Please use this identifier to cite or link to this item: http://elar.urfu.ru/handle/10995/128570
Title: Experimental study on no-load loss characteristics of alternating current excitation motor
Authors: Xu, Weihui
Ruan, Yushuai
Wang, Weishu
He, Xiaoke
Issue Date: 2023
Publisher: Издательский дом «Ажур»
Citation: Experimental study on no-load loss characteristics of alternating current excitation motor / Weihui Xu, Yushuai Ruan, Weishu Wang, Xiaoke He. – Текст : электронный // Роль технического регулирования и стандартизации в эпоху цифровой экономики : сборник статей участников V Международной научно-практической конференции молодых ученых (Екатеринбург, 2 ноября 2023 г.) . – Издательский дом «Ажур» : Екатеринбург, 2023. – С. 511-523.
Abstract: The key technical problems of pumped storage alternating current excitation motor engineering in China need to be solved urgently. Herein, the no-load loss characteristic test of the 3MW alternating current excited motor was mainly carried out using the test prototype of the 3MW alternating current excitation motor. Further, with the aid of the finite element method, the numerical study of no-load loss characteristics of a 3MW alternating current excited motor was performed. No-load characteristics, no-load loss characteristics, the relationship between constant loss and voltage unit value, and the variation law of no-load core loss of the motor under different loads are carefully analyzed. The results demonstrate that under no-load condition when the applied voltage is less than the rated voltage, the voltage was proportional to the current. When the applied voltage was more significant than the rated voltage, the current increased with the voltage increase, but the relationship between the two was no longer proportional. The constant loss of the motor maintains a linear relationship with the square of the unit value of the voltage scale. When the square of the unit value of the voltage scale was zero, the loss was equivalent to the wind friction loss under no load. Core loss increases with the increase of load, and the greater the load, the faster the increase rate of the motor iron loss. The comparison deviation between the test and simulation results was less than 10%. The simulation and experimental results verify the effectiveness of the finite element modeling and finite element calculation method.
Keywords: ALTERNATING CURRENT EXCITATION MOTOR
EXPERIMENTAL RESEARCH
NUMERICAL RESEARCH
NO-LOAD LOSS
URI: http://elar.urfu.ru/handle/10995/128570
Conference name: V международная научно-практическая конференция молодых ученых «Роль технического регулирования и стандартизации в эпоху цифровой экономики»
V International Scientific and Practical Conference of Young Scientists "The Role of Technical Regulation and Standardization in the Era of the Digital Economy"
Conference date: 02.11.2023
RSCI ID: 55927761
ISBN: 978-5-91256-614-1
Origin: Роль технического регулирования и стандартизации в эпоху цифровой экономики. — Екатеринбург, 2023
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