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储能系统技术 储能系统 ★ 5.0

逆卡森方程问题:定义、实现与数值实验

The Inverse Carson’s Equations Problem: Definition, Implementation and Numerical Experiments

作者 C. H. Tam · F. Geth · N. Mithulananthan
期刊 IEEE Transactions on Power Delivery
出版日期 2025年6月
技术分类 储能系统技术
技术标签 储能系统
相关度评分 ★★★★★ 5.0 / 5.0
关键词 低压网络 潮流研究 阻抗数据恢复 序分量 非线性优化模型
语言:

中文摘要

近年来,随着可再生能源与储能渗透率的提升,低压网络的潮流研究在工业界与学术界备受关注。由于缺乏完整参数化的阻抗矩阵数据集,许多研究采用序分量表示阻抗,这假设网络阻抗平衡,但在低压网络中通常不成立,影响分析精度。本文将架空线与电缆的阻抗序列分量还原问题建模为逆卡森方程问题,提出一种基于非线性优化的求解方法。通过考虑配电网络中导体材料与排列方式等离散特性,研究仅从序分量中可可靠恢复的数据范围。结果涵盖恢复变量的唯一性及可能的偏差程度。

English Abstract

In recent years, with the increase in renewable energy and storage penetration, power flow studies in low-voltage networks have become of interest in both industry and academia. Many studies use impedance represented by sequence components due to the lack of datasets with fully parameterized impedance matrices. This assumes that the network impedance is balanced, which is typically not the case in the low-voltage network and therefore risks the accuracy of the study. This paper proposes a methodology for the recovery of more detailed impedance data from sequence components as an inverse problem, i.e. the inverse Carson’s equations problem, for both overhead lines and cables. We consider discrete properties like material and configuration of conductors common in the distribution network and investigate what data can be reliably recovered from only sequence components using nonlinear optimisation models. Presented results include uniqueness of recovered variables and the likelihood of mismatch.
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SunView 深度解读

该逆卡森方程求解技术对阳光电源低压配电侧储能系统具有重要应用价值。在PowerTitan储能系统和ST系列储能变流器的并网场景中,精确的线路阻抗建模直接影响功率控制精度和电能质量。传统序分量法假设阻抗平衡,但低压配电网(如工商业储能接入点)常存在三相不平衡,导致iSolarCloud平台的潮流计算偏差和并网控制策略失准。本文提出的非线性优化方法可从实测序分量反推真实导体参数,为储能变流器的不平衡补偿控制、虚拟同步机VSG参数整定提供精准阻抗数据,提升分布式储能集群在弱电网下的稳定运行能力,优化智能诊断算法的故障定位精度。