Li Ning, Chen Yuren, Zhang Chaofan, Nong Jie, Xu Wenjie, Wang Zhencheng, Yang Junbo, Yu Yang, Zhang Zhenrong
Guangxi Key Laboratory of Multimedia Communications and Network Technology, School of Computer, Electronic and Information, Guangxi University, Nanning 530004, China.
College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, China.
Sensors (Basel). 2023 Aug 11;23(16):7127. doi: 10.3390/s23167127.
Fiber-optic magnetic field sensors have garnered considerable attention in the field of marine monitoring due to their compact size, robust anti-electromagnetic interference capabilities, corrosion resistance, high sensitivity, ease of multiplexing and integration, and potential for large-scale sensing networks. To enable the detection of marine magnetic field vector information, we propose an optical fiber vector magnetic field sensor that integrates three single-axis sensors in an orthogonal configuration. Theoretical analysis and experimental verification are conducted to investigate its magnetic field and temperature sensing characteristics, and a sensitivity matrix is established to address the cross-sensitivity between the magnetic field and temperature; experimental tests were conducted to assess the vector response of the three-dimensional (3D) vector sensor across the three orthogonal axes; the obtained experimental results illustrate the commendable magnetic field vector response exhibited by the sensor in the orthogonal axes, enabling precise demodulation of vector magnetic field information. This sensor presents several advantages, including cost-effectiveness, easy integration, and reliability vectorially. Consequently, it holds immense potential for critical applications in marine magnetic field network detection.
光纤磁场传感器因其尺寸紧凑、强大的抗电磁干扰能力、耐腐蚀、高灵敏度、易于复用和集成以及构建大规模传感网络的潜力,在海洋监测领域受到了广泛关注。为了实现对海洋磁场矢量信息的检测,我们提出了一种光纤矢量磁场传感器,该传感器将三个单轴传感器以正交配置集成在一起。通过理论分析和实验验证来研究其磁场和温度传感特性,并建立灵敏度矩阵以解决磁场和温度之间的交叉灵敏度问题;进行了实验测试,以评估三维(3D)矢量传感器在三个正交轴上的矢量响应;所获得的实验结果表明,该传感器在正交轴上表现出了良好的磁场矢量响应,能够精确解调矢量磁场信息。该传感器具有成本效益高、易于集成和矢量可靠性等优点。因此,它在海洋磁场网络检测的关键应用中具有巨大潜力。