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Selection of optimum excitation capacitance for a high (six) phase self excited induction generator

机译:为高(六个)相自兴奋的感应发电机的最佳激励电容选择

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High (more than three) phase self-excited induction generators (SEIGs) are evoking lots of interest amongst researchers off late. This may be attributed to better stability and reliability of these machines in general. This paper presents the study of a six phase self-excited induction generator (6Ph-SEIG) operating with optimum excitation capacitances. For this purpose detailed mathematical modeling of a six phase SEIG and its implementation in Simulink is achieved. Extraction of magnetizing characteristic and evaluation of optimum excitation capacitance are explained through conducted experimental investigation. The paper is concluded by reporting no-load voltage profile of six phase SEIG in the present case. An open stator winding, 2.2 KW induction machine connected for six phase operation is utilized for the analysis.
机译:高(三个以上)的一期自我激发的感应发电机(SEIGS)正在迟到的研究人员中唤起了很多兴趣。这可能归因于通常的这些机器的更好的稳定性和可靠性。本文介绍了具有最佳激励电容的六相自我激发发电机(6PH-SEIG)的研究。为此目的,实现了六相SEIG的详细数学建模及其在Simulink中的实现。通过进行实验研究,解释了磁化特性和最佳激发电容评价的提取。本文通过在当前情况下报告六个相段的无负载电压曲线来结束。用于分析的开放定子绕组,2.2千瓦感应机连接六相操作。

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