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Capacitance requirements of a three-phase induction generator self-excited with a single capacitance and supplying a single-phase load

机译:具有单电容自激并提供单相负载的三相感应发电机的电容要求

摘要

This paper presents a practical method for computing the minimum capacitance required to initiate voltage build-up in a three-phase induction generator self-excited with a single capacitance and supplying a single-phase load. Attention is focused on the Steinmetz connection which gives superior performance over the plain single-phasing mode of operation. From a consideration of the input impedance of the induction generator and the self-excitation conditions, two nonlinear equations are obtained. Solution of one equation using the Secant method enables the excitation frequency to be determined, and the minimum excitation capacitance can be calculated from the second equation. This solution technique is subsequently employed in an iterative procedure for computing the capacitance required to maintain the terminal voltage at a preset value when the generator is supplying load. Experimental results obtained on a 2-kW induction machine are presented to verify the theoretical analysis where possible.
机译:本文提出了一种实用的方法,用于计算在具有单个电容并提供单相负载的自感应三相感应发电机中启动电压建立所需的最小电容。注意力集中在Steinmetz连接上,与普通的单相工作模式相比,该连接具有出色的性能。考虑到感应发电机的输入阻抗和自励磁条件,得出了两个非线性方程。使用Secant方法求解一个方程式可以确定励磁频率,并且可以根据第二个方程计算最小励磁电容。随后在迭代过程中采用此解决方案技术,以计算在发电机提供负载时将端子电压保持在预设值所需的电容。提出了在2kW感应电机上获得的实验结果,以验证理论分析。

著录项

  • 作者

    Chan TF; Lai LL;

  • 作者单位
  • 年度 2002
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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