TY - GEN
T1 - Design of the UHF RFID passive tag vibration measurement instrument
AU - Ma, Zhenzhou
AU - Yu, Shengkun
AU - Liu, Hong
AU - Hu, Sha
AU - Fu, Yang
PY - 2012
Y1 - 2012
N2 - According to the anti-vibration performance test requirements to the UHF RFID passive tag in the application of civil aviation luggage transport, the paper designs a vibration measurement instrument for UHF RFID passive tag. A vibration test scheme is designed based on non-resonance single-axis inertial vibration principle, which builds the mathematical model and vibration equation. Thereafter, a software ADAMS is applied to simulate the vibration performance, and the effects of motor speed, eccentric quality and spring stiffness coefficient are analyzed to provide the basis for the further manufacturing. Finally, a prototype is realized, and a vibration performance test based on piezoelectric accelerometer is proposed to obtain the performance parameters. The test shows that the parameters including vibration frequency and the maximum peak to peak vibration displacement satisfy the design requirements.
AB - According to the anti-vibration performance test requirements to the UHF RFID passive tag in the application of civil aviation luggage transport, the paper designs a vibration measurement instrument for UHF RFID passive tag. A vibration test scheme is designed based on non-resonance single-axis inertial vibration principle, which builds the mathematical model and vibration equation. Thereafter, a software ADAMS is applied to simulate the vibration performance, and the effects of motor speed, eccentric quality and spring stiffness coefficient are analyzed to provide the basis for the further manufacturing. Finally, a prototype is realized, and a vibration performance test based on piezoelectric accelerometer is proposed to obtain the performance parameters. The test shows that the parameters including vibration frequency and the maximum peak to peak vibration displacement satisfy the design requirements.
KW - Measurement instrument
KW - RFID
KW - Simulation
KW - Vibration test
UR - https://www.scopus.com/pages/publications/84862926328
U2 - 10.4028/www.scientific.net/AMR.433-440.3759
DO - 10.4028/www.scientific.net/AMR.433-440.3759
M3 - 会议稿件
AN - SCOPUS:84862926328
SN - 9783037853191
T3 - Advanced Materials Research
SP - 3759
EP - 3766
BT - Materials Science and Information Technology, MSIT2011
T2 - 2011 International Conference on Material Science and Information Technology, MSIT2011
Y2 - 16 September 2011 through 18 September 2011
ER -