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Neutral Current Optimization Control for Smart Transformer-Fed Distribution System Under Unbalanced Loads

机译:不平衡负载下智能变压器供给配送系统的中性电流优化控制

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In a three-phase four-wire low voltage (LV) distribution system, unbalanced loads lead to neutral current (NC) looping resulting in increase of power losses and variation of neutral potential. Compared to the conventional power transformer, smart transformer (ST) has strict current limitations to avoid overcurrent. However, its advantages on the downstream LV grid voltage regulation can provide the capability to regulate excessive NC. This article proposes a closed-loop NC optimization control in order to, on the one hand, minimize the NC current in the normal operation satisfying the standard EN 50160 requirement, on the other hand, suppress the NC current in extreme cases to avoid the overcurrent damage of the ST. The proposed control strategies are validated by experimental tests via the hardware-in-the-loop setup and a case study based on a 350-kVA, 10-kV/400-V, ST-fed distribution network under unbalanced loading profile according to the three-phase four-wire distribution grid in the Manchester area. The results clearly prove the effectiveness and flexibility of the proposed NC optimization control strategies on the NC suppression and minimization.
机译:在三相四线低压(LV)分布系统中,不平衡负载导致中性电流(NC)环节,导致功率损耗的增加和中性电位的变化。与传统的电力变压器相比,智能变压器(ST)具有严格的电流限制,以避免过电流。然而,其对下游LV电网电压调节的优点可以提供调节过量的NC的能力。本文提出了闭环NC优化控制,以一方面,最小化满足标准EN 50160要求的正常操作中的NC电流,另一方面,在极端情况下抑制NC电流以避免过电流ST的损伤。通过循环安装的实验测试和基于350 kVA,10-kV / 400-V,ST-Fed分配网络的实验测试验证了所提出的控制策略,根据不平衡的加载轮廓,根据曼彻斯特地区三相四线配电网。结果清楚地证明了拟议的NC优化控制策略对NC抑制和最小化的有效性和灵活性。

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