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Mixed Derating of Distribution Transformers Under Unbalanced Supply Voltage and Nonlinear Load Conditions Using TSFEM

机译:基于TSFEM的不平衡电源电压和非线性负载条件下的配电变压器混合降额

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摘要

In this paper, a novel concept, which is called mixed derating, is introduced for the maintenance of distribution transformers against the copper and core losses increase due to the nonlinear loads and unbalanced supply voltage, respectively. Hence, the traditional equation which is utilized for the derating of transformers under nonlinear loads is modified to determine the proper rated power of a transformer under nonsinusoidal conditions. Based on the proposed concept, the harmonic loss factor as an efficient feature for defining appropriate rated power of transformers under nonsinusoidal conditions is calculated and compared with IEEE standards. The time-stepping finite-element method is utilized to simulate the distribution transformer under different nonsinusoidal conditions and evaluates transformer performance precisely. In this modeling, winding distribution, geometrical, and physical characteristics of all segments of the transformer are taken into account for accurate determination of the necessary signals and parameters to scrutinize the transformer under nonsinusoidal conditions.
机译:在本文中,引入了一种称为混合降额的新颖概念,用于维护配电变压器,以防止铜和铁芯损耗分别由于非线性负载和不平衡电源电压而增加。因此,修改了用于非线性负载下的变压器降额的传统公式,以确定在非正弦条件下变压器的适当额定功率。基于提出的概念,计算谐波损耗因数,作为定义非正弦条件下合适的变压器额定功率的有效特征,并将其与IEEE标准进行比较。采用时步有限元法对不同非正弦条件下的配电变压器进行仿真,并对变压器性能进行精确评估。在此建模中,考虑了变压器所有部分的绕组分布,几何和物理特性,以便在非正弦条件下精确确定必要的信号和参数以仔细检查变压器。

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