TY - GEN
T1 - Optimization of Electrostatic Sensors for Rotational Speed Measurement
AU - Liu, Xuanda
AU - Yan, Yong
AU - Hu, Yonghui
AU - Wang, Lijuan
N1 - Publisher Copyright:
© 2023 IEEE.
PY - 2023
Y1 - 2023
N2 - Previous studies have proven that it is feasible and reliable to apply the electrostatic sensing technique to the speed monitoring of rotating machinery. The geometric shape, size, spatial position and spacing of the electrodes have significant influence on the performance of electrostatic sensors. This paper presents a scheme for the electrode optimization of electrostatic sensors. A mathematical model is established to determine the charge density distribution on the electrode surface based on the principle of electrostatic induction. Through mathematical modeling and numerical simulation, the spatial sensitivity and filtering characteristics of the electrostatic sensors are analyzed, then the optimal range of each electrode parameter is obtained. In order to assess the performance of sensors in speed measurement, an optimized sensor with double strip-shaped electrodes, is used to measure the rotational speed of a metallic shaft with an electrostatic marker attached. Experimental results show that, the rangeability of sensors is improved significantly. The system is capable of measuring the rotational speed as low as 30 RPM (revolution per minute) and achieving repeatable speed measurement over the range of 30 to 3000 RPM with a maximum error of ±4.5% and repeatability better than 1.9%.
AB - Previous studies have proven that it is feasible and reliable to apply the electrostatic sensing technique to the speed monitoring of rotating machinery. The geometric shape, size, spatial position and spacing of the electrodes have significant influence on the performance of electrostatic sensors. This paper presents a scheme for the electrode optimization of electrostatic sensors. A mathematical model is established to determine the charge density distribution on the electrode surface based on the principle of electrostatic induction. Through mathematical modeling and numerical simulation, the spatial sensitivity and filtering characteristics of the electrostatic sensors are analyzed, then the optimal range of each electrode parameter is obtained. In order to assess the performance of sensors in speed measurement, an optimized sensor with double strip-shaped electrodes, is used to measure the rotational speed of a metallic shaft with an electrostatic marker attached. Experimental results show that, the rangeability of sensors is improved significantly. The system is capable of measuring the rotational speed as low as 30 RPM (revolution per minute) and achieving repeatable speed measurement over the range of 30 to 3000 RPM with a maximum error of ±4.5% and repeatability better than 1.9%.
KW - bandwidth
KW - electrode optimization
KW - electrostatic sensors
KW - rotational speed
KW - spatial sensitivity
UR - https://www.scopus.com/pages/publications/85166369719
U2 - 10.1109/I2MTC53148.2023.10175999
DO - 10.1109/I2MTC53148.2023.10175999
M3 - 会议稿件
AN - SCOPUS:85166369719
T3 - Conference Record - IEEE Instrumentation and Measurement Technology Conference
BT - I2MTC 2023 - 2023 IEEE International Instrumentation and Measurement Technology Conference
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2023 IEEE International Instrumentation and Measurement Technology Conference, I2MTC 2023
Y2 - 22 May 2023 through 25 May 2023
ER -