دانلود مقاله ISI انگلیسی شماره 144127
ترجمه فارسی عنوان مقاله

ویژگی های دینامیکی سیستم دنده موتور تحت باربره ها و گذرهای ولتاژ

عنوان انگلیسی
Dynamic characteristics of motor-gear system under load saltations and voltage transients
کد مقاله سال انتشار تعداد صفحات مقاله انگلیسی
144127 2018 16 صفحه PDF
منبع

Publisher : Elsevier - Science Direct (الزویر - ساینس دایرکت)

Journal : Mechanical Systems and Signal Processing, Volume 100, 1 February 2018, Pages 1-16

ترجمه کلمات کلیدی
سیستم دنده سیاره ای ویژگی های پویا، مدل شبکه نفوذپذیری، سیستم موتور، باران شستشو، گذرهای ولتاژ،
کلمات کلیدی انگلیسی
Planetary gear system; Dynamic characteristics; Permeance network model; Motor system; Load saltations; Voltage transients;
پیش نمایش مقاله
پیش نمایش مقاله  ویژگی های دینامیکی سیستم دنده موتور تحت باربره ها و گذرهای ولتاژ

چکیده انگلیسی

In this paper, a dynamic model of a motor-gear system is proposed. The model combines a nonlinear permeance network model (PNM) of a squirrel-cage induction motor and a coupled lateral-torsional dynamic model of a planetary geared rotor system. The external excitations including voltage transients and load saltations, as well as the internal excitations such as spatial effects, magnetic circuits topology and material nonlinearity in the motor, and time-varying mesh stiffness and damping in the planetary gear system are considered in the proposed model. Then, the simulation results are compared with those predicted by the electromechanical model containing a dynamic motor model with constant inductances. The comparison showed that the electromechanical system model with the PNM motor model yields more reasonable results than the electromechanical system model with the lumped-parameter electric machine. It is observed that electromechanical coupling effect can induce additional and severe gear vibrations. In addition, the external conditions, especially the voltage transients, will dramatically affect the dynamic characteristics of the electromechanical system. Finally, some suggestions are offered based on this analysis for improving the performance and reliability of the electromechanical system.