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Modelling and Optimization of Four-Segment Shielding Coils of Current Transformers

机译:电流互感器四段屏蔽线圈的建模与优化

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摘要

Applying shielding coils is a practical way to protect current transformers (CTs) for large-capacity generators from the intensive magnetic interference produced by adjacent bus-bars. The aim of this study is to build a simple analytical model for the shielding coils, from which the optimization of the shielding coils can be calculated effectively. Based on an existing stray flux model, a new analytical model for the leakage flux of partial coils is presented, and finite element method-based simulations are carried out to develop empirical equations for the core-pickup factors of the models. Using the flux models, a model of the common four-segment shielding coils is derived. Furthermore, a theoretical analysis is carried out on the optimal performance of the four-segment shielding coils in a typical six-bus-bars scenario. It turns out that the “all parallel” shielding coils with a 45° starting position have the best shielding performance, whereas the “separated loop” shielding coils with a 0° starting position feature the lowest heating value. Physical experiments were performed, which verified all the models and the conclusions proposed in the paper. In addition, for shielding coils with other than the four-segment configuration, the analysis process will generally be the same.
机译:应用屏蔽线圈是保护大容量发电机的电流互感器(CT)免受相邻母线产生的强烈电磁干扰的一种实用方法。这项研究的目的是为屏蔽线圈建立一个简单的分析模型,从中可以有效地计算出屏蔽线圈的优化值。在现有的杂散磁通模型的基础上,提出了一种新的局部线圈泄漏磁通的解析模型,并基于有限元方法进行了仿真,以建立模型的铁心拾取因子经验方程。使用通量模型,得出了常见的四段屏蔽线圈的模型。此外,在典型的六母线情况下,对四段屏蔽线圈的最佳性能进行了理论分析。事实证明,起始位置为45°的“全并联”屏蔽线圈具有最佳的屏蔽性能,而起始位置为0°的“分离回路”屏蔽线圈的发热值最低。进行了物理实验,验证了本文提出的所有模型和结论。此外,对于四段配置以外的其他屏蔽线圈,分析过程通常相同。

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