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Direct Control of Bearingless Permanent Magnet Slice Motor Based on Active Disturbance Rejection Control

机译:基于主动扰动抑制控制的无轴承永磁体切片直接控制

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摘要

Aiming at the problem that the suspension force under disturbance of the permanent magnet slice rotor is difficult to be accurately detected, a new displacement controller based on the active disturbance rejection control is proposed. Firstly, the mathematic models of torque and suspension forces of the bearingless permanent magnet slice motor (BPMSM) are deduced. Secondly, the active disturbance rejection (ADR) controller is constructed. Thirdly, the BPMSM direct control system based on the ADR controller is built and the simulation is carried out, the correctness of the mathematic model and the control algorithm are verified. Finally, the displacement controller is used for a 4 & x00A0;kW prototype. Compared with the traditional PI controller, the floating stability time and the disturbed recovery time of the slice rotor are both decreased, the vibration displacement of rotor in stable state is reduced by 44 & x0025;.
机译:旨在解决难以精确地检测到永磁体切片转子的悬架力的悬架力,提出了一种基于主动扰动抑制控制的新位移控制器。首先,推导出无轴承永磁体切片电机(BPMSM)的扭矩和悬架力的数学模型。其次,构造了主动扰动抑制(ADR)控制器。第三,建立了基于ADR控制器的BPMSM直接控制系统,进行了模拟,验证了数学模型的正确性和控制算法。最后,位移控制器用于4&x00a0; kw prototype。与传统的PI控制器相比,切片转子的浮动稳定时间和干扰恢复时间都减小,转子在稳定状态下的振动位移减少了44&x0025;

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