Torque, Power, Losses, and Heat Calculation of a Transverse Flux Reluctance Machine With Soft Magnetic Composite Materials and Disk-Shaped Rotor

被引:63
作者
Doering, Jan [1 ]
Steinborn, Gunar [1 ]
Hofmann, Wilfried [1 ]
机构
[1] Dresden Univ Technol TU Dresden, Dept Elect Machines & Drives, Inst Elect Power Engn, Fac Elect & Comp Engn,Sch Engn Sci, D-01062 Dresden, Germany
关键词
Copper tubes; electrical machines; reluctance motors; soft magnetic composites (SMCs); thermal model; transverse flux; MODEL; MOTOR;
D O I
10.1109/TIA.2014.2356646
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In this paper, the authors introduce a type of transverse flux reluctance machines. These machines work without permanent magnets or electric rotor excitation and hold several advantages, including a high power density, high torque, and compact design. Disadvantages are a high fundamental frequency and a high torque ripple that complicates the control of the motor. The device uses soft magnetic composites (SMCs) for the magnetic circuit, which allows complex stator geometries with 3-D magnetic flux paths. The winding is made from hollow copper tubes, which also form the main heat sink of the machine by using water as a direct copper coolant. Models concerning the design and computation of the magnetic circuit, torque, and the power output are described. A crucial point in this paper is the determination of hysteresis and eddy-current losses in the SMC and the calculation of power losses and current displacement in the copper winding. These are calculated with models utilizing a combination of analytic approaches and finite-element method simulations. Finally, a thermal model based on lumped parameters is introduced, and calculated temperature rises are presented.
引用
收藏
页码:1494 / 1504
页数:11
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