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首页> 外文期刊>Russian electrical engineering >Electromechanical Resources of a Frequency-Controlled Synchronous Electric Drive in Continuous Periodic Operating Modes
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Electromechanical Resources of a Frequency-Controlled Synchronous Electric Drive in Continuous Periodic Operating Modes

机译:连续周期运行模式下频率控制的同步电驱动器的机电资源

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摘要

The possibility of increasing overload capability and reducing power loss in a frequency-controlled synchronous electric drive operating in a continuous periodic mode is considered. A definition of a "continuous periodic mode" is given. A functional diagram of vector control system of synchronous electric drive is presented. The statement of a problem in the study of electric drives is formulated. A modeling method of a synchronous electric drive making it possible to recognize the maximum loads upon heating of a synchronous motor is described. Results of computer modeling of the continuous periodic operational mode of a salient pole motor with continuous and optimal regulation of armature magnetic flux are presented. The resource of synchronous motor is determined on the basis of the criterion of motor torque allowable upon heating. A comparative analysis of power loss of synchronous motor in the continuous periodic mode with continuous and optimal regulation of armature magnetic flux is carried out. The conclusion is drawn that the use of optimal regulation of armature magnetic flux in vector control systems of synchronous electric drives operating in continuous periodic mode is efficient.
机译:考虑了在以连续周期模式运行的频率控制的同步电驱动器中增加过载能力并减少功率损耗的可能性。给出了“连续周期模式”的定义。给出了同步电驱动矢量控制系统的功能框图。制定了有关电力驱动研究的问题陈述。描述了一种同步电驱动的建模方法,该建模方法使得可以在加热同步电动机时识别最大负载。给出了凸极电动机连续和最佳调节电枢磁通量的连续周期性运行模式的计算机建模结果。同步电动机的资源根据加热时允许的电动机转矩标准确定。通过对电枢磁通量进行连续,最优调节,对连续周期同步电动机的功率损耗进行了比较分析。结论是,在连续周期性模式下运行的同步电驱动器矢量控制系统中,电枢磁通量的最佳调节是有效的。

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