TY - JOUR
T1 - Design and Parametric Optimization of a Double-sided Linear Induction Motor for Hyperloop Pod
AU - Goksun, Bahaddin
AU - Sen, Ismet
AU - Kuzucu, Musap
AU - Ergun, Bati Bren
AU - Kocaarslan, Ilhan
AU - Gulbahce, Mehmet Onur
N1 - Publisher Copyright:
© 2025 CES.
PY - 2025/3
Y1 - 2025/3
N2 - The hyperloop idea, which is one of the most eco-friendly, low-carbon emissions, and fossil fuel-efficient modes of transportation, has recently become quite popular. In this study, a double-sided linear induction motor (LIM) with 500 W of output power, 60 N of thrust force and 200 V/38.58 Hz of supply voltage was designed to be used in hyperloop development competition hosted by the scientific and technological research council of turkey (TÜBİTAK) rail transportation technologies institute (RUTE). In contrast to the studies in the literature, concentrated winding is preferred instead of distributed winding due to mechanical constraints. The electromagnetic design of LIM, whose mechanical and electrical requirements were determined considering the hyperloop development competition, was carried out by following certain steps. Then, the designed model was simulated and analyzed by finite element method (FEM), and the necessary optimizations have been performed to improve the motor characteristics. By examining the final model, the applicability of the concentrated winding type LIM for hyperloop technology has been investigated. Besides, the effects of primary material, railway material, and mechanical air-gap length on LIM performance were also investigated. In the practical phase of the study, the designed LIM has been prototyped and tested. The validation of the experimental results was achieved through good agreement with the finite element analysis results.
AB - The hyperloop idea, which is one of the most eco-friendly, low-carbon emissions, and fossil fuel-efficient modes of transportation, has recently become quite popular. In this study, a double-sided linear induction motor (LIM) with 500 W of output power, 60 N of thrust force and 200 V/38.58 Hz of supply voltage was designed to be used in hyperloop development competition hosted by the scientific and technological research council of turkey (TÜBİTAK) rail transportation technologies institute (RUTE). In contrast to the studies in the literature, concentrated winding is preferred instead of distributed winding due to mechanical constraints. The electromagnetic design of LIM, whose mechanical and electrical requirements were determined considering the hyperloop development competition, was carried out by following certain steps. Then, the designed model was simulated and analyzed by finite element method (FEM), and the necessary optimizations have been performed to improve the motor characteristics. By examining the final model, the applicability of the concentrated winding type LIM for hyperloop technology has been investigated. Besides, the effects of primary material, railway material, and mechanical air-gap length on LIM performance were also investigated. In the practical phase of the study, the designed LIM has been prototyped and tested. The validation of the experimental results was achieved through good agreement with the finite element analysis results.
KW - Finite element analysis (FEA)
KW - Hyperloop
KW - Linear induction motor (LIM)
KW - Motor design
UR - http://www.scopus.com/inward/record.url?scp=105002654112&partnerID=8YFLogxK
U2 - 10.30941/CESTEMS.2025.00009
DO - 10.30941/CESTEMS.2025.00009
M3 - Article
AN - SCOPUS:105002654112
SN - 2096-3564
VL - 9
SP - 36
EP - 45
JO - CES Transactions on Electrical Machines and Systems
JF - CES Transactions on Electrical Machines and Systems
IS - 1
ER -