Research on Temperature Rise Testing Technology of Explosion-Proof Low-Voltage Feeder Switches in Coal Mines
DOI:
https://doi.org/10.54097/scxthp53Keywords:
Low-voltage electrical equipment; interrupting test; arc; image enhancement.Abstract
Based on the analysis of the operating environment and protective functions of explosion-proof low-voltage feeder switches in coal mines, this paper proposes a temperature rise test data processing method for these switches. A temperature rise testing system for coal mine explosion-proof low-voltage feeder switches is designed to accurately measure the temperature rise at different points of the switches. This provides a reference for the development of intelligent inspection technologies for these switches in coal mines.
Downloads
References
[1] X. Zhang, B. Liu, F. Gao, D. Song and X. Zhu, "Study on the Topology and Control Method of a Power Supply for Temperature Field Test of High-frequency Transformer," 2022 Asian Conference on Frontiers of Power and Energy (ACFPE), Chengdu, China, 2022, pp. 80-84
[2] J. Fang et al., "Intelligent Switching Line Device for Temperature Rise Test of Power Distribution Equipment," 2023 IEEE Sustainable Power and Energy Conference (iSPEC), Chongqing, China, 2023, pp. 1-4
[3] W. Wenjun et al., "Development of A Temperature Rise Test System Based on The New Technology of Switching Power Supply Control," 2021 13th International Conference on Measuring Technology and Mechatronics Automation (ICMTMA), Beihai, China, 2021, pp. 409-413
[4] S. Iderus and G. Peter, "Temperature Rise Test on Medium Voltage Switchgear Assembly Based on IEC Standard," 2020 8th International Conference on Orange Technology (ICOT), Daegu, Korea (South), 2020, pp. 1-5
[5] D. Simek, "The thermal model and temperature rise test of disconnector," 2016 17th International Conference on Mechatronics - Mechatronika (ME), Prague, Czech Republic, 2016, pp. 1-5
[6] S. Cheng et al., "Intelligent Diagnosis Method for Heating Defect of GIS Disconnecting Switch," 2023 Panda Forum on Power and Energy (PandaFPE), Chengdu, China, 2023, pp. 590-595
[7] D. Neumayr, M. Guacci, D. Bortis and J. W. Kolar, "New calorimetric power transistor soft-switching loss measurement based on accurate temperature rise monitoring," 2017 29th International Symposium on Power Semiconductor Devices and IC's (ISPSD), Sapporo, Japan, 2017, pp. 447-450
[8] Y. Zhu, Q. Ge and L. Zhao, "Research of temperature rise on IGBT module and DC busbar for a single-phase PWM rectifier," 2012 15th International Conference on Electrical Machines and Systems (ICEMS), Sapporo, Japan, 2012, pp. 1-4
Downloads
Published
Issue
Section
License
Copyright (c) 2025 Highlights in Science, Engineering and Technology

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.







