Design and Performance Study of a Temperature Compensated ± 1100-kV UHVdc All Fiber Current Transformer

被引:38
作者
Zhao, Jun [1 ,2 ]
Shi, Lei [1 ]
Sun, Xiaohan [1 ]
机构
[1] Southeast Univ, Sch Elect Sci & Engn, Nanjing 210096, Peoples R China
[2] Nanjing Sunlight Informat Technol Co Ltd, Nanjing 210012, Peoples R China
关键词
Fiber optical current transformer (FOCT); fiber temperature sensor; polarization maintaining fiber (PMF); temperature compensation; ultrahigh voltage direct current (UHVdc);
D O I
10.1109/TIM.2020.3029364
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
The inherent advantages of fiber optical current transformer (FOCT) are very attractive for high-voltage applications when compared with conventional transformers. However, the accuracy and long-term reliability of FOCT can be greatly affected by temperature. Fiber temperature sensors are suitable for FOCT temperature compensation, especially in ultrahigh voltage (UHV) applications. As a result, a fiber temperature-sensing scheme based on the temperature birefringence effect of polarization maintaining fiber (PMF-TS) was proposed. A high integration real-time temperature correction FOCT based on PMF-TS (PMFTS-FOCT) was designed, and a prototype with rated current of 5000 A and rated voltage of 1100 kV was developed. The accuracy, temperature, frequency response, step response, and transient response of the system was tested. The results showed that within the temperature range of -40 degrees C to 70 degrees C, the ratio error (RE) of 500-5500 A was less than +/- 02% after temperature correction, and in the frequency range of 50-1200 Hz, RE and phase error (PE) were less than +/- 0.75% and 110 mu s, respectively. The step response time was less than 125 mu s, the overshoot was less than 1.5%, and the composite error was 0.807% for the 50 000-A transient current. We proved that PMFTS-FOCT had good steady-state and transient performance and the possibility for measuring dc and ac harmonics, whose performance meets the error limit requirements specified in GRIT 26216.1-2010.
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页数:6
相关论文
共 23 条
  • [11] Development of Precision DC High-Voltage Dividers
    Li, Yi
    Ediriweera, Miyuru K.
    Emms, Frederick S.
    Lohrasby, Ashkan
    [J]. IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 2011, 60 (07) : 2211 - 2216
  • [12] Inherent temperature compensation of fiber-optic current sensors employing spun highly birefringent fiber
    Mueller, G. M.
    Gu, X.
    Yang, L.
    Frank, A.
    Bohnert, K.
    [J]. OPTICS EXPRESS, 2016, 24 (10): : 11164 - 11173
  • [13] Temperature compensation of fiber-optic current sensors
    Mueller, Georg M.
    Yang, Lin
    Guelenaltin, Berkan
    Frank, Andreas
    Bohnert, Klaus
    [J]. 23RD INTERNATIONAL CONFERENCE ON OPTICAL FIBRE SENSORS, 2014, 9157
  • [14] Müller GM, 2012, IEEE PHOTON CONF, P745, DOI 10.1109/IPCon.2012.6358837
  • [15] Influencing factors analysis on the detector output signal of fiber optic current transformer with sine modulation
    Pang, Fu-bin
    Liu, Yu
    Yuan, Yu-bo
    Gao, Lei
    [J]. MEASUREMENT, 2020, 151
  • [16] Optical Current Transducers and Error Sources in Them: A Review
    Samimi, Mohammad Hamed
    Akmal, Amir Abbas Shayegani
    Mohseni, Hossein
    [J]. IEEE SENSORS JOURNAL, 2015, 15 (09) : 4721 - 4728
  • [17] Discovery and development of synthetic tricyclic pyrroloquinone (TPQ) alkaloid analogs for human cancer therapy
    Wang, Wei
    Nijampatnam, Bhavitavya
    Velu, Sadanandan E.
    Zhang, Ruiwen
    [J]. FRONTIERS OF CHEMICAL SCIENCE AND ENGINEERING, 2016, 10 (01) : 1 - 15
  • [18] Theoretical analysis of the temperature characteristics of an optical current sensing element
    Wang, Zheng Ping
    Wang, Xiao Zhong
    [J]. MEASUREMENT, 2009, 42 (02) : 277 - 280
  • [19] Compensation methods of the temperature dependence of glass ring type optical current sensors
    Willsch, M.
    Richter, M.
    Kaiser, J.
    Bosselmann, T.
    Judendorfer, T.
    [J]. SEVENTH EUROPEAN WORKSHOP ON OPTICAL FIBRE SENSORS (EWOFS 2019), 2019, 11199
  • [20] Wuest R., 2009, P C OPT SENS