电磁瞬态物理模型对电容式电压互感器表征特性的影响

IF 1.2 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Archives of Electrical Engineering Pub Date : 2024-05-22 DOI:10.24425/aee.2024.149927
Jie Geng, Haiyong Yang, Yi Li, Xiao Zhang, Yihang Wangb
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引用次数: 0

摘要

传统电容式电压互感器的等效电路在构建宽带模型时往往面临数据计算复杂、难以把握互感器内部非线性特性等问题,导致功率精度和稳定性较差。因此,借助电磁暂态物理模型,考虑变压器的频率和饱和特性,建立导纳子模型和非线性模型。根据电容式电压互感器的特性,对模型进行并行处理,得到宽带耦合互感器模型。结果表明,模型模拟的电流峰值幅值和电压结果与测量值之间的误差分别小于 2% 和 1% 。在故障结果中,改进变压器负载电压的谐波误差相对较小,远小于传统变压器 2.73% 的误差结果。所提出的变压器模型能更好地表征其特性,并具有良好的暂态响应能力,为电力系统的运行和状态检测提供了参考工具和价值。
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Influence of electromagnetic transient physical models considering characterization characteristics on capacitive voltage transformers
The equivalent circuit of traditional capacitive voltage transformers often faces the problem of complex data calculation and difficulty in grasping the internal nonlinear characteristics of transformers when constructing broadband models, resulting in poor power accuracy and stability. Therefore, with the help of electromagnetic transient physical models, the admittance sub model and nonlinear model are established by considering the frequency and saturation characteristics of the transformer. Based on the characteristics of capacitive voltage transformers, the model is processed in parallel to obtain a broadband coupling transformer model. The results showed that the error between the simulated current peak amplitude and voltage results of the model and the measured values was less than 2% and 1%, respectively. In the fault results, the harmonic error of the load voltage of the improved transformer was relatively small, far less than the error result of 2.73% of the traditional transformer. The proposed transformer model can better characterize its characteristics and has good transient response ability, providing reference tools and value for the operation and state detection of power systems.
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来源期刊
Archives of Electrical Engineering
Archives of Electrical Engineering ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
2.40
自引率
53.80%
发文量
0
审稿时长
18 weeks
期刊介绍: The journal publishes original papers in the field of electrical engineering which covers, but not limited to, the following scope: - Control - Electrical machines and transformers - Electrical & magnetic fields problems - Electric traction - Electro heat - Fuel cells, micro machines, hybrid vehicles - Nondestructive testing & Nondestructive evaluation - Electrical power engineering - Power electronics
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