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Study on the Multiperiod Bipolar Inductive Absolute Angle Sensor

delete2022-11-01
delete3
PRE
AI
B
Bo Zhang
X
Xiaoli Chen
孙逊 (Xun Sun)
Y
Yong Jiang
闻小龙 (Xiaolong Wen)
J
Jianhua Li *
DOI:10.1109/JSEN.2022.3205943delete
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Abstract

Abstract

En 中文
In this study, a novel design of multiperiod bipolar inductive absolute angle sensor is proposed. The sensor structure is composed of stator and rotor. An inner and outer fan-shaped bipolar pattern is designed and fabricated on the rotor. The receiving coils and signal processing circuits are on the stator. When alternating current is applied to the excitation coil, the eddy current is generated in the rotor. The induced voltage of two adjacent receiving coils is in the form of cosine, when the rotor rotates above the receiving coil. There are two groups of receiving coils in the sensor. One group is composed of eight loops, corresponding to the 45 degrees fan-shaped pattern at the outer edge, and the other group is composed of two loops, corresponding to the 180 degrees fan-shaped (semicircular) pattern at the center. The coil with more loops provides high measurement accuracy and the coil with a small number of loops provides the identification of the number of cycles. The results show that the measurement error is 0.04 degrees and the resolution is better than 0.005 degrees in the range of 0 degrees-360 degrees. Through the multiperiod bipolar pattern proposed in this article, a high accuracy absolute position measurement can be realized.
Keywords:
Coils
Sensors
Rotors
Magnetic sensors
Magnetic fields
Position measurement
Periodic structures
Absolute position
bipolar
electromagnetic induction
inductive angle sensor
multiperiod

Journal

IEEE Sensors Journal cover
IEEE Sensors Journal
IF:
4.5
Papers:
2.1W
Citations:
7.3W

Organization

No organization information available