Cite

F. Xia, B. Bahreyni, F. Campi, Multi-functional capacitive proximity sensing system for industrial safety applications, 2016 IEEE SENSORS, Orlando, FL, USA, 2016, pp. 1-3, doi: 10.1109/ICSENS.2016.7808496.Search in Google Scholar

S. E. Navarr, S. Mühlbacher-Karrer, H. Alagi, H. Zangl,K. Koyama, B. Hein, C. Duriez, J.R. Smith, Proximity Perception in Human-Centered Robotics: A Survey on Sensing Systems and Applications, IEEE Transactions on Robotics, vol. 38, no. 3, pp. 1599-1620, June 2022, doi: 10.1109/TRO.2021.3111786.Search in Google Scholar

C. Xing, Perspective of Proximity Sensors on Robots Using Cross-Thought, Highlights in Science, Engineering and Technology, vol. 32, TPCEE 2022, 2023, pp. 1-13, https://doi.org/10.54097/hset.v38i.5973.Search in Google Scholar

R. Moheimani, P. Hosseini, S. Mohammadi, H. Dalir, Recent Advances on Capacitive Proximity Sensors: From Design and Materials to Creative Applications, MDPI Journal of Carbon Research, 2022, vol. 8(2), pp. 1-19, https://doi.org/10.3390/c8020026.Search in Google Scholar

M. Jagiella and S. Fericean, Miniaturized inductive sensors for industrial applications, SENSORS, 2002 IEEE, Orlando, FL, USA, 2002, pp. 771-778 vol.2, doi: 10.1109/ICSENS.2002.1037204.Search in Google Scholar

S. Fericean, R. Droxler, New Noncontacting Inductive Analog Proximity and Inductive Linear Displacement Sensors for Industrial Automation, IEEE Sensors Journal, vol. 7 (11), pp. 1538-1545, 2007, 10.1109/JSEN.2007.908232.Search in Google Scholar

A. Ksentini, Z. Hadef, El-Bahi Azzag, Management and Modeling of a Hybrid Electric Vehicle, Scientific Bulletin of the Electrical Engineering Faculty, vol. 22 (2), 2022, pp. 18-25, https://doi.org/10.2478/sbeef-2022-0015.Search in Google Scholar

S. Pannala, A. Weng, I. Fischer, J. B. Siegel, Anna G. Stefanopoulou, Low-Cost Inductive Sensor and Fixture Kit for Measuring Battery Cell Thickness Under Constant Pressure, IFAC-PapersOnLine, Volume 55, Issue 37, 2022, Pages 712-717, https://doi.org/10.1016/j.ifacol.2022.11.266.Search in Google Scholar

C. W. da Silva, Sensors and Actuators, Engineering System Instrumentation, Second Edition, CRC Press, 2015.Search in Google Scholar

C Bartolettiy, R Buonanniy, L G Fantasiay, R Frullaz, W Gaggioliy and G Sacerdotiy, The design of a proximity inductive sensor, Meas. Sci. Technol. 9 (1998) 1180–1190.Search in Google Scholar

Inductive Proximity Sensors, Volume 8—Sensing Solutions CA08100010E—September 2017, Eaton.Search in Google Scholar

Functional Safety in Direction Detection for AGV Control Systems, Application Report | 03.2023 | AGV, https://www.pepperl-fuchs.com/global/en/classid_143.htm.Search in Google Scholar

Standard Type Cylindrical Inductive Proximity, GX-300 SERIES, Panasonic Industry.Search in Google Scholar

T. Strinic, B. Wex, G. Jungmayr, T. Stallinger, J. Frevert, M. Panholzer, An Alternative Method for Calculating the Eddy Current Loss in the Sleeve of a Sealless Pump, Actuators 2021, 10(4), 78; https://doi.org/10.3390/act10040078.Search in Google Scholar

P. Kejık, C. Kluser, R. Bischofberger, R. S. Popovic, A low-cost inductive proximity sensor for industrial applications, Sensors and Actuators A 110, 2004, pp. 93–97, doi: 10.1016/j.sna.2003.07.007.Search in Google Scholar

© FEMM Software, https://www.femm.info/wiki/HomePage.Search in Google Scholar

V. Solcanu, M. Gaiceanu, M. Constantinescu, G. Samoilescu, A. Sotir, Modeling of Dispersion Magnetic Fields Developed by the Main Electromagnetic Systems Used on Military Ships, Scientific Bulletin of the Electrical Engineering Faculty, vol. 20 (1), 2020, pp. 40-43, DOI: 10.2478/sbeef-2020-0109.Search in Google Scholar

V. Solcanu, M. Gaiceanu, M. Constantinescu, G. Samoilescu, A. Sotir, Modeling of the Dispersion Magnetic Fields for the Single-Phase Transformers, Scientific Bulletin of the Electrical Engineering Faculty, vol. 20 (1), 2020, pp. 50-55, DOI: 10.2478/sbeef-2020-0111.Search in Google Scholar