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基于云模型和MARCOS的VFTO对二次侧电缆干扰的区域评估研究

Regional Evaluation Study of VFTO Interference to Secondary Side Cables Based on Cloud Model and MARCOS.

作者信息

Wu Yongji, Yan Wei, Du Puliang, Gong Xiaomin, Zhou Mengxia

出版信息

IEEE Trans Neural Netw Learn Syst. 2024 May;35(5):6021-6034. doi: 10.1109/TNNLS.2023.3325537. Epub 2024 May 2.

Abstract

With the advent of the data era, most power secondary side equipment tends to be digitized. The power system needs more accurate numerical results to further improve its operating efficiency. Therefore, it is important to study the electromagnetic interferences of very fast transient overvoltage (VFTO) generated by gas-insulated switchgear (GIS). To protect the secondary side cable from interferences, the secondary side cable is wrapped with an outer shield and the shield is grounded. When the interference of VFTO comes, it will couple the interference current and interference voltage on the shield of the cable. By grounding, the interference is greatly discharged. However, due to the grounding resistance, there will be a potential difference between the grounding points at the two ends of the shield of the cable. This causes a corresponding interference current to flow through the shield, which will affect the transmission of signals inside the cable. In the actual substation, the resistivity of the soil, the ambient temperature and humidity of the area, and so on will have impacts on the grounding resistance. In addition, the irregularity of the cable arrangement and the time of the use of the cable will have impacts on the signal transmission of the cable. Based on the abovementioned issues, this article proposed a comprehensive assessment method based on the combination of the cloud model and measurement of alternatives and ranking according to compromise solution (MARCOS). The method brings the cloud model into MARCOS by the algorithm of the contribution of the cloud droplets. It overcomes the difficulty of cloud model quantification. By comparing the results of the proposed method with the actual conditions at the substation and the results of the common MARCOS assessment method, the validity of the method is verified, and a reference scheme is provided for substation optimization.

摘要

随着数据时代的到来,大多数电力二次侧设备趋于数字化。电力系统需要更精确的数值结果以进一步提高其运行效率。因此,研究气体绝缘开关设备(GIS)产生的快速暂态过电压(VFTO)的电磁干扰具有重要意义。为保护二次侧电缆免受干扰,二次侧电缆外包有屏蔽层且屏蔽层接地。当VFTO干扰到来时,它会在电缆屏蔽层上耦合干扰电流和干扰电压。通过接地,干扰得以大量泄放。然而,由于接地电阻的存在,电缆屏蔽层两端的接地点之间会存在电位差。这会导致相应的干扰电流流过屏蔽层,进而影响电缆内部信号的传输。在实际变电站中,土壤电阻率、该区域的环境温度和湿度等都会对接地电阻产生影响。此外,电缆布置的不规则性以及电缆的使用时间也会对电缆的信号传输产生影响。基于上述问题,本文提出了一种基于云模型与测量备选方案并根据折衷解排序法(MARCOS)相结合的综合评估方法。该方法通过云滴贡献算法将云模型引入MARCOS。它克服了云模型量化的困难。通过将所提方法的结果与变电站实际情况以及普通MARCOS评估方法的结果进行比较,验证了该方法的有效性,并为变电站优化提供了参考方案。

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