Key Laboratory of Specialty Fiber Optics and Optical Access Networks, School of Communication and Information Engineering, Shanghai University, Shanghai 200444, China.
Sensors (Basel). 2019 Mar 25;19(6):1456. doi: 10.3390/s19061456.
A novel fiber-optic sensor based on the alternating electric field force actions on polyimide tubing with space charge for power-frequency electric field sensing is presented. In structure, the sensor consists of a lightweight fiber cantilever beam covered with a length of electrically charged polyimide tubing as the field sensing element. A twin-FBG based Fabry⁻Perot interferometer is embedded in this fiber beam to detect the beam vibrations excited by the force of power-frequency electric field to be sensed. Space charge in polyimide tubing is formed through a dielectric charging process. The basic concept, structure, fabrication and operation principle of the sensor are introduced with detailed theoretical analyses. The comprehensive experiments with two sensor prototypes are carried out, in which a sensor exhibits a high sensitivity of 173.65 μV/(V/m) with a minimal detectable field strength of 0.162 V/m, and another has a durability of continuous operation for over a year.
提出了一种基于聚酰亚胺管内空间电荷的交变电场力作用的新型光纤传感器,用于工频电场传感。在结构上,该传感器由带有电荷的聚酰亚胺管的轻量光纤悬臂梁组成,作为电场传感元件。在光纤梁中嵌入了一个基于双光纤布拉格光栅的法布里-珀罗干涉仪,用于检测由被感测的工频电场力激发的梁振动。聚酰亚胺管中的空间电荷是通过介电充电过程形成的。介绍了传感器的基本概念、结构、制造和工作原理,并进行了详细的理论分析。对两个传感器原型进行了综合实验,其中一个传感器具有 173.65 μV/(V/m)的高灵敏度,最小可检测场强为 0.162 V/m,另一个传感器具有连续运行一年以上的耐用性。