控制理论(社会学)
稳健性(进化)
永磁同步电动机
电流回路
计算机科学
鲁棒控制
电子速度控制
终端滑动模式
电流(流体)
观察员(物理)
同步电动机
趋同(经济学)
滑模控制
病媒控制
控制工程
扰动(地质)
机器控制
循环(图论)
国家观察员
磁铁
控制系统
作者
Xiaozhuo Xu,Liangjie Wang,Zan Zhang,Zhonghua Wu
标识
DOI:10.1016/j.aej.2025.08.057
摘要
To address parameter mismatch and external load disturbance in permanent magnet synchronous motor (PMSM), a novel robust control for PMSM integrating deadbeat predictive current control (DPCC) and sliding mode observer (SMO) (NRCIDS) is proposed. Firstly, the mathematical models characterized by the PMSM dynamics and DPCC algorithm are derived. Subsequently, the robustness of DPCC against parameter variations is systematically investigated. Secondly, in the speed loop, the load disturbance is compensated by a speed loop disturbance observer. In order to reduce the chattering phenomenon of the conventional SMO, an improved exponential convergence law SMO is adopted. The dynamic response of the speed is improved by this approach, while the chattering phenomenon inherent in traditional SMO is significantly mitigated. Meanwhile, in the current loop, motor parameter disturbances are compensated by a novel terminal SMO. The proposed terminal observer suppresses chattering while it effectively reduces steady-state current error. The speed loop and current loop disturbance observers collaboratively compensate for system disturbances, thereby enhancing overall control performance. Finally, experimental results demonstrate that the proposed control strategy achieves superior performance in terms of dynamic response speed, disturbance suppression, and steady-state accuracy.
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