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Improvement of Three-Phase Unbalance Due to Connection of Dispersed Generator by Damper Windings of Synchronous Generator

机译:同步发电机的阻尼绕组改善了分散发电机连接导致的三相不平衡的改善

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摘要

It is well known in the numerical simulations of a synchronous generator that the damper winding contributes to suppressing three-phase circuit unbalance in power systems. However, an experimental study has not been performed yet. In this paper, we verify experimentally the suppression of three-phase unbalance by the damper windings. In order to simulate the three-phase unbalance, a 470-W dispersed generator of single-phase two-line type was connected to a three-phase laboratory-scale power system that included a 6-kVA synchronous generator. We measured and analyzed line voltages and currents as well as damper bar currents both with and without the dispersed generator. The influence of damper windings on the unbalance of the three-phase circuit was also investigated. The results show that the damper winding contributes to improving the three-phase unbalance.
机译:在同步发电机的数值模拟中众所周知,阻尼器绕组有助于抑制电力系统中的三相电路不平衡。但是,尚未进行实验研究。在本文中,我们通过实验验证了阻尼绕组对三相不平衡的抑制作用。为了模拟三相不平衡,将单相两线式470 W分散式发电机连接到包含6 kVA同步发电机的三相实验室规模的电力系统。我们测量并分析了有或没有分散发电机时的线路电压和电流以及阻尼棒电流。还研究了阻尼器绕组对三相电路不平衡的影响。结果表明,阻尼绕组有助于改善三相不平衡。

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