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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Modeling and Real-Time Simulation of Internal Faults in Synchronous Generators With Parallel-Connected Windings
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Modeling and Real-Time Simulation of Internal Faults in Synchronous Generators With Parallel-Connected Windings

机译:并联绕组同步发电机内部故障的建模与实时仿真

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In large synchronous generators, the stator windings are usually parallel-connected in order to increase the machine current capacity. In analysis and modeling, the parallel windings are usually lumped into one equivalent stator winding since equal currents flow in these windings. However, when an internal fault occurs in the windings, the symmetry between the parallel windings is broken and different currents will flow in the parallel windings since unsymmetrical magnetic linkage may exist between the stator windings. The aim of this paper is to present a simulation model to investigate the internal fault currents of large synchronous generators with parallel-connected windings. This model is based on a modified winding function theory that takes into account all space harmonics. Moreover, the calculation of the machine inductances is made easier by the use of the machine electrical parameters instead of the geometrical ones. The simulation results illustrate the existence of different currents in parallel windings in the case of internal faults. Results are given for an implementation of the internal fault model in a real-time simulator of large power networks.
机译:在大型同步发电机中,定子绕组通常并联连接,以增加电机的电流容量。在分析和建模中,通常将并联绕组集中到一个等效定子绕组中,因为在这些绕组中流动的电流相等。然而,当在绕组中发生内部故障时,并联绕组之间的对称性被破坏,并且由于在定子绕组之间可能存在不对称的磁链,因此并联绕组中将流动不同的电流。本文的目的是提供一个仿真模型,以研究具有并联绕组的大型同步发电机的内部故障电流。该模型基于修改后的绕组函数理论,该理论考虑了所有空间谐波。此外,通过使用电机电气参数而不是几何参数,可以简化电机电感的计算。仿真结果说明了内部故障情况下并联绕组中存在不同的电流。给出了在大型电力网络的实时模拟器中实施内部故障模型的结果。

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