Peng Jun, Jia Shuhai, Bian Jiaming, Zhang Shuo, Liu Jianben, Zhou Xing
School of Mechanical Engineering, Xi'an Jiaotong University, Xi'an 710049, China.
State Key Laboratory of Power Grid Environmental Protection, China Electric Power Research Institute, Wuhan 430074, China.
Sensors (Basel). 2019 Jun 27;19(13):2860. doi: 10.3390/s19132860.
Electromagnetic field sensors are widely used in various areas. In recent years, great progress has been made in the optical sensing technique for electromagnetic field measurement, and varieties of corresponding sensors have been proposed. Types of magnetic field optical sensors were presented, including probes-based Faraday effect, magnetostrictive materials, and magnetic fluid. The sensing system-based Faraday effect is complex, and the sensors are mostly used in intensive magnetic field measurement. Magnetic field optical sensors based on magnetic fluid have high sensitivity compared to that based on magnetostrictive materials. Three types of electric field optical sensors are presented, including the sensor probes based on electric-optic crystal, piezoelectric materials, and electrostatic attraction. The majority of sensors are developed using the sensing scheme of combining the LiNbO crystal and optical fiber interferometer due to the good electro-optic properties of the crystal. The piezoelectric materials-based electric field sensors have simple structure and easy fabrication, but it is not suitable for weak electric field measurement. The sensing principle based on electrostatic attraction is less commonly-used sensing methods. This review aims at presenting the advances in optical sensing technology for electromagnetic field measurement, analyzing the principles of different types of sensors and discussing each advantage and disadvantage, as well as the future outlook on the performance improvement of sensors.
电磁场传感器在各个领域都有广泛应用。近年来,用于电磁场测量的光学传感技术取得了巨大进展,并且已经提出了各种各样相应的传感器。介绍了磁场光学传感器的类型,包括基于法拉第效应的探头、磁致伸缩材料和磁流体。基于法拉第效应的传感系统较为复杂,这些传感器大多用于强磁场测量。与基于磁致伸缩材料的磁场光学传感器相比,基于磁流体的磁场光学传感器具有更高的灵敏度。介绍了三种电场光学传感器,包括基于电光晶体、压电材料和静电吸引的传感器探头。由于晶体具有良好的电光特性,大多数传感器是采用将铌酸锂晶体与光纤干涉仪相结合的传感方案研制而成。基于压电材料的电场传感器结构简单、易于制造,但不适用于弱电场测量。基于静电吸引的传感原理是不太常用的传感方法。这篇综述旨在介绍用于电磁场测量的光学传感技术的进展,分析不同类型传感器的原理,并讨论各自的优缺点以及传感器性能改进的未来展望。