An Inductive Sensor for Two-Dimensional Displacement Measurement
The simultaneous and independent measurements of two-dimensional (2D) displacements are significant for 2D positioning. Here a planar inductive sensor which is based on the principle of electromagnetic induction is proposed. The sensor is composed of a primary coil and a secondary coil. The primary...
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          | Published in | Sensors (Basel, Switzerland) Vol. 20; no. 7; p. 1819 | 
|---|---|
| Main Authors | , , , , | 
| Format | Journal Article | 
| Language | English | 
| Published | 
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        25.03.2020
     MDPI  | 
| Subjects | |
| Online Access | Get full text | 
| ISSN | 1424-8220 1424-8220  | 
| DOI | 10.3390/s20071819 | 
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| Abstract | The simultaneous and independent measurements of two-dimensional (2D) displacements are significant for 2D positioning. Here a planar inductive sensor which is based on the principle of electromagnetic induction is proposed. The sensor is composed of a primary coil and a secondary coil. The primary coil consists of an array of planar spiral coils which are arranged as an m × n matrix. The primary coil is supplied with 4 kHz alternating current to generate an array of pulsating magnetic field. The secondary coil contains four spiral coils which are arranged as a 2 × 2 matrix. Thereby, four roads of modulated signals whose amplitudes vary with displacements of the secondary coil along x- and y-axis are induced. An algorithm based on the Coordinate Rotation Digital Computer algorithm is introduced to resolve the planar displacements. The structure and working principle of the sensor are proposed firstly. Then, the finite element analysis of the electromagnetic model and the numerical simulation of the algorithm are given. An experiment has been performed on a sensor prototype and the results show that the proposed scheme is feasible. Measurement error analysis of the sensor has been pursued at the end of the paper. | 
    
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| AbstractList | The simultaneous and independent measurements of two-dimensional (2D) displacements are significant for 2D positioning. Here a planar inductive sensor which is based on the principle of electromagnetic induction is proposed. The sensor is composed of a primary coil and a secondary coil. The primary coil consists of an array of planar spiral coils which are arranged as an m × n matrix. The primary coil is supplied with 4 kHz alternating current to generate an array of pulsating magnetic field. The secondary coil contains four spiral coils which are arranged as a 2 × 2 matrix. Thereby, four roads of modulated signals whose amplitudes vary with displacements of the secondary coil along x- and y-axis are induced. An algorithm based on the Coordinate Rotation Digital Computer algorithm is introduced to resolve the planar displacements. The structure and working principle of the sensor are proposed firstly. Then, the finite element analysis of the electromagnetic model and the numerical simulation of the algorithm are given. An experiment has been performed on a sensor prototype and the results show that the proposed scheme is feasible. Measurement error analysis of the sensor has been pursued at the end of the paper. The simultaneous and independent measurements of two-dimensional (2D) displacements are significant for 2D positioning. Here a planar inductive sensor which is based on the principle of electromagnetic induction is proposed. The sensor is composed of a primary coil and a secondary coil. The primary coil consists of an array of planar spiral coils which are arranged as an m × n matrix. The primary coil is supplied with 4 kHz alternating current to generate an array of pulsating magnetic field. The secondary coil contains four spiral coils which are arranged as a 2 × 2 matrix. Thereby, four roads of modulated signals whose amplitudes vary with displacements of the secondary coil along x- and y-axis are induced. An algorithm based on the Coordinate Rotation Digital Computer algorithm is introduced to resolve the planar displacements. The structure and working principle of the sensor are proposed firstly. Then, the finite element analysis of the electromagnetic model and the numerical simulation of the algorithm are given. An experiment has been performed on a sensor prototype and the results show that the proposed scheme is feasible. Measurement error analysis of the sensor has been pursued at the end of the paper.The simultaneous and independent measurements of two-dimensional (2D) displacements are significant for 2D positioning. Here a planar inductive sensor which is based on the principle of electromagnetic induction is proposed. The sensor is composed of a primary coil and a secondary coil. The primary coil consists of an array of planar spiral coils which are arranged as an m × n matrix. The primary coil is supplied with 4 kHz alternating current to generate an array of pulsating magnetic field. The secondary coil contains four spiral coils which are arranged as a 2 × 2 matrix. Thereby, four roads of modulated signals whose amplitudes vary with displacements of the secondary coil along x- and y-axis are induced. An algorithm based on the Coordinate Rotation Digital Computer algorithm is introduced to resolve the planar displacements. The structure and working principle of the sensor are proposed firstly. Then, the finite element analysis of the electromagnetic model and the numerical simulation of the algorithm are given. An experiment has been performed on a sensor prototype and the results show that the proposed scheme is feasible. Measurement error analysis of the sensor has been pursued at the end of the paper.  | 
    
| Author | Wu, Liang Xu, Shi Mou, Chuan Zhong, Ziqiang Wang, Xinda  | 
    
| AuthorAffiliation | Engineering Research Center of Mechanical Testing Technology and Equipment (Ministry of Education), Chongqing University of Technology, Chongqing 401135, China; xushi@cqut.edu.cn (S.X.); zzq@2018.cqut.edu.cn (Z.Z.); mouchuan@2018.cqut.edu.cn (C.M.); wangxinda@2019.cqut.edu.cn (X.W.) | 
    
| AuthorAffiliation_xml | – name: Engineering Research Center of Mechanical Testing Technology and Equipment (Ministry of Education), Chongqing University of Technology, Chongqing 401135, China; xushi@cqut.edu.cn (S.X.); zzq@2018.cqut.edu.cn (Z.Z.); mouchuan@2018.cqut.edu.cn (C.M.); wangxinda@2019.cqut.edu.cn (X.W.) | 
    
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| Cites_doi | 10.1007/s00170-010-2865-2 10.1109/JSEN.2019.2904119 10.1016/j.sna.2009.12.029 10.1109/TIM.2016.2600918 10.1515/msr-2016-0015 10.1016/j.sna.2007.03.027 10.1063/1.5024637 10.1016/j.sna.2012.10.016 10.5875/ausmt.v1i2.53 10.1109/TMAG.2008.2002801 10.1631/jzus.C12MNT03 10.1109/JSEN.2019.2916431 10.1109/TVLSI.2015.2445855 10.3390/s16050691 10.1088/0957-0233/23/7/074001 10.1631/FITEE.1800708 10.1016/j.precisioneng.2010.01.003 10.1016/j.precisioneng.2007.02.003 10.1364/OPTICA.4.000729 10.1016/j.precisioneng.2009.05.008 10.1016/j.optcom.2017.03.012 10.1016/j.sna.2019.05.025 10.1145/2380116.2380157 10.1109/JSEN.2017.2719101 10.1016/j.cirp.2015.05.009 10.3390/s150922530 10.1109/JSEN.2017.2780835  | 
    
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| Snippet | The simultaneous and independent measurements of two-dimensional (2D) displacements are significant for 2D positioning. Here a planar inductive sensor which is... | 
    
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| StartPage | 1819 | 
    
| SubjectTerms | Accuracy cordic algorithm Humidity inductive sensor Lasers Magnetic fields pulsating magnetic field Sensors spiral coils two-dimensional displacement measurement  | 
    
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| Title | An Inductive Sensor for Two-Dimensional Displacement Measurement | 
    
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