Abstract:The producing principle of radial suspension force for bearingless permanent magnet synchronous motors (BPMSMs) is elaborated. And then, according to the magnetic circuit principle of BPMSMs, the analytical model of the inductance matrix is obtained. Based on the inductance model and virtual displacement principle, a relatively accurate mathematical model of BPMSMs is derived. This analytical model takes the rotor eccentricity and the coupling relationship of the windings into account, and could describe the radial suspension force and electromagnetic torque more accurately. In order to confirm the validity and feasibility of this model, experimental studies are carried out on a surface-mounted BPMSM. Experimental results indicate that the static precision and dynamic response of the BPMSM can be effectively enhanced by using the proposed model.
孙晓东, 陈龙, 杨泽斌, 朱熀秋, 左文全, 施凯. 考虑偏心及绕组耦合的无轴承永磁同步电机建模[J]. 电工技术学报, 2013, 28(3): 63-70.
Sun Xiaodong, Chen Long, Yang Zebin, Zhu Huangqiu, Zuo Wenquan, Shi Kai. Modeling of a Bearingless Permanent Magnet Synchronous Motor Considering Rotor Eccentricity and Coupling Relationship of Windings. Transactions of China Electrotechnical Society, 2013, 28(3): 63-70.
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