[1] XIAO Dongping, LIU Huaitong, ZHOU Qiang, et al. Influence and correction from the human body on the measurement of a powerfrequency electric field sensor[J]. Sensors, 2016, 16(6): 859867.
[2] IEEE Standard 2911991. IEEE standard methods for measuring electromagnetic field strength of sinusoidal continuous waves, 30 Hz to 30 GHz[S]. America: Published, 1991.
[3] XIAO Dongping, MA Qichao, XIE Yutong, et al. A powerfrequency electric field sensor for portable measurement[J]. Sensors, 2018, 18(4): 113.
[4] HIDAKA K, FUJITA H. A new method of electricfield measurements in corona discharge using POCKELS device[J]. Journal of Applied Physics, 1982, 103(5): 241248.
[5] NIU Ben, ZENG Rong, LI Huan, et al. Design of electrodeless electric frequency electric field sensor[J]. Proceedings of the Chinese Society for Electrical Engineering, 2008, 28(31): 101107.
[6] SUN Bao, CHEN Fushen. Integrated optical field sensor for measuring power frequency electric field[J]. Semiconductor Optoelectronics, 2010, 31(2): 202204.
[7] JIANG Yizhen, YANG Dewei, ZHANG Fangjie. Straight waveguide voltage sensor for measuring power frequency and high voltage[J]. Advances in Laser and Optoelectronics, 2013, 51(2): 17.
[8] LI Zhaoyang, YUAN Haiwen, CUI Yong, et al. Measurement of distorted powerfrequency electric field with integrated optical sensor[J]. IEEE Transactions on Instrumentation and Measurement, 2019, 68(4): 11321139.
[9] KOBAYASHI R, TAJIMA K, KUWABARA N, et al. Optical bias angle control method for electricfield sensor using MachZehnder interferometer[J]. Electronics & Communications in Japan, 2015, 83(8): 5361.
[10] GUTIERREZMARTINEZ C, SANTOSAGUILAR J, MEZAPEREZ J, et al. Novel electric field sensing scheme using integrated optics LiNbO3 unbalanced MachZehnder interferometers and optical delaymodulation[J]. Journal of Lightwave Technology, 2017, 35(1): 2733.
[11] ZHANG Jiahong, BAO Yi, WAN Xiaorong, et al. An isotropic intense electromagnetic impulse (EMP) sensor using integrated electrooptic (EO) probe[J]. OptikInternational Journal for Light and Electron Optics, 2017, 147: 385390.
[12] ZHANG Jiahong, LUO Chuan, ZHAO Zhengang. Design and application of integrated optics sensor for measurement of intense pulsed electric field[J].Journal of Lightwave Technology, 2019, 37(4): 14401448.
[13] ZENG Rong, YU Junjie, NIU Ben, et al. Photoelectric integrated electric field sensor for broadband time domain electric field measurement[J]. Proceedings of the Chinese Society for Electrical Engineering, 2014, 34(29): 52345243.
[14] ZENG Rong, WANG Bo, YU Zhanqing, et al. Design and application of an integrated electrooptic sensor for intensive electric field measurement[J]. IEEE Transactions on Dielectrics and Electrical Insulation, 2011, 18(1): 312319.
[15] ZENG Rong, YU Junjie, WANG Bo, et al. Study of an integrated optical sensor with monoshielding electrode for intensity transient Efield measurement[J]. Measurement, 2014, 50(1): 356362.
[16] ZENG Rong, WANG Bo, YU Zhanqing, et al. Integrated optical Efield sensor based on balanced MachZehnder interferometer[J]. Optical Engineering, 2011, 50(11): 828832.
[17] LU Wan, YU Chen, YIN Yonghong, et al. Multiphysics modeling and optimized design of asymmetric integrated optical sensor for electromagnetic pulse measurement [C]. IEEE International Conference on Environment & Electrical Engineering & IEEE Industrial & Commercial Power Systems Europe, IEEE, 2017.
[18] GUTIERREZMARTINEZ C, SANTOSAGUILAR J, MORALESDIAZ A. On the design of videobandwidth electric field sensing systems using dielectric LiNbO3 electrooptic sensors and optical delays as signal carriers[J]. IEEE Sensors Journal, 2013, 13(11): 4196 4203.
[19] ZHANG Jiahong, YANG Xiumei, ZHU Chuyi, et al. Instantaneous microwave frequency measurement using an asymmetric integrated optical waveguide MachZenhder interferometer (AMZI)[J]. Optik, 2018, 169: 203207.
[20] ZHANG Jiahong, CHEN Fushen, SUN Bao, et al. 3D integrated optical Efield sensor for lightning electromagnetic impulse measurement[J]. IEEE Photonics Technology Letters, 2014, 26(23): 23532356.
[21] National Quantity and Unit Standardization Technical Committee. GB/T1272091power frequency electric field measurement [S]. Beijing: China Standard Press, 1991: 110.