Calculation Method of the Static Characteristics of an Asynchronous Electric Drive Under Cyclic Load

Author(s):  
Vasyl Malyar ◽  
Volodymyr Maday ◽  
Orest Hamola ◽  
Ivanna Vasylchyshyn
Author(s):  
Konstantin Tolkachev ◽  
Aleksandr Pugachev

The new way of control by speed the asynchronous electric drive with the phase-wound rotor is offered. A static conditions of work are considered, expressions for calculation of the electromagnetic moments, factors of capacities and other power parameters are given.


Author(s):  
Igor' Polyuschenkov

The materials on the development of asynchronous electric drive with scalar control are given. The technical solutions associated with the design of software and hardware parts of the microprocessor control system are described. When developed, tools of model-based programming technique are used.


Author(s):  
I. V. Shestakov ◽  
N. R. Safin

The paper introduces the results of mathematical simulation of the operating modes of an asynchronous motor when powered by a sinusoidal voltage source and a width-modulated voltage pulse source. The study shows the possibilities of increasing the energy efficiency of an asynchronous electric drive. Findings of research show the feasibility of studying the switching of the motor power source from a pulse width-modulated voltage to a sinusoidal voltage source in the nominal operating mode in order to increase the energy efficiency of the electric drive


2019 ◽  
Vol 144 (3) ◽  
pp. 32-39
Author(s):  
B.I. Mokin ◽  
◽  
O.B. Mokin ◽  
V.V. Horeniuk ◽  
◽  
...  

2018 ◽  
Vol 141 (2) ◽  
Author(s):  
Hailong Cui ◽  
Huan Xia ◽  
Dajiang Lei ◽  
Xinjiang Zhang ◽  
Zhengyi Jiang

In this paper, a calculation method based on matlab partial differential equations (PDE) tool is proposed to investigate the static characteristics of aerostatic spherical bearings. The Reynolds equation of aerostatic spherical bearings is transformed into a standard elliptic equation. The effects of geometric parameters and operational conditions on the film pressure, bearing film force, and stiffness are studied. The axial and radial eccentricities result in different film pressure distributions; the bearing film force and stiffness are significantly influenced by geometric parameters and operational conditions. The relative optimal parameters are confirmed based on the calculation results. A comparison between the numerical and experimental results is also presented. The highest relative error between the numerical results and the experimental data is 11.3%; the calculation results show good agreements with the experimental data, thus verifying the accuracy of the calculation method used in this paper.


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