基于建模和积分调节残差分析的串联电弧故障检测

IF 4.3 2区 计算机科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Wenchao Miao;Fengyun Zhi;Qiqi Chen;Tianling Shi;Fei Wang
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引用次数: 0

摘要

随着可再生能源的快速发展,光伏系统、储能系统、直流微电网等得到了广泛的应用。然而,电弧故障会引起电气火灾,甚至危及系统的安全性和可靠性。本文提出了一种基于建模和积分调节残差分析的直流系统电弧故障检测方法。建立了直流系统在正常运行和电弧故障情况下的广义状态空间平均模型。在建模中考虑了电力电子谐波,并对其进行了分析,以估计系统的状态变化。所建立的模型能够预测电弧电流,并能初步确定电弧电流变化的原因。提出了积分调节残差分析方法来计算模型预测的电弧电流与实际电弧电流的交点面积。交点面积的标称值可以通过实验确定。因此,当交点面积达到标称值时,即可识别出电弧故障。在此基础上,建立了电弧建模和积分调节残差分析算法,研制了电弧探测器。600组试验结果表明,该技术能够在不受线路阻抗、负载暂态和电力电子噪声影响的情况下,在80 ms内检测出不同电弧形成条件下的持续电弧和间歇电弧故障,准确率达到99.5%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Series Arc Fault Detection by Modeling and Integral Regulated Residual Analysis
With the rapid development of renewable energy, photovoltaic systems, energy storage systems, and DC microgrids are widely used. However, arc faults can cause electrical fires and even compromise the safety and reliability of the system. In this paper, a modeling and integral-regulated-residual-analysis-based arc fault detection technique is developed for DC systems. The generalized state space average model of the DC system is developed under normal operation and arc fault conditions. The power electronic harmonics are considered in the modeling and analyzed to estimate the state variation of the system. The developed model can predict the arc current and can preliminarily determine the causes of variation. The integral regulated residual analysis method is proposed to calculate the intersection area between the model-predicted arc current and the actual arc current. The nominal values of the intersection area can be determined by experiments. Thus, an arc fault can be identified when the value of the intersection area reaches the nominal value. In this way, the modeling and integral regulated residual analysis algorithm is established and the arc detector is developed. The experimental results of 600 groups of tests verified that the technique can detect sustained and intermittent arc faults at different arc formation conditions with an accuracy of 99.5% within 80 ms despite the effects of line impedance, load transient and power electronics noise.
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来源期刊
CiteScore
7.70
自引率
9.30%
发文量
59
审稿时长
3.3 months
期刊介绍: The main focus for the IEEE Transactions on Consumer Electronics is the engineering and research aspects of the theory, design, construction, manufacture or end use of mass market electronics, systems, software and services for consumers.
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