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Parameter identification from SSFR tests and d-q model validation of synchronous generator

机译:SSFR测试中的参数识别和同步发电机的d-q模型验证

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This paper introduces a fast parameter identification technique for a two-order d-q model of a synchronous generator from Standstill Frequency Response (SSFR) tests. This identification method is based on a modified SSFR test and the curves of the no-load and sustained short-circuit tests. This allows the lowest SSFR frequency to be 0.01Hz instead of 0.001Hz. The phase and field resistances are measured from fast and precise DC tests during the SSFR test. In this work, the value of the unsaturated synchronous inductance is defined from the no-load air gap linearization and the short-circuit saturation curve. This definition fits better when the saturation is considered and we present how to implement this approach with the Matlab-Simulink SimPowerSystem standard d-q models. Validations are made using sudden short-circuit tests at nominal field current to evaluate d-q model performances with magnetic saturation.
机译:本文从静止频率响应(SSFR)测试中,介绍了一种用于同步发电机的双阶D-Q模型的快速参数识别技术。该识别方法基于修改的SSFR测试和无负载和持续的短路测试的曲线。这允许最低SSFR频率为0.01Hz而不是0.001Hz。在SSFR测试期间从快速和精确的DC测试测量相位和现场电阻。在这项工作中,不饱和同步电感的值由空载气隙线性化和短路饱和曲线限定。当考虑饱和时,此定义很适合如何使用Matlab-Simulink SimPowersystem标准D-Q模型来实现这种方法。在标称场电流下使用突然短路测试进行验证,以评估D-Q模型性能,磁饱和度。

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