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法布里-珀罗型电光晶体电场传感器响应特性计算分析

来源:电工电气发布时间:2025-06-27 12:27浏览次数:5

法布里-珀罗型电光晶体电场传感器响应特性计算分析

陆洪建1,刘志远1,赵欣洋2
(1 国网宁夏电力有限公司,宁夏 银川 750010;
2 国网宁夏电力有限公司超高压公司,宁夏 银川 750011)
 
    摘 要:电光晶体电场传感器具有测量灵敏度不足的共性问题,尚难以满足弱电场环境、暂态辐射电场等场景的测量需要。提出了将法布里-珀罗光学调制结构与电光晶体相结合的传感器光路结构,通过在电光晶体两侧布置反射镜构成法布里-珀罗腔,使得激光在晶体内部多次往返传播,增大外施电场对晶体内激光相位的调制深度,以提升测量灵敏度;建立了法布里-珀罗型电光晶体电场传感器的传递函数模型,计算分析了传感器响应特性及其关键影响因素。结果表明法布里-珀罗腔反射率越高,测量灵敏度提升幅度越大,反射率为 0.99 时灵敏度相较常规干涉式传感结构可提升近百倍;电光晶体光吸收系数和激光入射偏移角会影响测量灵敏度,光吸收系数和激光入射角度越小,测量灵敏度越高。
    关键词: 电场测量;电光晶体;电场传感器;测量灵敏度;法布里- 珀罗结构;响应特性
    中图分类号:TP212     文献标识码:B     文章编号:1007-3175(2025)06-0036-06
 
Calculation and Analysis of Response Characteristics of Fabry-Perot
Type Electro-Optic Crystal Electric Field Sensor
 
LU Hong-jian1, LIU Zhi-yuan1, ZHAO Xin-yang2
(1 State Grid Ningxia Electric Power Co., Ltd, Yinchuan 750010, China;
2 State Grid Ningxia Electric Power Co., Ltd. Ultra High Voltage Company, Yinchuan 750011, China)
 
    Abstract: The electro-optic crystal electric field sensor has the common problem of insufficient measurement sensitivity and is still difficult to meet the measurement requirements of scenarios such as weak electric field environment and transient radiation electric field. To address the issue, this paper proposes a sensor optical path structure that combines a Fabry-Perot optical structure with an electro-optic crystal.
By arranging mirrors on both sides of the electro-optic crystal to form a Fabry-Perot cavity, the laser can travel back and forth multiple times inside the crystal, increasing the modulation depth of the laser phase in the crystal by the externally applied electric field, thus achieving high-sensitivity electric field measurement. A mathematical model of the transfer function for the Fabry-Perot type electro-optic crystal electric field sensor is established, and the response characteristics and their influencing factors of the sensor are calculated. The results show that the higher the reflectivity of the Fabry-Perot cavity is, the greater the improvement in measurement sensitivity will be, when the reflectivity is 0.99, the sensitivity can be increased by nearly a hundred times compared with the conventional interferometric sensing structure. The light absorption coefficient of the electro-optic crystal and the laser incident offset angle will affect the measurement sensitivity. The smaller the light absorption coefficient and the laser incident angle, the higher the measurement sensitivity.
    Key words: electric field measurement; electro-optic crystal; electric field sensor; measure sensitivity; Fabry-Perot structure; responsive characteristic
 
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