Magnetic Equivalent Circuit Model of a Dual Three-Phase PMSM with Winding Short Circuit

被引:0
|
作者
Forstner, Gabriel [1 ]
Kugi, Andreas [1 ]
Kemmetmueller, Wolfgang [1 ]
机构
[1] TU Wien, Automat & Control Inst, Vienna, Austria
关键词
permanent magnet synchronous motor (PMSM); multi-phase; magnetic equivalent circuit (MEC); model calibration; winding short circuit; DESIGN;
D O I
暂无
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Multi-phase electric machines are frequently used in applications where a high system reliability is required. An accurate but computationally simple mathematical model of these electric machines is essential for the development of model-based control and fault detection strategies. Typically, fundamental wave models (dq0-models) are utilized for this task. They, however, exhibit a low accuracy for motor designs or in operating ranges where magnetic saturation or non-fundamental wave characteristics is relevant. In this article, magnetic equivalent circuit (MEC) modeling is utilized to derive a highly accurate model for a dual three-phase permanent magnet synchronous motor (PMSM). Thereby, graph theory is applied to both the electric and magnetic system to systematically derive a mathematical model of minimum order. The proposed approach allows for an accurate prediction of the system behavior in the entire operating range, including the case of a winding short circuit. The feasibility and high accuracy of the proposed model is proven by a comparison of the model with measurement results.
引用
收藏
页码:1177 / 1182
页数:6
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