A calibration method of ground-airborne frequency domain electromagnetic receving system based on magnetic source excitation

校准 信号(编程语言) 声学 电磁线圈 磁场 激发 干扰(通信) 计量系统 亥姆霍兹线圈 电子工程 电气工程 工程类 物理 计算机科学 频道(广播) 量子力学 天文 程序设计语言
作者
Fengdao Zhou,Jingyi Wang,Wenxuan Wang,Haigen Zhou
出处
期刊:International Journal of Applied Electromagnetics and Mechanics [IOS Press]
卷期号:72 (4): 343-360 被引量:1
标识
DOI:10.3233/jae-220197
摘要

In the ground-airborne frequency domain electromagnetic detection, the receving system converts the magnetic field signal into an electrical signal representing the magnetic field signal. In order to accurately obtain the relationship between the magnetic field signal and the electrical signal, it is necessary to avoid the influence of environment and other factors on the system accuracy through on-site calibration. This requires high calibration accuracy, simple operation, portable equipment and strong adaptability to the environment. However, the existing calibration methods put forward higher requirements for instruments and environment. For example, the calibration of uniform magnetic field generated by Helmholtz coil needs to shield external magnetic field interference. In this paper, an overall calibration method of measurement system based on magnetic source excitation is proposed to meet the requirements of electromagnetic field accurate measurement in ground-airborne frequency domain. Firstly, based on the electromagnetic measurement method in ground-airborne frequency domain, the overall calibration method and principle of the detection system are introduced. Then, based on the computable standard magnetic field generated by the magnetic source transmitting coil, determine the measured voltage obtained by the receiving system, get the calibration coefficient of the receiving system. At last,the source of standard uncertainty related to calibration is analyzed, and the uncertainty is evaluated. In addition, the method is verified by comparing the calibration results with those obtained by Braunbeck coil calibration.
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