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首页> 外文期刊>IEEE Transactions on Power Systems >Utility-Scale Estimation of Additional Reinforcement Cost From Three-Phase Imbalance Considering Thermal Constraints
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Utility-Scale Estimation of Additional Reinforcement Cost From Three-Phase Imbalance Considering Thermal Constraints

机译:考虑热约束的三相不平衡的附加钢筋成本的公用事业规模估算

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摘要

Widespread three-phase imbalance causes inefficient uses of low voltage (LV) network assets, leading to additional reinforcement costs (ARCs). Previous work that assumed balanced three phases underestimated the reinforcement cost throughout the whole utility by more than 50%. Previous work that quantified the ARCs was limited to individual network components, relying on full sensory data. This paper proposes a novel methodology that will scale the ARC estimation at a utility level, when the data concerning the imbalance of circuits or transformers are scarce. A novel statistical method is developed to estimate the volume of assets that need to be invested by identifying the relationship between the triangular distribution of circuit imbalance and that of circuit utilization. When there are more data available in future, accurate probability distributions can be constructed to reflect the network condition across the whole system. In light of this, two novel generalized ARC estimation formulas are developed that account for generic probability distributions. The developed methodology is applied to a real utility system in the UK, showing that: 1) three-phase imbalance leads to ARCs that are even greater than the reinforcement costs in the balanced case; 2) a 1% increase in the demand growth rate, the maximum degree of imbalance (DIB) and the maximum nominal utilization rate leads to over 10%, approximately 1% and 2% increases in the ARCs, respectively; and 3) the ARC is not sensitive to the minimum DIB values and the minimum nominal utilization rates.
机译:广泛的三相不平衡会导致低电压(LV)网络资产的低效使用,从而导致额外的加固成本(ARC)。先前假设平衡的三个阶段的工作低估了整个公用事业的加固成本超过50%。先前量化ARC的工作仅限于单个网络组件,这依赖于完整的感官数据。本文提出了一种新颖的方法,当有关电路或变压器失衡的数据很少时,它将在实用程序级别上扩展ARC估计。通过确定电路失衡的三角分布与电路利用率的三角分布之间的关系,开发了一种新颖的统计方法来估计需要投资的资产量。当将来有更多数据可用时,可以构建准确的概率分布以反映整个系统的网络状况。鉴于此,开发了两种新颖的通用ARC估计公式,它们解释了一般概率分布。所开发的方法应用于英国的实际公用事业系统,结果表明:1)三相不平衡导致ARC甚至大于平衡情况下的加固成本; 2)需求增长率,最大不平衡度(DIB)和最大名义利用率增加1%,ARC分别增加10%以上,大约1%和2%; 3)ARC对最小DIB值和最小标称利用率不敏感。

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