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A Detailed Analytical Model of a Salient-Pole Synchronous Generator Under Dynamic Eccentricity Fault

机译:动态偏心故障下凸极同步发电机的详细分析模型

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In this paper, a new detailed analytical model of a salient-pole synchronous generator (SPSG) under dynamic eccentricity (DE) is presented which is capable of accounting for the effects of magnetic saturation, rotor pole shoe saliency, and space distribution of stator phases and rotor winding. A real form of rotor pole shoes is taken into account in the proposed SPSG air-gap function distribution. Saturation effects incorporate into the air-gap function of SPSG as a simple proposed analytic equation that varies by the generator load and operating condition. Furthermore, variation of the resulted air-gap distribution of SPSG in the presence of DE fault is then computed precisely and the inverse air-gap function calculated using Fourier series in order to compute time varying self- and mutual-inductances of stator phases and rotor winding via the modified winding function approach (MWFA). The computed inductances are used for simulation of SPSG and studying the frequency spectrum of stator line current in the presence of DE fault. It is shown that the results of proposed model are closer to the finite-element (FE) computation results compared to the available analytic models.
机译:在本文中,提出了一种新的详细的分析模型,该模型在动态偏心率(DE)下凸极同步发电机(SPSG)能够解决磁饱和,转子极靴凸度和定子相空间分布的影响和转子绕组。在建议的SPSG气隙功能分配中考虑了转子极靴的实际形式。饱和效应作为一个简单建议的解析方程并入SPSG的气隙函数中,该方程随发电机负载和运行条件而变化。此外,然后精确计算出存在DE故障时SPSG气隙分布的变化,并使用傅里叶级数计算逆气隙函数,以计算定子相和转子的时变自感和互感通过改进的绕组函数法(MWFA)进行绕组。计算出的电感用于SPSG的仿真,并研究存在DE故障时定子线电流的频谱。结果表明,与可用的解析模型相比,所提出模型的结果更接近有限元(FE)计算结果。

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