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A three-phase three-winding core-type transformer model for low-frequency transient studies

机译:用于低频暂态研究的三相三绕组铁心型变压器模型

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摘要

A topology-based and duality-derived three-phase, three-winding, core-type transformer model is presented. The model treats the leakage inductances and the coupling effects of the core in a straightforward and integrated way. The long-established positive- and zero-sequence star equivalent circuits of a three-phase three-winding transformer are derived from the original equivalent magnetic circuit of the transformer by applying duality. Formulations for determining the values of the leakage inductances and the core loss resistances from transformer open- and short-circuit test data are presented. A supporting routine is written to generate the /spl lambda/-i curves for each segment of the core and the other input data for EMTP. Since the duality-derived model consists of only RLC elements, no device-specific code to EMTP time-step code is needed. Winding capacitances are lumped to the terminals. The model is suitable for simulation of power system low-frequency transients such as inrush currents and ferroresonance, short circuits, and abnormalities including transformer winding faults.
机译:提出了一种基于拓扑和对偶性的三相三绕组铁心型变压器模型。该模型以直接和集成的方式处理漏感和铁心的耦合效应。三相三绕组变压器早已建立的正序和零序星形等效电路是通过应用对偶性从变压器的原始等效磁路中得出的。提出了根据变压器开路和短路测试数据确定漏感和铁损损耗值的公式。编写了一个支持例程,以针对内核的每个段以及EMTP的其他输入数据生成/ spl lambda / -i曲线。由于对偶性模型仅包含RLC元素,因此不需要针对EMTP时间步长代码的特定于设备的代码。绕组电容集中到端子。该模型适用于仿真电力系统的低频瞬变,例如浪涌电流和铁磁谐振,短路以及包括变压器绕组故障在内的异常情况。

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