Improved BP Arithmetic in Moisture Content Measurement with Microwave Resonant

被引:0
|
作者
Liu, Zhi [1 ]
机构
[1] Henan Univ Sci & Technol, Elect Engn Coll, Luoyang, Peoples R China
关键词
moisture content; open microwave resonant; BP algorithm; genetic algorithm(GA);
D O I
10.1109/iccsnt50940.2020.9304987
中图分类号
TP301 [理论、方法];
学科分类号
081202 ;
摘要
Traditional linear regression is the primary factor that affects measurement precision in measuring moisture content with microwave resonator. A regression is put forward based on an improved BP algorithm to modify the measurement result. First, the regression neural network is pre optimized by using the macro search ability, parallel operation and strong robustness of genetic algorithm. Then, integrating the gradient descent method of BP algorithm, the presented algorithm can effectively avoid the traditional BP algorithm of falling into local minimum, at the same time, high prediction accuracy and fast convergence speed are maintained. It has the characteristics of global superiority and accuracy for optimization, thus improving the measurement accuracy. The experimental results show that the mean square error between predicted moisture and actual moisture is 0.0109, the average absolute error is 0.0702, the average relative error is 0.1161, and the determination coefficient is 0.9989.
引用
下载
收藏
页码:190 / 193
页数:4
相关论文
共 50 条
  • [31] Research of an improved BP decoding arithmetic
    Wu, Guo-Qiang
    Sun, Zhao-Wei
    Wu, Xian-De
    AIRCRAFT ENGINEERING AND AEROSPACE TECHNOLOGY, 2009, 81 (06): : 529 - 532
  • [32] Measurement of grain moisture content using microwave attenuation at 10.5 GHz and moisture density
    Kim, KB
    Kim, JH
    Lee, SS
    Noh, SH
    IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 2002, 51 (01) : 72 - 77
  • [33] MICROWAVE MOISTURE MEASUREMENT
    BOTSCO, R
    INSTRUMENTS & CONTROL SYSTEMS, 1970, 43 (05): : 116 - &
  • [34] Application of optimal IA-BP algorithm in moisture content detecting with microwave resonator
    Jiang, Y
    Cao, J
    Yang, GH
    2005 IEEE INTERNATIONAL WORKSHOP ON INTELLIGENT SIGNAL PROCESSING (WISP), 2005, : 155 - 158
  • [35] A dual-parameters microwave measurement approach for spruce moisture content
    Yu, Yating
    Sun, Cheng
    Wang, Lei
    Fan, Yiming
    NONDESTRUCTIVE TESTING AND EVALUATION, 2024,
  • [36] Free-Space Microwave Moisture Content Measurement of Moist Sand
    Richards, Sean
    Tan, Adrian
    Platt, Ian
    Woodhead, Ian
    2014 IEEE SENSORS APPLICATIONS SYMPOSIUM (SAS), 2014, : 145 - 150
  • [37] Effects of Moisture Content and Temperature on Microwave Measurement of Lightweight Foamed Concrete
    Lee, Kim-Yee
    Phua, Yeong-Nan
    Lim, Siong-Kang
    You, Kok-Yeow
    Cheng, Ee Meng
    JOURNAL OF TESTING AND EVALUATION, 2023, 52 (01)
  • [38] MOISTURE CONTENT MEASUREMENT IN SCOTS PINE BY MICROWAVE AND X-RAYS
    Vikberg, Tommy
    Oja, Johan
    Antti, Lena
    WOOD AND FIBER SCIENCE, 2012, 44 (03): : 280 - 285
  • [39] Plant Moisture Content Measurement System Based on Microwave Pseudo Waveguide
    Zhou, Tao
    Guo, Zixuan
    Sun, Qiaoling
    Li, Yi
    Deng, Liangbin
    Jiang, Geng
    Yin, Bangyong
    Yang, Yuqiu
    Wu, Junyao
    Cai, Huan
    Jiang, Xi
    Yin, Jungang
    Deng, Linfeng
    IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 2024, 73
  • [40] Design and Development of Single & Dual Resonant Frequency Antennas for Moisture Content Measurement
    Pramod Kumar
    Ashvini Chaturvedi
    Wireless Personal Communications, 2020, 114 : 565 - 582