Finite element analysis of a modular brushless wound rotor synchronous machine

被引:4
|
作者
Huong Thao Le Luong [1 ,2 ]
Henaux, Carole [2 ]
Messine, Frederuc [2 ]
Bueno-Mariani, Guilherme [1 ]
Voyer, Nicolas [1 ]
Mollov, Stefan [1 ]
机构
[1] MERCE, Power Elect Syst Dept, Rennes, France
[2] Lab Plasma & Convers Energie LAPLACE, GREM3, Toulouse, France
来源
关键词
permanent magnet motors; machine control; permanent magnet machines; stators; synchronous motors; rotors; brushless machines; finite element analysis; synchronous machines; torque; machine windings; modular brushless wound rotor synchronous machine; comparative study; different modular brushless wound rotor synchronous machines; fractional slot double-layer concentrated windings; fault-tolerance capability; highest output performance; fundamental winding factor; stator slots; poles; kW; 7000; rpm; 15 different machines; different phase; slot; pole combinations; dimensional finite element method; torque ripple; machine efficiency; seven-phase; seven-slot; six-pole machine; high torque density; high nominal efficiency; reference design surface-mounted permanent magnet synchronous machine; MB-WRSM presents interesting performance features; power; 3; 67; DESIGN; MOTOR; SLOT;
D O I
10.1049/joe.2018.8206
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This study presents a comparative study of different modular brushless wound rotor synchronous machines (MB-WRSM) using non-overlapping fractional slot double-layer concentrated windings. The goal of the study is to highlight the structure which offers the best fault-tolerance capability and the highest output performance. The fundamental winding factor is calculated by using the method based on voltage phasors as a significant criterion to select the preferred numbers of phases, stator slots, and poles. With the limited number of poles for a small machine (3.67kW/7000rpm), 15 different machines for different phase/slot/pole combinations are analysed using two- dimensional (2D) finite element method and compared according to three criteria: torque density, torque ripple, and machine efficiency. The seven-phase/seven-slot/six-pole machine is chosen with the best compromise of high torque density, small torque ripple (3.89%), and high nominal efficiency (95%). This machine is then compared with a reference design surface-mounted permanent magnet synchronous machine (SM-PMSM). The simulation results are discussed and demonstrate that the MB-WRSM presents interesting performance features, such as extended field weakening range, with overall performance closely matching that of an equivalent SM-PMSM.
引用
收藏
页码:3521 / 3526
页数:6
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