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Damper Currents Simulation of Large Hydro-Generator Using the Combination of FEM and Coupled Circuits Models

机译:有限元与耦合电路模型相结合的大型水轮发电机阻尼电流仿真

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摘要

A high-order model is required for an accurate simulation of the synchronous alternator spatial harmonic content. However, some hydro-generators have fractional slot per pole per phase windings, and carrying transient simulations of these machines with finite-element software often leads to unacceptable computation time. This paper details a large alternator modeling method that provides an excellent compromise between accuracy and speed. It is a combination of magnetostatic finite element method and coupled circuits model. The paper details the construction of this model and explains the procedures to identify several model parameters from experimental data as the standstill frequency response and open and short circuit tests. The effectiveness of this modeling method is validated by the study of a large 109-MVA hydrogenerator having an instrumented rotor pole. We compare transient and steady-state simulation waveforms of the damper bar currents during sudden two- and three-phase short-circuit to the experimental measures.
机译:同步发电机空间谐波含量的精确仿真需要一个高阶模型。但是,某些水轮发电机每相绕组的每极每极都有分数槽,并且使用有限元软件对这些电机进行瞬态仿真通常会导致计算时间过长。本文详细介绍了一种大型交流发电机建模方法,该方法在精度和速度之间提供了出色的折衷方案。它是静磁有限元法和耦合电路模型的结合。本文详细介绍了该模型的构建,并说明了从实验数据中识别几个模型参数的过程,如静止频率响应以及开路和短路测试。通过对大型109-MVA水轮发电机的转子极进行了研究,验证了该建模方法的有效性。我们比较了在突然的两相和三相短路期间阻尼棒电流的瞬态和稳态仿真波形与实验方法。

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