC was proposed to solve the problems such as the direct current bias and parametric perturbation of conventional flux observers. Simulation results show that the ADRC ensures very good robustness to load disturbances and parameter variation with fast response, small overshoot, and good static and dynamic performances. The improved flux observer not only restrains effectively the direct current bias and parametric perturbation, but enhances the precision of the flux.

     

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