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Performance analysis of shunt, short shunt and long shunt self excited induction generator: Analysis of shunt, short shunt and long shunt SEIG

机译:分流,短分流和长分流自励感应发电机的性能分析:分流,短分流和长分流SEIG分析

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This paper presents a simple method for the steady state analysis of a self excited induction generator (SEIG) operating in shunt, short shunt and long shunt configurations. The method is based on solution of nonlinear equations obtained through impedance model of steady state equivalent circuit of a single phase SEIG. The circuit model of SEIG is developed in a generalized manner to accommodate all three modes of operation by changing series capacitance placements. The developed model is used to obtain various performance characteristics of SEIG configurations through computer simulations. For the veracity of proposed method, results of shunt model are validated through experimental investigation on a 1hp, 220/230 volts single phase induction motor. An analysis of results establishes the fact that for optimum SEIG performance it is imperative that shunt and series capacitances are chosen optimally for each configuration. The optimum value of shunt capacitance for shunt and short shunt models comes out to be the same. However, to get optimum values of capacitances for long shunt model a slightly different approach has to be adopted. The optimum values of shunt and series capacitances for each configuration are reported in the paper. Finally, the paper is concluded by comparing performances of three SEIG models operating with optimum parameters.
机译:本文提出了一种用于分流,短分流和长分流配置的自励感应发电机(SEIG)稳态分析的简单方法。该方法基于通过单相SEIG稳态等效电路的阻抗模型获得的非线性方程的解。 SEIG的电路模型以通用方式开发,可通过更改串联电容位置来适应所有三种工作模式。所开发的模型用于通过计算机仿真获得SEIG配置的各种性能特征。对于所提出方法的准确性,通过在1hp,220/230伏特单相感应电动机上进行的实验研究验证了并联模型的结果。对结果的分析表明,为了获得最佳SEIG性能,必须为每种配置选择最佳的并联电容和串联电容。得出并联和短并联模型的并联电容的最佳值是相同的。但是,为了获得长分流模型的最佳电容值,必须采用略有不同的方法。本文报告了每种配置的并联电容和串联电容的最佳值。最后,通过比较在最佳参数下运行的三个SEIG模型的性能来得出本文的结论。

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