Phase balancing for a self-excited induction generator

T. Chan, L. Lai
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引用次数: 6

Abstract

This paper describes a phase-balancing scheme for a three-phase self-excited induction generator (SEIG) which supplies single-phase loads. It is demonstrated that perfect phase balance can be achieved using a modified Steinmetz connection, provided that the positive-sequence impedance angle of the SEIG exceeds 2/spl pi//3 rad. From the phasor diagram, the conditions for perfect balance are established. It is found that the values of phase converter elements as well as the load resistance are functions of the positive-sequence admittance and impedance angle of the induction generator. Using the method of symmetrical components, the input impedance of the SEIG can be determined and solution of the equivalent circuit is formulated as a function minimization problem. The pattern search method of Hooke and Jeeves is employed for minimizing the impedance function, which enables the machine variables to be determined. It is further shown that, when the auxiliary load resistance is absent, perfect phase balance can still be achieved when the impedance angle of the SEIG is equal to 2/spl pi//3 rad. Feasibility of the phase-balancing schemes and the validity of the theoretical analysis are confirmed by experiments on a 2.2 kW induction machine.
自激感应发电机的相位平衡
本文介绍了单相负载供电的三相自激感应发电机(SEIG)的相位平衡方案。结果表明,当SEIG的正序阻抗角大于2/spl pi//3 rad时,采用改进的Steinmetz连接可以实现完全相位平衡,并从相量图中建立了完全平衡的条件。结果表明,变相元件的值和负载电阻是感应发电机正序导纳和阻抗角的函数。利用对称分量法,可以确定等效电路的输入阻抗,并将等效电路的求解公式化为函数最小化问题。采用Hooke和Jeeves的模式搜索方法对阻抗函数进行最小化,从而确定机器变量。进一步表明,当辅助负载电阻不存在时,当SEIG的阻抗角等于2/spl pi//3 rad时,仍然可以实现完美的相位平衡。通过在2.2 kW感应电机上的实验,验证了相平衡方案的可行性和理论分析的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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