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Quantification of Additional Asset Reinforcement Cost From 3-Phase Imbalance

机译:三相不平衡对额外资产加固成本的量化

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Uneven load distribution leads to a 3-phase imbalance at the low voltage (LV) substation level. This imbalance has distinct impacts on main feeders and LV transformers: for main feeders, it reduces the available capacity as the phase with the least spare capacity determines the usable capacity; for LV transformers, phase imbalance reduces the available capacity due to additional power along the neutral line. To assess the additional reinforcement cost (ARC) arising from a 3-phase imbalance, this paper proposes two novel costing models for main feeders and LV transformers respectively. Each model involves the derivation of an accurate ARC formula based on the degree of three-phase imbalance and a linearized approximation through Taylor's expansion to simplify the detailed ARC formula, enabling quantification of future LV investment in scale. The developed models are tested on 4 cases where imbalance ranges from 0 to 10%, and reveals that i) a small imbalance degree may cause a substantial ARC on main feeders; ii) ARC grows exponentially as asset utilization is close to its capacity; and that iii) a main feeder is more sensitive to its respective imbalance degree than an LV transformer under the same condition. The models serve as an effective tool to assist distribution network operators (DNOs) to quantify a key cost (ARC) element from the phase imbalance, allowing DNOs to evaluate their future LV investment in scale.
机译:负载分配不均会导致低压(LV)变电站级别的三相不平衡。这种不平衡对主馈线和低压变压器有明显的影响:对于主馈线,由于可用容量最少的相决定了可用容量,它减少了可用容量。对于低压变压器,由于沿中性线的附加功率,相位不平衡会降低可用容量。为了评估三相不平衡引起的额外加固成本(ARC),本文针对主馈线和低压变压器分别提出了两种新颖的成本核算模型。每个模型都涉及基于三相不平衡程度的精确ARC公式的推导,以及通过泰勒展开式进行的线性化近似,以简化详细的ARC公式,从而可以量化未来的LV投资规模。所开发的模型在4种失衡范围从0%到10%的情况下进行了测试,结果表明:i)较小的失衡度可能会在主进纸器上造成较大的ARC; ii)随着资产利用率接近其容量,ARC呈指数增长; iii)在相同条件下,主馈线对其各自的失衡程度比低压变压器更为敏感。这些模型是协助配电网络运营商(DNO)量化相位不平衡中的关键成本(ARC)要素的有效工具,从而使DNO可以大规模评估其未来的LV投资。

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