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On the Stability of FDTD-Based Numerical Codes to Evaluate Lightning-Induced Overvoltages in Overhead Transmission Lines

机译:基于FDTD的数值码的稳定性评价射线传输线雷电引起的过电压

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摘要

One of the main issues that has to be faced when evaluating lightning-induced overvoltages on a realistic network configuration is to implement the algorithm that solves the field-to-line coupling problem into an electromagnetic simulator that is able to represent with a high level of detail all the power system components. On one hand, numerical stability conditions of the finite-difference time-domain schemes have been deeply investigated in the presence of boundary conditions known analytically; on the other hand, there is not so much literature on the situations in which such conditions are provided in a numerical way through an external electromagnetic simulator. The study reveals that the commonly used linear extrapolation of currents at the line extremities might rise to numerical instabilities. An efficient solution using the method of characteristics is presented and validated.
机译:在逼真的网络配置上评估闪电引起的过电压时必须面临的主要问题之一是实现解决能够以高水平表示的电磁模拟器中的算法解决该算法。能够以高级别表示的电磁模拟器详细信息所有电源系统组件。一方面,在分析已知的边界条件存在下,已经深入研究了有限差分时域方案的数值稳定性条件;另一方面,在这种情况下,在通过外部电磁模拟器以数值方式提供这种情况的情况下没有那么多的文献。该研究表明,线末端电流的常用线性外推可能上升到数值不稳定性。呈现和验证了使用特性方法的有效解决方案。

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