电力变压器匝间短路故障的多匝建模

Yassa Nacera, Hamza Hebal, Ouadfel Ghania, Rachek Mhemed
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摘要

本文提出了一种新的模拟变压器绕组间发生匝间短路故障时电流稳态特性的方法。ITSC是电力变压器中发生频率最高、危害最大的磁耦合电路故障之一。耦合电磁电路(CEMC)模型通过影响变压器绕组之间传递的电压和电流的自电感和互感所定义的电和磁参数,对描述电力变压器工作原理的推理和关系进行建模。用MATLAB软件实现了健康模式(无故障)和退化模式(匝间短路故障分别为10%、20%和30%)下三相多匝变压器状态变量方程的表示。仿真结果验证了基于耦合电路的状态模型的准确性,并对负载上的一次电流和二次电流以及电压降进行了评估。所得结果可为多匝变压器的短路设计提供依据。
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Multi-Turn Modeling of a Power Transformer under an Inter-Turn Short-Circuit Fault
This paper presents a new method for modeling the steady-state behavior of the currents transmitted between the windings of a transformer subjected to an inter-turn short-circuit fault (ITSC). ITSC is one of the most frequent and most damaging faults in magnetically coupled circuits, which occur in power transformers. Coupled Electromagnetic Circuit (CEMC) Model modeling the reasoning and relationships describing the operating principle of a power transformer through the electrical and magnetic parameters defined by the self and mutual inductances that influence the voltages and currents transmitted between the transformer windings. The representation of the state variable equations of a proposed model of a three-phase multi-turn transformer in healthy mode (no fault) and in degraded mode (with inter-turn short-circuit faults of 10%, 20% and 30%) has been implemented using a program inserted in MATLAB software. The simulations illustrate the evaluation of the primary and secondary currents as well as the voltage drop across a load, and the accuracy of the state model based on the coupled circuits was validated. The results obtained can provide a basis for the design of the short circuit of the multi-turn transformer.
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