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A general theory of phase transformation

机译:相变的一般理论

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A general theory of phase transformation by means of static pulsating-flux transformers is presented, i.e. m to n phases on a k-limbed transformer, m, n, and k being integers greater than unity. This is derived from the requirements of e.m.f. and m.m.f. balance. Except in the so-called 2-phase case, freedom of choice in selecting the winding elements in each phase always exists and it is always possible to produce a phase transformer for any required transformation ratio and phase shift. It is shown that the effective phase-turns are in general complex and that the ratio of voltage transformation is different from that for current transformation, both being complex and having equal and opposite phase-angles. Equality of primary and secondary power factors is thus established. In the examples given, the Scott and Leblanc connections for 2- to 3-phase transformation are shown to be duals. Two 3- to 4-phase connections are worked out in detail, and the symmetrical phasetransformers used with mercury-arc supplies are discussed briefly.
机译:提出了利用静态脉动磁通互感器进行相变的一般理论,即在k阶互感器上m至n相,m,n和k为大于1的整数。这是根据e.m.f.和m.m.f.平衡。除了在所谓的两相情况下,总是存在选择每个相中的绕组元件的选择自由,并且总是可以制造用于任何所需的变比和相移的相变。结果表明,有效的相位匝数通常很复杂,并且电压变换的比率与电流变换的比率不同,它们既复杂又具有相等且相反的相角。因此,建立了初级和次级功率因数的相等性。在给出的示例中,用于2至3相转换的Scott和Leblanc连接显示为对偶。详细研究了两个3至4相连接,并简要讨论了与汞弧电源一起使用的对称相变压器。

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