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首页> 外文期刊>Proceedings of the IEE - Part A: Power Engineering >Generalized rotating-field theory of polyphase induction motors and its relationship to symmetrical-component theory
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Generalized rotating-field theory of polyphase induction motors and its relationship to symmetrical-component theory

机译:多相感应电动机的广义旋转场理论及其与对称分量理论的关系

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It is shown that the performance of an induction motor, having a symmetrically wound rotor and a stator which may be wound or connected in any conceivable way, can be uniquely specified by means of two sets of equations. The first set, the `internal???????? equations, is peculiar to the machine and expresses the phase voltages in terms of the phase currents and rotating-field parameters. These are based on a generalization of the counter-rotating field theory to include the effects of all space harmonics. The second set????????the `external???????? equations????????is peculiar to the connection and expresses the relationships between the phase voltages and currents, supply voltages and line impedances. These are the so-called `inspection equations???????? obtained by the simple application of Kirchhoff's laws. The complete performance of the machine can always be computed from the solutions of the two sets of equations on a phase-by-phase basis. It is also shown that, if the stator has windings whose axes are symmertically displaced, symmetrical-component theory is an alternative which enables to be computed on a per-phase basis whilst still including the effects of all space harmonics.
机译:已经示出,具有对称缠绕的转子和可以以任何可能的方式缠绕或连接的定子的感应电动机的性能可以通过两组方程式唯一地确定。第一组,`internal ????????方程是机器特有的方程,用相电流和旋转场参数表示相电压。这些是基于对旋转场理论的概括,包括所有空间谐波的影响。第二组?????????方程是连接所特有的,表示相电压和电流,电源电压和线阻抗之间的关系。这些就是所谓的“检验方程式”通过基尔霍夫定律的简单应用而获得。始终可以从两套方程的解中逐相计算出机器的完整性能。还显示出,如果定子具有其轴对称移动的绕组,则对称分量理论是一种替代方案,它可以基于每相进行计算,同时仍然包括所有空间谐波的影响。

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