首页> 外文期刊>IEE proceedings. Part C, Generation, Transmission, and Distribution >General steady-state analysis of three-phase self-excited induction generator feeding three-phase unbalanced load/single-phase load for stand-alone applications
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General steady-state analysis of three-phase self-excited induction generator feeding three-phase unbalanced load/single-phase load for stand-alone applications

机译:独立应用的三相自励感应发电机向三相不平衡负载/单相负载供电的一般稳态分析

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摘要

A general steady-state analysis of a three-phase self-excited induction generator (SEIG) feeding a three-phase unbalanced load or single-phase load is presented. Symmetrical component theory is used to obtain relevant performance equations through sequence quantities. While the analysis of the system is inherently complicated due to unbalance and magnetic saturation, valid simplifications incorporated in the equivalent circuit for both forward and backward fields result in manageable equations suitable for computer simulation. Suitable non-linear parameters are chosen corresponding to appropriate saturation levels. Using this technique a 7.5 kW, 415/240 V, four-pole, three-phase induction motor operated as a SEIG is analysed under different unbalanced loads and compared with experimental results. The feasibility of using three-phase machines for such unbalanced operations has been critically examined for stand-alone power generation.
机译:提出了对三相不平衡负载或单相负载供电的三相自励感应发电机(SEIG)的一般稳态分析。对称分量理论用于通过序列量获得相关的性能方程。尽管由于不平衡和磁饱和,系统的分析本来就很复杂,但等效电路中对正向和反向磁场都进行了有效的简化,从而得出了适用于计算机仿真的易于管理的方程式。选择与适当的饱和度相对应的适当的非线性参数。使用这种技术,在不同的不平衡负载下分析了作为SEIG的7.5 kW,415/240 V,四极,三相感应电动机,并将其与实验结果进行了比较。对于独立发电,已经严格审查了将三相电机用于此类不平衡运行的可行性。

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