Mathematical Model and Calibration Procedure of a PSD Sensor Used in Local Positioning Systems
Here, we propose a mathematical model and a calibration procedure for a PSD (position sensitive device) sensor equipped with an optical system, to enable accurate measurement of the angle of arrival of one or more beams of light emitted by infrared (IR) transmitters located at distances of between 4...
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doaj-c7ddb3293e7a497b967d062f51b1514a2020-11-24T22:19:47ZengMDPI AGSensors1424-82202016-09-01169148410.3390/s16091484s16091484Mathematical Model and Calibration Procedure of a PSD Sensor Used in Local Positioning SystemsDavid Rodríguez-Navarro0José Luis Lázaro-Galilea1Ignacio Bravo-Muñoz2Alfredo Gardel-Vicente3Francisco Domingo-Perez4Georgios Tsirigotis5Department of electronics, University of Alcalá, Alcalá de Henares, Madrid 28801, SpainDepartment of electronics, University of Alcalá, Alcalá de Henares, Madrid 28801, SpainDepartment of electronics, University of Alcalá, Alcalá de Henares, Madrid 28801, SpainDepartment of electronics, University of Alcalá, Alcalá de Henares, Madrid 28801, SpainDepartment of electronics, University of Alcalá, Alcalá de Henares, Madrid 28801, SpainInformatics Engineering Department, Eastern Macedonia and Thrace Institute of Technology, Kvala 65404, GreeceHere, we propose a mathematical model and a calibration procedure for a PSD (position sensitive device) sensor equipped with an optical system, to enable accurate measurement of the angle of arrival of one or more beams of light emitted by infrared (IR) transmitters located at distances of between 4 and 6 m. To achieve this objective, it was necessary to characterize the intrinsic parameters that model the system and obtain their values. This first approach was based on a pin-hole model, to which system nonlinearities were added, and this was used to model the points obtained with the nA currents provided by the PSD. In addition, we analyzed the main sources of error, including PSD sensor signal noise, gain factor imbalances and PSD sensor distortion. The results indicated that the proposed model and method provided satisfactory calibration and yielded precise parameter values, enabling accurate measurement of the angle of arrival with a low degree of error, as evidenced by the experimental results.http://www.mdpi.com/1424-8220/16/9/1484positioningmeasurementPSDLPScalibrationinfrared |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
David Rodríguez-Navarro José Luis Lázaro-Galilea Ignacio Bravo-Muñoz Alfredo Gardel-Vicente Francisco Domingo-Perez Georgios Tsirigotis |
spellingShingle |
David Rodríguez-Navarro José Luis Lázaro-Galilea Ignacio Bravo-Muñoz Alfredo Gardel-Vicente Francisco Domingo-Perez Georgios Tsirigotis Mathematical Model and Calibration Procedure of a PSD Sensor Used in Local Positioning Systems Sensors positioning measurement PSD LPS calibration infrared |
author_facet |
David Rodríguez-Navarro José Luis Lázaro-Galilea Ignacio Bravo-Muñoz Alfredo Gardel-Vicente Francisco Domingo-Perez Georgios Tsirigotis |
author_sort |
David Rodríguez-Navarro |
title |
Mathematical Model and Calibration Procedure of a PSD Sensor Used in Local Positioning Systems |
title_short |
Mathematical Model and Calibration Procedure of a PSD Sensor Used in Local Positioning Systems |
title_full |
Mathematical Model and Calibration Procedure of a PSD Sensor Used in Local Positioning Systems |
title_fullStr |
Mathematical Model and Calibration Procedure of a PSD Sensor Used in Local Positioning Systems |
title_full_unstemmed |
Mathematical Model and Calibration Procedure of a PSD Sensor Used in Local Positioning Systems |
title_sort |
mathematical model and calibration procedure of a psd sensor used in local positioning systems |
publisher |
MDPI AG |
series |
Sensors |
issn |
1424-8220 |
publishDate |
2016-09-01 |
description |
Here, we propose a mathematical model and a calibration procedure for a PSD (position sensitive device) sensor equipped with an optical system, to enable accurate measurement of the angle of arrival of one or more beams of light emitted by infrared (IR) transmitters located at distances of between 4 and 6 m. To achieve this objective, it was necessary to characterize the intrinsic parameters that model the system and obtain their values. This first approach was based on a pin-hole model, to which system nonlinearities were added, and this was used to model the points obtained with the nA currents provided by the PSD. In addition, we analyzed the main sources of error, including PSD sensor signal noise, gain factor imbalances and PSD sensor distortion. The results indicated that the proposed model and method provided satisfactory calibration and yielded precise parameter values, enabling accurate measurement of the angle of arrival with a low degree of error, as evidenced by the experimental results. |
topic |
positioning measurement PSD LPS calibration infrared |
url |
http://www.mdpi.com/1424-8220/16/9/1484 |
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