Method of Error Compensation for FBG Current Sensor based on Multisensor Data Fusion

被引:0
作者
Tong, Wei-guo [1 ]
Zhong, Xiao-jiang [2 ]
Li, Bao-Shu [2 ]
机构
[1] N China Elect Power Univ, Coll Control Sci & Engn, Baoding 071003, Hebei Province, Peoples R China
[2] N China Elect Power Univ, Coll Elect & Elect Engn, Baoding 071003, Hebei Province, Peoples R China
来源
2008 IEEE INTERNATIONAL CONFERENCE ON INDUSTRIAL TECHNOLOGY, VOLS 1-5 | 2008年
关键词
FBG; Multisensor data fusion; error compensation; RBF neural network; Magnetostrictive effect;
D O I
暂无
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
As a novel measuring device, the FBG current sensor has developed rapidly which has some unexampled merits. In order to improve its accuracy and reliability, a method of error compensation based multisensor data fusion is presented. Data fusion is the process of combining data from multiple sensors to estimate or predict entity states. Multisensor data fusion seeks to combine data to measure the variables that may not be possible from a single sensor, reducing signals uncertainty and improving the accuracy performance of the measuring. In this paper, multisensor data fusion is used in error compensation of the FBG current sensor. It is applied FBG current sensor and two temperature sensors to measure the process variables related with the sensor error, such as current, temperature, noise etc, then a multisensor data fusion system based on RBF neural network is used to analyse and compensate the measuring error. The simulation results illustrate that this method is feasible and more effective;
引用
收藏
页码:346 / +
页数:3
相关论文
共 50 条
  • [41] Modeling and Compensation Method for Temperature Error of FOG based on the SVM
    Wang, Guochen
    Zhao, Bo
    Gao, Wei
    Zhang, Runfeng
    PROCEEDINGS OF THE INTERNATIONAL CONFERENCE ON LOGISTICS, ENGINEERING, MANAGEMENT AND COMPUTER SCIENCE (LEMCS 2015), 2015, 117 : 972 - 977
  • [42] An Error Compensation Method for Surgical Robot Based on RCM Mechanism
    Bai, Ming
    Zhang, Minglu
    Zhang, He
    Pang, Linjun
    Zhao, Jie
    Gao, Chunyan
    IEEE ACCESS, 2021, 9 : 140747 - 140758
  • [43] RBF-based Compensation Method on Displacement and Thermal Error
    Tan, Kok Kiong
    Yang, Rui
    Er, Poi Voon
    Tay, Arthur
    Teo, Chek Sing
    2013 IEEE INTERNATIONAL CONFERENCE ON MECHATRONICS AND AUTOMATION (ICMA), 2013, : 1039 - 1044
  • [44] A method of error compensation on sensors based on neural networks algorithm
    Yang, Anping
    Zeng, Zhezhao
    2008 INTERNATIONAL CONFERENCE ON COMPUTATIONAL INTELLIGENCE AND SECURITY, VOLS 1 AND 2, PROCEEDINGS, 2008, : 729 - 732
  • [45] Modeling Method for Photosynthetic Rate Based on Error Compensation ELM
    Yuan, Qingyun
    Ding, Xiaoming
    Yin, Yilei
    Liu, Tan
    Wang, Yonggang
    Zhang, Dapeng
    2022 34TH CHINESE CONTROL AND DECISION CONFERENCE, CCDC, 2022, : 4193 - 4198
  • [46] A Height Error Compensation Method Based on Contact Mode AFM
    Wei, Yangjie
    Wu, Chengdong
    Dong, Zaili
    2010 8TH WORLD CONGRESS ON INTELLIGENT CONTROL AND AUTOMATION (WCICA), 2010, : 2035 - 2040
  • [47] Multisensor Multitarget Tracking Arithmetic Average Fusion Method Based on Probabilistic Time Window
    Wang, Kuiwu
    Zhang, Qin
    Hu, Xiaolong
    IEEE SENSORS JOURNAL, 2024, 24 (03) : 3583 - 3593
  • [48] An error compensation method for a linear array sun sensor with a V-shaped slit
    Fan, Qiao-yun
    Tan, Xiao-feng
    MEASUREMENT SCIENCE AND TECHNOLOGY, 2015, 26 (11)
  • [49] Magnetoresistive Sensor Error Compensation Method Using Geometry-Constraint Contour Scaling
    Wang, Jinwen
    Deng, Zhihong
    Meng, Zhidong
    Shen, Kai
    IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 2022, 71
  • [50] Error identification and compensation for a laser displacement sensor based on on-machine measurement
    Zhao, Zhengcai
    Ding, Dawei
    Fu, Yucan
    OPTIK, 2021, 225 (225):