Efficient method for transformer models implementation in distribution load flow matrix

M. Kadri, A. Hamouda, S. Sayah
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Abstract

Introduction. Most distribution networks are unbalanced and therefore require a specific solution for load flow. There are many works on the subject in the literature, but they mainly focus on simple network configurations. Among the methods dedicated to this problem, one can refer to the load flow method based on the bus injection to branch current and branch current to bus voltage matrices. Problem. Although this method is regarded as simple and complete, its drawback is the difficulty in supporting the transformer model as well as its winding connection types. Nevertheless, the method requires the system per unit to derive the load flow solution. Goal. In the present paper, our concern is the implementation of distribution transformers in the modeling and calculation of load flow in unbalanced networks. Methodology. Unlike previous method, distribution transformer model is introduced in the topology matrices without simplifying assumptions. Particularly, topology matrices were modified to take into account all winding types of both primary and secondary sides of transformer that conserve the equivalent scheme of an ideal transformer in series with an impedance. In addition, the adopted transformer models overcome the singularity problem that can be encountered when switching from the primary to the secondary side of transformer and inversely. Practical value. The proposed approach was applied to various distribution networks such as IEEE 4-nodes, IEEE 13-nodes and IEEE 37-nodes. The obtained results validate the method and show its effectiveness.
配电潮流矩阵中变压器模型实现的有效方法
介绍。大多数配电网是不平衡的,因此需要一个特定的解决方案。文献中有很多关于这一主题的作品,但它们主要集中在简单的网络配置上。在致力于解决这一问题的方法中,可以参考基于母线注入到支路电流和支路电流到母线电压矩阵的负载流法。问题。虽然这种方法被认为是简单和完整的,但它的缺点是难以支持变压器模型及其绕组连接类型。然而,该方法要求每单元系统推导出负荷流解。的目标。在本文中,我们关注的是配电变压器在不平衡电网中负荷潮流建模和计算中的实现。方法。与以往的方法不同,该方法将配电变压器模型引入到拓扑矩阵中,没有简化假设。特别是,拓扑矩阵进行了修改,以考虑变压器初级和次级侧的所有绕组类型,从而保留了具有阻抗串联的理想变压器的等效方案。此外,所采用的变压器模型克服了变压器主次侧倒换和逆变倒换时的奇异性问题。实用价值。该方法应用于ieee4节点、ieee13节点和ieee37节点等配电网。仿真结果验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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