Calculation of Additional Losses in Windings of Permanent Magnet Motors Using the Femm Package

Author(s):  
Leonid Pakhomin ◽  
◽  
Sergey Pakhomin ◽  

The calculation of additional losses in the windings of permanent magnet synchronous motors is proposed to be performed using the FEMM package. The article describes a system of equations that allows to determine the distribution of instantaneous values of currents in the elementary wires of the winding. As an example, a low-voltage permanent magnet motor with concentrated windings on a stator is considered. To determine the matrix of inductances of elementary phase wires, the FEMM program was used. To speed up the calculations, a control script for FEMM (in the lua scripting language) was used, which made it possible to automatically de-termine the matrix of own and mutual inductances for a given distribution of elementary wires in a slot. The re-sults of calculating the instantaneous values of the currents in the elementary wires of the winding are used to determine the additional losses. Variants of the distribution of elementary conductors in a slot are considered, the corresponding coefficients of increasing losses in the winding are determined.

Energies ◽  
2020 ◽  
Vol 13 (14) ◽  
pp. 3566
Author(s):  
Claudio Bianchini ◽  
Ambra Torreggiani ◽  
Matteo Davoli ◽  
Alberto Bellini

The request for high efficiency motor paves the way for the replacement of induction motors with permanent magnet synchronous motors. Although the efficiency is increased, for medium and high power, the current ripple causes significant additional losses in the magnet and lamination; and, high temperature can lead to demagnetization. In this paper, a new rotor topology is proposed and compared to a traditional surface permanent magnet rotor to reduce the magnet losses and protect them from demagnetization. A reference surface permanent magnet machine is compared with the proposed one in terms of performance and magnet losses. Both analytical and experimental analysis are carried out and discussed.


2020 ◽  
Vol 64 (1-4) ◽  
pp. 1461-1468
Author(s):  
Ting Dong ◽  
Juyan Huang ◽  
Bing Peng ◽  
Ling Jian

The calculation accuracy of unbalanced magnetic forces (UMF) is very important to the design of rotor length, because it will effect the shaft deflection. But in some permanent magnet synchronous motors (PMSMs) with fractional slot concentrated windings (FSCW), the UMF caused by asymmetrical stator topology structure is not considered in the existing deflection calculation, which is very fatal for the operational reliability, especially for the PMSMs with the large length-diameter ratio, such as submersible PMSMs. Therefore, the part of UMF in the asymmetrical stator topology structure PMSMs caused by the choice of pole-slot combinations is analysized in this paper, and a more accurate rotor deflection calculation method is also proposed.


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