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Modeling, implementation and analysis of a high (six) phase self excited induction generator
Journal of Electrical Systems and Information Technology Pub Date : 2018-12-01 , DOI: 10.1016/j.jesit.2016.12.016
M. Faisal Khan , M. Rizwan Khan , Atif Iqbal

Abstract Dual d-q model of six phase-self excited induction generator (6Ph-SEIG) developed in stationary reference frame is proposed in this paper. Developed model, implemented in terms of a simulation model, is utilized to evaluate no-load and on-load characteristics along with the estimation of dynamic parameters of studied 6Ph-SEIG for each working condition. Simulation results are verified on the implemented 6Ph-SEIG test-rig with high accuracy. Inherent loading limit of 6Ph-SEIG is obtained as 68% of the rated capacity with the evaluated optimum excitation capacitance of 4 μF per phase. The reactive power of SEIG varies from 4400 var to 600 var from no-load to maximum load of 1377 W with a corresponding change in magnetizing current from 4 A to 0.64 A.

中文翻译:

一种高(六)相自励感应发电机的建模、实现和分析

摘要 本文提出了在静止参考系下开发的六相自激感应发电机(6Ph-SEIG)双dq模型。在仿真模型方面实施的开发模型用于评估空载和负载特性以及每个工作条件下研究的 6Ph-SEIG 的动态参数的估计。仿真结果在实施的 6Ph-SEIG 测试台上得到了高精度验证。6Ph-SEIG 的固有负载限制为额定容量的 68%,经评估的最佳激励电容为每相 4 μF。SEIG 的无功功率从 4400 无功变化到 600 无功,从空载到最大负载 1377 W,相应的磁化电流从 4 A 变化到 0.64 A。
更新日期:2018-12-01
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