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一种应用于伪随机二进制序列直升机瞬变电磁系统的带偏心双补偿线圈的新型弱耦合方法。

A New Weak-Coupling Method with Eccentric Dual Bucking Coils Applied to the PRBS Helicopter TEM System.

作者信息

Ke Zhen, Liu Lihua, Jiang Longbin, Yan Shichu, Ji Yicai, Liu Xiaojun, Fang Guangyou

机构信息

Aerospace Information Research Institute, Chinese Academy of Sciences, Beijing 100094, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Sensors (Basel). 2022 Mar 30;22(7):2675. doi: 10.3390/s22072675.

Abstract

In the helicopter transient electromagnetic system (HTEM), weak-coupling coils reduce the mutual inductance of the transmitting and receiving coils, which can protect the data acquisition circuit and improve the signal-to-noise of the system. The PRBS HTEM system is a newly proposed multi-receiver EM measurement system, which can effectively identify the system impulse response of the unknown geological model based on the high-precision synchronous recording signal of the PRBS emitted current and induced voltage. However, the standard PRBS current signal is turned on/off very quickly, easily resulting in signal saturation. Concerning this problem, this paper proposes a new weak-coupling structure named eccentric dual bucking coils for the multi-receiver EM system by analyzing the on/off characteristics of PRBS current and the magnetic field distribution of the transmitter-receiver system. It also verifies the feasibility of the proposed structure by Maxwell software simulation. Furthermore, considering the influence of the residual primary field and other factors, the data preprocessing results of the PRBS method and the traditional square wave method are compared by theoretical analysis and data simulation, and the results show that the earlier-time response data can be obtained by PRBS method under the same simulation conditions. Finally, the reliability of the proposed method is verified by ground experiment.

摘要

在直升机瞬变电磁系统(HTEM)中,弱耦合线圈降低了发射线圈与接收线圈的互感,这既能保护数据采集电路,又能提高系统的信噪比。伪随机二进制序列(PRBS)HTEM系统是一种新提出的多接收机电磁测量系统,它能够基于PRBS发射电流和感应电压的高精度同步记录信号,有效识别未知地质模型的系统脉冲响应。然而,标准PRBS电流信号的开启/关闭非常迅速,容易导致信号饱和。针对这一问题,本文通过分析PRBS电流的开启/关闭特性以及发射-接收系统的磁场分布,为多接收机电磁系统提出了一种名为偏心双抵消线圈的新型弱耦合结构。同时,通过Maxwell软件仿真验证了所提结构的可行性。此外,考虑到剩余一次场等因素的影响,通过理论分析和数据仿真对比了PRBS方法与传统方波方法的数据预处理结果,结果表明在相同仿真条件下,PRBS方法能够获取更早时刻的响应数据。最后,通过地面实验验证了所提方法的可靠性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f40/9003436/3ce20bf888e0/sensors-22-02675-g001.jpg

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