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The Estimation of the Influence of Each Harmonic Component in Load Unbalance of Distribution Transformers in Harmonic Loading Condition

机译:估计各谐波分量在谐波负载条件下分布变压器负载不平衡的影响

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Nowadays, due to their widespread utilization, transformers are considered as the main component of distribution networks. Despite the important role playing by transformers, some problems e.g. flow of high-range current from transformers' null despite balancing the currents of phases has been observed in the appropriate utilization of distribution transformers. This phenomenon is observed in most distribution stations. Although the presence of single- phase loads causes an unbalance in transformers; load displacement and network balancing lead again to the flow of huge current from transformers neutral. One of the its reasons can be the usage of distribution transformers in harmonic load condition, in three-phase distribution networks load current harmonics in transformers' neutral have negative considerable consequences. Therefore, it is required to evaluate and analyze the harmonic effects in the presence of nonlinear loads. since the harmonic component playing an important role in the creation of load unbalance, it is necessary to evaluate them; these components have considerable roles in the selection of compensation methods in the process of harmonic contamination especially the selection of compensator filters. In this paper, by Matlab/Simulink stimulation capability performed as real-time to examine the reasons for increased flow of neural coil of the transformer in a harmonic environment and evaluate the influence of each harmonic component of load flow in the creation of unbalance and neutral flow of transformer. The information of harmonic load includes the range of harmonic component and its angles from outflow current of a static transformer. The load's current has a harmonic component of 3, 5, 7, 9, 11, 13, 15 order in addition to range in main frequency (50Hz). The results show that the unbalance of the transformer's load in harmonic load condition has increased by 1.529%. In addition, the share of each harmonic component depends on their angle in addition to the range such that the impact on the main frequency is much higher than other harmonic components, which is due to asymmetry and phase difference between phases.
机译:如今,由于其广泛的利用,变压器被认为是分销网络的主要成分。尽管变压器扮演的重要作用,但有些问题是在适当的利用分配变压器的适当利用中,已经观察到变压器无效的高范围电流的流量。在大多数分配站中观察到这种现象。虽然单相载荷的存在导致变压器中的不平衡;负载位移和网络平衡再次引入变压器中性的巨大电流的流动。其中一个原因可以是在谐波负载条件下使用分配变压器,在三相分布网络中,变压器中性的负载电流谐波具有负面的相当数额。因此,需要在非线性载荷的存在下评估和分析谐波效应。由于谐波分量在创建负载不平衡中发挥着重要作用,因此有必要评估它们;这些组件在谐波污染过程中的补偿方法中具有相当大的作用,尤其是选择补偿器过滤器的选择。本文通过MATLAB / SIMULINK刺激能力作为实时进行,以检查谐波环境中变压器的神经线圈流量增加的原因,并评估负载流量的每个谐波分量在不平衡和中性的产生中的影响变压器流动。谐波载荷的信息包括谐波分量的范围及其来自静态变压器的流出电流的角度。除了主频率(50Hz)的范围之外,负载电流还具有3,5,7,9,11,13,15的谐波分量,而不是主频率(50Hz)。结果表明,变压器在谐波载荷条件下的负荷的不平衡增加了1.529%。另外,除了对主频率的影响远远高于其他谐波分量的范围之外,每个谐波分量的份额取决于它们的角度,这是由于相位之间的不对称和相位差。

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