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Fast Construction of Bypass System Based on Insulating Rod Type Bypass Switch

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DOI: 10.23977/jeeem.2025.080101 | Downloads: 19 | Views: 555

Author(s)

Haiyang Liu 1, Weihao Gao 1, Yu Cao 1

Affiliation(s)

1 State Grid Tonghua Power Supply Company, Tonghua, Jilin, 134000, China

Corresponding Author

Haiyang Liu

ABSTRACT

Insulated rod bypass switch, as an indispensable key equipment in modern power system, its performance and reliability are directly related to the safe and stable operation of power grid. In this study, the application and optimization strategy of insulated rod bypass switch in power system are discussed. Faced with the increasing complexity of power system and the high requirement of equipment performance, the flexibility and adaptability of insulated rod bypass switch is particularly important. However, problems such as insulation aging, operation and maintenance difficulties, and system stability and compatibility also emerge. In response to these problems, this study puts forward optimization countermeasures such as strengthening the research and development and application of insulation materials, improving the intelligent level of operation and maintenance, and optimizing system design and compatibility testing. These measures aim to improve the performance of the insulated rod bypass switch, reduce the operation and maintenance cost, and ensure the stable operation of the power grid and the cooperative work of the equipment. Through the combination of theory and practice, this study provides a useful reference for the application and optimization of insulated rod bypass switch in power system.

KEYWORDS

Insulated rod bypass switch; Electric power system; Optimization strategy; Insulating material; Intelligent level; System design and compatibility

CITE THIS PAPER

Haiyang Liu, Weihao Gao, Yu Cao, Fast Construction of Bypass System Based on Insulating Rod Type Bypass Switch. Journal of Electrotechnology, Electrical Engineering and Management (2025) Vol. 8: 1-6. DOI: http://dx.doi.org/10.23977/jeeem.2025.080101.

REFERENCES

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[5] Zhu G, Wang Y, Kang S. Research and Application of 10kV Bypass Load Switch Pole Climbing Assistant [J]. Chinese Journal of Electrical Engineering 2023(20):135-138.

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