High Power Laser and Particle Beams, Volume. 34, Issue 12, 123001(2022)

Time-domain measurement of the transient electric field caused by pantograph-catenary off-line discharge based on D-dot Sensor

Zhiyu Li1, Hao Li2,3, Hefei Cao1, Mengzhe Jin3, and Man Hu3
Author Affiliations
  • 1China Railway Signal & Communication Corp Research & Design Institute Group Co., Ltd, Beijing 100070, China
  • 2School of Electrical and Electronic Engineering, Shijiazhuang Tiedao University, Shijiazhuang 050043, China
  • 3Hebei Key Laboratory for Electromagnetic Environmental Effects and Information Processing, Shijiazhuang 050043, China
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    The electromagnetic radiation of pantograph-catenary offline discharge has the characteristics of transient and broadband. We can use the D-dot sensor to measure its transient electric field in time domain. However, the direct integral operation of the differential signal seriously distorts the original signal. To solve this problem, a transient electric field time-domain waveform restoration system including a pulse electric field generating device and a measuring device is built in the laboratory firstly. Then, we propose a time-domain waveform restoration method for transient electric field including DC removal, numerical integration, elimination of trend items and low frequency compensation. Finally, the method is used to test the electric field time domain waveform of electromagnetic radiation of pantograph- catenary offline discharge under different voltages. Theoretical and experimental results show that the proposed method can accurately and stably restore the original time-domain waveform of the transient electric field radiated by off-line discharge of the pantograph. The main frequency components of the reduced signal and the measured differential signal are both at 7.5MHz, and the correlation coefficient between them is more than 93%.

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    Zhiyu Li, Hao Li, Hefei Cao, Mengzhe Jin, Man Hu. Time-domain measurement of the transient electric field caused by pantograph-catenary off-line discharge based on D-dot Sensor[J]. High Power Laser and Particle Beams, 2022, 34(12): 123001

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    Paper Information

    Category: High Power Microwave Technology

    Received: Apr. 5, 2022

    Accepted: Sep. 2, 2022

    Published Online: Nov. 10, 2022

    The Author Email:

    DOI:10.11884/HPLPB202234.220172

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