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Global sensitivity analysis of transmission line fault-locating algorithms using sparse grid regression

机译:基于稀疏网格回归的输电线路故障定位算法全局灵敏度分析

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摘要

Computation of distance to fault on an electrical transmission line is affected by many sources of uncertainty, including parameter setting errors, measurement errors, as well as absence of information and incomplete modelling of a system under fault condition. In this paper we propose an application of the variance-based global sensitivity measures for evaluation of fault location algorithms. The main goal of the evaluation is to identify factors and their interactions that contribute to the fault locator output variability. This analysis is based on the results of Sparse Grid Regression. The method compiles the Functional ANOVA model to represent fault locator output as a function of uncertain factors. The ANOVA model provides a tool for interpretation and sensitivity analysis. In practice, such analysis can help in functional performance tests, especially in: selection of the optimal fault location algorithm (device) for a specific application, calibration process and building confidence in a fault location function result. The paper concludes with an application example which demonstrates use of the proposed methodology in testing and comparing some commonly used fault location algorithms. This example is also used to demonstrate numerical efficiency for this type of application of the proposed Sparse Grid Regression method in comparison to the Quasi-Monte Carlo approach.
机译:输电线路上故障距离的计算受许多不确定性因素的影响,包括参数设置误差,测量误差,信息缺失以及故障条件下系统的不完整建模。在本文中,我们提出了一种基于方差的全局灵敏度度量在故障定位算法评估中的应用。评估的主要目标是确定导致故障定位器输出可变性的因素及其相互作用。该分析基于稀疏网格回归的结果。该方法编译了功能方差分析模型,将故障定位器的输出表示为不确定因素的函数。 ANOVA模型提供了一种解释和敏感性分析的工具。在实践中,此类分析可以帮助进行功能性能测试,尤其是在:针对特定应用选择最佳故障定位算法(设备),校准过程以及建立对故障定位功能结果的信心。本文以一个应用示例结尾,该应用示例演示了该方法在测试和比较一些常用故障定位算法中的使用。与拟蒙特卡罗方法相比,该示例还用于证明所提出的稀疏网格回归方法的这种类型的应用的数值效率。

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