Abstract

The disconnector switching operation in GIS not only generates very fast transient overvoltage (VFTO) in primary equipment, but also couples to the secondary system, which affects normal operation of the secondary equipment. In this study, aiming at the conducted disturbance caused by the disconnector switching operation of the 1,000-kV UHV GIS test circuit on the secondary cable, a broadband equivalent circuit model of the potential transformer and the grounding grid is proposed based on the vector fitting method and the impedance synthesis method, and the accuracy of the model is tested. On the basis of this model, the conducted disturbance voltage of the secondary cable core is obtained by combining the measured typical disturbance source waveform. The research results of the influencing factors of conducted disturbance show that the amplitude of the disturbance voltage generated by the capacitive conduction is higher than that generated by the resistive conduction, but the main frequency of the resistive conducted disturbance voltage is higher. The amplitude of the conducted disturbance voltage will decrease with the increase of the length of the cable and the length of the grounding wire. The single-ended grounding of the secondary cable shield at the GIS side will cause serious disturbance voltage. The research results of this study will be beneficial to the protection of secondary cable electromagnetic disturbance in the intelligent substation and have reference significance for the implementation of secondary equipment protection measures in the intelligent substation.

Highlights

  • Gas insulated switchgear (GIS) is widely used in substations due to its high reliability and small footprint

  • The electromagnetic disturbance to secondary cable caused by the disconnector switching operation in GIS is taken as the research object, and the conducted disturbance in the electromagnetic disturbance is mainly studied

  • The main research results are as follows: 1) The establishment method of the broadband equivalent circuit model based on the vector fitting method is proposed

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Summary

INTRODUCTION

Gas insulated switchgear (GIS) is widely used in substations due to its high reliability and small footprint. A large number of simulation studies have been carried out on the electromagnetic disturbance of the secondary cable caused by disconnector switching operation. Capacitive conduction refers to the electromagnetic transient process in which the VFTO generated by the disconnector switching operation in the GIS bus is directly coupled to the core of secondary cable through stray capacitance between primary winding and secondary winding of a potential transformer. In order to ensure the accuracy of calculation, the broadband equivalent circuit model of the potential transformer and grounding grid should be established in the simulation of conducted disturbance caused by disconnector switching operation

The Method of Modeling
Method of Establishing Broadband Equivalent Circuit
Findings
CONCLUSION
Full Text
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