赵志敏

Professor   Supervisor of Doctorate Candidates  

Gender:Female

Education Level:With Certificate of Graduation for Study as Master's Candidates

Degree:Master's Degree in Engineering

School/Department:College of Science

Discipline:Measuring and Testing Technologies and Instruments. Physics. Precision Instrument and Machinery

E-Mail:


Paper Publications

A novel method for 3D measurement of RFID multi-tag network based on matching vision and wavelet

Hits:

Affiliation of Author(s):理学院

Journal:Meas. Sci. Technol.

Abstract:In the field of radio frequency identification (RFID), the three-dimensional (3D) distribution of RFID multi-tag networks has a significant impact on their reading performance. At the same time, in order to realize the anti-collision of RFID multi-tag networks in practical engineering applications, the 3D distribution of RFID multi-tag networks must be measured. In this paper, a novel method for the 3D measurement of RFID multi-tag networks is proposed. A dual-CCD system (vertical and horizontal cameras) is used to obtain images of RFID multi-tag networks from different angles. Then, the wavelet threshold denoising method is used to remove noise in the obtained images. The template matching method is used to determine the two-dimensional coordinates and vertical coordinate of each tag. The 3D coordinates of each tag are obtained subsequently. Finally, a model of the nonlinear relation between the 3D coordinate distribution of the RFID multi-tag network and the corresponding reading distance is established using the wavelet neural network. The experiment results show that the average prediction relative error is 0.71% and the time cost is 2.17 s. The values of the average prediction relative error and time cost are smaller than those of the particle swarm optimization neural network and genetic algorithm-back propagation neural network. The time cost of the wavelet neural network is about 1% of that of the other two methods. The method proposed in this paper has a smaller relative error. The proposed method can improve the real-time performance of RFID multi-tag networks and the overall dynamic performance of multi-tag networks. © 2018 IOP Publishing Ltd.

ISSN No.:0957-0233

Translation or Not:no

Date of Publication:2018-05-22

Co-author:庄笑,yuxiaolei,汪东华,张文杰,刘振鲁,陆东升,董定邦

Correspondence Author:zzm,yuxiaolei

Pre One:A Novel Method for Dynamical Measurement of RFID Tags Group Sensitivity

Next One:Growth of Al2O3 films on chemically strengthened glass substrates by different deposition techniques