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THE ANGULAR CHARACTERISTICS OF ASYNCHRONOUS MACHINES

机译:异步机器的角度特性

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摘要

Usually, the steady-state characteristics of alternating current machines, are in different modes analyzed: in terms of the slip concept (s)-for the asynchronous machines, or as a function of (θ)angle-for the synchronous machines with constant voltage (u_l=const.), respectively (ψ) angle for the synchronous machines with constant current (i_l=const). In reality, the both types of converters (asynchronous, synchronous)are characterized,in the stator frame,only by synchronous rotating magnetic fields, so a single type of converter exist: -the 'synchronous' converter, with a single type of fundamental characteristics-the angular(synchronous)characteristics. In this paper, starting from the general currents equation, respectively voltages equation, the angular characteristic m = f(θ) -for asynchronous machine with constant voltage, and m = f(ψ)-the torque characteristic at constant current are obtained; if the angle-slip, correspondence relation is utilized, the well known Kloss-formula is refunded. To compare the performances of the two machines is important to observe their maximum torques- m_(MA) for asynchronous, and m_(MS) for synchronous motor; the result is an advantage for asynchronous motor (generally, m_(MA)/m_(MS) > 1)for constant voltage fed, respectively an advantage for the synchronous motor(m_(MA)/m_(MS) < 1) with constant current.
机译:通常,交流电机的稳态特性会以不同的模式进行分析:就滑差概念而言(对于异步电机而言,或作为(θ)角度的函数)对于恒压同步电机而言对于具有恒定电流(i_l = const)的同步电机,分别(u_l = const。)和(ψ)角。实际上,这两种类型的转换器(异步,同步)仅在定子框架中具有同步旋转磁场的特征,因此存在一种类型的转换器:-“同步”转换器,具有一种基本类型的特征-角度(同步)特性。本文从一般电流方程,分别为电压方程出发,得到了恒压异步电机的角特性m = f(θ)-和m = f(ψ)-恒流转矩特性。如果利用角滑对应关系,则退还众所周知的克洛斯公式。比较两台机器的性能对于观察它们的最大转矩很重要-异步电动机为m_(MA),同步电动机为m_(MS);结果是,对于恒定电压馈电,异步电动机(通常为m_(MA)/ m_(MS)> 1)具有优势,而对于恒定电压,则对于同步电动机(m_(MA)/ m_(MS)<1)具有优势当前。

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