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Inverse Scattering for Soft Fault Diagnosis in Electric Transmission Lines

机译:逆散射技术在输电线路软故障诊断中的应用

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摘要

Today's advanced reflectometry methods provide an efficient solution for the diagnosis of electric transmission line hard faults (open and short circuits), but they are much less efficient for soft faults, in particular, for faults resulting in spatially smooth variations of characteristic impedance. This paper attempts to fill an important gap for the application of the inverse scattering transform to reflectometry-based soft fault diagnosis: it clarifies the relationship between the reflection coefficient measured with reflectometry instruments and the mathematical object of the same name defined in the inverse scattering theory, by reconciling finite length transmission lines with the inverse scattering transform defined on the infinite interval. The feasibility of this approach is then demonstrated by numerical simulation of lossless transmission lines affected by soft faults, and by the solution of the inverse scattering problem effectively retrieving smoothly varying characteristic impedance profiles from reflection coefficients.
机译:当今先进的反射法可为输电线路的硬故障(断路和短路)的诊断提供有效的解决方案,但是对于软故障(尤其是导致特征阻抗在空间上平滑变化的故障),它们的效率要低得多。本文试图填补反散射变换在基于反射仪的软故障诊断中的应用的重要空白:它阐明了用反射仪测量的反射系数与反散射理论中定义的同名数学对象之间的关系。 ,通过将无限长传输线与在无限间隔上定义的逆散射变换进行协调。然后,通过对受软故障影响的无损传输线进行数值模拟,并通过解决反散射问题的方法,可以有效地从反射系数中获取平滑变化的特征阻抗曲线,从而证明了该方法的可行性。

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