磁通门罗盘
电磁感应
声学
感应线圈
电磁线圈
噪音(视频)
频域
磁强计
频率响应
校准
噪声地板
电气工程
磁偶极子
地质学
磁场
遥感
物理
噪声测量
工程类
降噪
计算机科学
图像(数学)
人工智能
计算机视觉
量子力学
作者
C. Nittinger,M. Cherevatova,Michael Becken,Tina Martin,H. Petersen,A. Steuer,Uwe Meyer,B. Siemon,U. Matzander,B. Friedrichs,Wiebke Mörbe,Pritam Yogeshwar,Bülent Tezkan,Raphael Rochlitz,Thomas Günther
出处
期刊:Proceedings
日期:2017-09-03
被引量:11
标识
DOI:10.3997/2214-4609.201702154
摘要
Summary A novel semi-airborne frequency domain system is developed within the DESMEX project. The system is designed to achieve a penetration depth of about 1km with an areal coverage of about 6×6km2 per source installation on the ground. Here, we report on first results achieved with the new system. Horizontal electric dipole transmitters were used to inject time-varying electrical currents into the ground, and both a three-axis induction coil set up (Metronix MFS-11e) and a fluxgate (Bartington MAG-03) were installed on a helicopter-towed platform. We measure the induced magnetic field in the air in a frequency range from 1Hz to 10kHz. Additionally recorded attitude data can be used for correction of motion noise and for in-flight calibration to determine orthogonality and scaling errors in the fluxgate data as well as orientation errors of all sensors within the bird. In a first flight test the corrected fluxgate data shows a good signal-to-noise-ratio in the range 10ߝ400Hz with a noise level generally below 50pT/√Hz. The coils yield superior noise levels of less than 1pT/√Hz at frequencies higher than 400Hz. Frequency-domain response functions between the magnetic field and the source current are found to be consistent with subsurface conductivity structures.
科研通智能强力驱动
Strongly Powered by AbleSci AI