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Frequency-dependent models of overhead power lines for steady-state harmonic analysis: Model derivation, evaluation and practical applications

机译:架空输电线基于频率的稳态谐波分析模型:模型推导,评估和实际应用

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摘要

This paper presents a novel frequency-dependent model for electric power lines to be used in harmonic studies. First, the differential equations representing the distributed nature of the line electrical parameters are considered; frequency dependency due to the effect of ground return and the skin effect is then incorporated. These derived equations represent what in this paper is defined as the analytical model, used as benchmark for model comparison. The vector fitting technique is used here to approximate the analytical model and derive a frequency-dependent frequency domain model. A passive circuit realization of the proposed model in a PI structure is presented and can be directly implemented in steady-state analysis tools such as harmonic power flow solvers. This paper then presents the evaluation and verification of the proposed model for multiple test cases. The test cases of unbalanced three-phase lines for overhead and underground conductors are considered. Moreover, to evaluate system-level impacts of the proposed model, the IEEE 13 node test feeder is considered. Through the evaluation of the test results, it is shown that the proposed model is more accurate than currently-used steady state models such as the simple (nominal) PI or the constant PI (with constant parameters calculated at fundamental frequency) models in terms of steady state harmonic voltages and currents at the line terminals. Test results obtained using the proposed model are within comparable accuracy to the ones obtained using the electromagnetic and transient (EMT) model, without having to run computationally expensive time domain simulations. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文提出了一种用于谐波研究的新型电力线频率相关模型。首先,考虑代表线路电参数分布特性的微分方程;归因于地面回波的影响而产生频率依赖性,然后并入趋肤效应。这些导出的方程式代表了本文中定义为分析模型的模型,用作模型比较的基准。这里使用矢量拟合技术来近似分析模型,并得出频率相关的频域模型。提出了在PI结构中所提出模型的无源电路实现,并且可以在稳态分析工具(如谐波潮流求解器)中直接实现。然后,本文介绍了针对多个测试用例的模型的评估和验证。考虑了架空和地下导体的不平衡三相线路的测试案例。此外,为了评估所提出模型的系统级影响,考虑了IEEE 13节点测试馈送器。通过对测试结果的评估,表明所提出的模型比当前使用的稳态模型(例如简单(标称)PI或恒定PI(具有在基频处计算出的恒定参数)的模型)的精度更高。线路端子处的稳态谐波电压和电流。使用建议的模型获得的测试结果与使用电磁和瞬变(EMT)模型获得的测试结果具有可比的精度,而无需运行昂贵的时域仿真。 (C)2017 Elsevier B.V.保留所有权利。

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