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Consistency in ground potential rise estimation utilizing fall of potential method data

机译:利用电位法数据下降估算地面电位上升的一致性

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Analyzing fall of potential (FOP) test data from a grounding system current injection test is the prevalent method used to determine ground potential rise (GPR). Achievable tolerance in analyzing near ideal FOP results using recognized and alternative methods were assessed previously, whereas this paper investigates distortions by buried metallic systems, such as leaky cables and pipelines, based on both simulated and field data. To work correctly with "real" data, pre-conditioning FOP data may be necessary; removing "outliers" due to real world "pathologies" in the earthing system. Applying several "cost" functions to the methods created by the combination of conditioning schemes and FOP response models produced a significant number of estimation methods. To determine the most consistent estimation methods a methodology was developed which assessed all identified methods by comparing the estimates produced with the simulation result. This allowed the most consistent and accurate GPR estimation methods to be identified.
机译:分析来自接地系统电流注入测试的电势下降(FOP)测试数据是用于确定接地电势上升(GPR)的普遍方法。先前已评估了使用公认的和替代方法来分析接近理想FOP结果的可达到公差,而本文则根据模拟和现场数据研究了埋入金属系统(如泄漏的电缆和管道)的变形。为了正确处理“真实”数据,可能需要对FOP数据进行预处理。消除接地系统中由于现实世界中的“病态”造成的“异常值”。将几种“成本”函数应用于条件方案和FOP响应模型的组合所创建的方法,产生了大量的估算方法。为了确定最一致的估计方法,开发了一种方法,该方法通过将产生的估计值与模拟结果进行比较来评估所有已识别的方法。这样可以确定最一致,最准确的GPR估算方法。

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