论文标题

分析分布变压器降解的功率电子负载增加

Analyzing Distribution Transformer Degradation with Increased Power Electronic Loads

论文作者

Mitra, Bhaskar, Singhal, Ankit, Kundu, Soumya, Ogle, James P.

论文摘要

非线性电力电子负载涌入分销网络有可能破坏现有的分销变压器操作。它们的设计不是为了调解谐波产生的过多加热损失。为了很好地了解当前的常规挑战,对生成和负载组合以及当前的谐波估计的了解对于设计变压器和评估其性能至关重要。在本文中,我们研究了PSCAD/EMTDC设计的家庭的必需电力负载的混合物及其对变压器涡流损失的潜在影响,并使用谐波分析衍生。通过增加的PV渗透率研究了各种情况。为每种情况选择了峰负载条件,以执行变压器降低分析。我们的发现表明,在存在高功率电子载荷(尤其是第三次谐波)的情况下,以及PV产生的增加可能会使变压器降解恶化。但是,由于电源载荷量较低,额外的PV生成有助于减少当前中的谐波内容并改善变压器性能。

The influx of non-linear power electronic loads into the distribution network has the potential to disrupt the existing distribution transformer operations. They were not designed to mediate the excessive heating losses generated from the harmonics. To have a good understanding of current standing challenges, a knowledge of the generation and load mix as well as the current harmonic estimations are essential for designing transformers and evaluating their performance. In this paper, we investigate a mixture of essential power electronic loads for a household designed in PSCAD/EMTdc and their potential impacts on transformer eddy current losses and derating using harmonic analysis. The various scenarios have been studied with increasing PV penetrations. The peak load conditions are chosen for each scenario to perform a transformer derating analysis. Our findings reveal that in the presence of high power electronic loads (especially third harmonics), along with increasing PV generation may worsen transformer degradation. However, with a low amount of power electronic loads, additional PV generation helps to reduce the harmonic content in the current and improve transformer performance.

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