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谐波与三相不平衡干扰源的联合概率建模方法

Joint probabilistic modeling approach for harmonic and three-phase unbalanced disturbance sources.

作者信息

Ren Zheng, Chen Xiao-Lu, Wang Chun, Lan Yue, Feng Xu

机构信息

State Grid East Inner Mongolia Electric Power Research Institute, Hohhot, 010020, China.

出版信息

Heliyon. 2024 Oct 12;10(20):e39310. doi: 10.1016/j.heliyon.2024.e39310. eCollection 2024 Oct 30.

Abstract

Harmonics and three-phase imbalance are two common disturbances in power systems that interact with and affect each other, leading to more complex impacts on power system performance. To comprehensively and accurately analyze the distribution and interaction mechanisms of harmonics and three-phase imbalance, this study investigated the joint emission level of harmonic and three-phase unbalanced disturbance sources (H-TU-DS). This paper proposes a joint probabilistic emission level modeling approach. The power, harmonic, and three-phase unbalanced data of H-TU-DS are multidimensional, and the feature dataset is filtered by calculating multiple correlation coefficients to achieve dimensionality reduction without losing data information. Considering the different operating characteristics of the H-TU-DS, an improved fuzzy C-means (FCM) algorithm is applied to classify operating conditions, enabling a comprehensive and accurate analysis of the joint emission level. Based on the nonparametric kernel density function, joint probability modeling of H-TU-DS is performed using an adaptive bandwidth improvement method, effectively enhancing the accuracy of the modeling process. Finally, the effectiveness and accuracy of the proposed methods for feature dataset filtering, operating condition classification, and joint probability modeling are demonstrated through comparisons with both simulated and actual data. The proposed model facilitates the prediction and assessment of the impact of H-TU-DS on power quality after grid connection, enabling the effective prevention of power-quality problems through advanced treatment.

摘要

谐波和三相不平衡是电力系统中两种常见的干扰,它们相互作用、相互影响,对电力系统性能产生更复杂的影响。为了全面、准确地分析谐波和三相不平衡的分布及相互作用机制,本研究对谐波与三相不平衡干扰源(H-TU-DS)的联合发射水平进行了研究。本文提出了一种联合概率发射水平建模方法。H-TU-DS的功率、谐波和三相不平衡数据具有多维性,通过计算多个相关系数对特征数据集进行滤波,在不丢失数据信息的情况下实现降维。考虑到H-TU-DS的不同运行特性,采用改进的模糊C均值(FCM)算法对运行工况进行分类,从而能够全面、准确地分析联合发射水平。基于非参数核密度函数,采用自适应带宽改进方法对H-TU-DS进行联合概率建模,有效提高了建模过程的准确性。最后,通过与模拟数据和实际数据的比较,验证了所提特征数据集滤波、运行工况分类和联合概率建模方法的有效性和准确性。所提模型有助于预测和评估H-TU-DS并网后对电能质量的影响,通过先进的处理措施有效预防电能质量问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c9d/11620205/a4e103bad195/gr1.jpg

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