Yıl: 2021 Cilt: 11 Sayı: 2 Sayfa Aralığı: 107 - 114 Metin Dili: İngilizce DOI: 10.36222/ejt.996015 İndeks Tarihi: 23-09-2022

Design and Implementation of EOG Signal Based Wireless System to Control Smart Devices

Öz:
Vital signals like Electroencephalogram (EEG), Electrooculography (EOG), and Electroretinogram (ERG) have been used in many areas due to their effectiveness and accuracy. Electrodes can obtain the signals, and then they can be amplified and processed. This study helps people with reduced mobility like paralysis and Amyotrophic Lateral Sclerosis (ALS) using EOG signals. EOG signal is effective in this case because these people can use their eyes without any obstacles. EOG aid system can enable them to rely on themselves in the use of smart devices. This is one of the first studies to present a detailed analysis of the signal acquisition and processing and the results were promising with a result that scored 95% rate.
Anahtar Kelime: EOG ALS Vital-Signals

Belge Türü: Makale Makale Türü: Araştırma Makalesi Erişim Türü: Erişime Açık
  • [1] M.Merino & O. Rivera& I. Gómez &A. Molina. A Method of EOG Signal Processing to Detect the Direction of Eye Movements. First international conference on sensor device .2010.
  • [2] A. Naga Rajesh, S. Chandralingam, T. Anjaneyulu, K. Satyanarayana. EOG Controlled Motorized Wheelchair for Disabled Persons, vol. 115 ,pp. 965-970, 2014.
  • [3] B.Narayanan. Micro controller based EOG guided wheelchair-January 33(2), 3398-3401, 2013.
  • [4] N. ÖZKAN , A.IŞIK , U. FİDAN. Design and Acquisition of EOG Based Interactive Communications for ALS Patients, Electronics And Computers Special Issue, 2017.
  • [5] L. Y., Hsu, C.-L., Lin, T.-C., Tuan, J.-S., & Chang, S.-M. EOG-based Human–Computer Interface system development. Expert Systems with Applications37(4), 3337-3343, 2010.
  • [6] Barea, R., Boquete, L., Ortega, S., López, E., & Rodríguez-Ascariz, J. M. (2012). EOG-based eye movements codification for human computer interaction, 39(12), pp. 2677-2683, 2012.
  • [7] Postelnicu, C.-C., Girbacia, F., & Talaba, D. (2012). EOG-based visual navigation interface development. 39(3), 2677-2683.
  • [8] Schlögl, A., Keinrath, C., Zimmermann, D., Scherer, R., Leeb, R., & Pfurtscheller, G. (2007). A fully automated correction method of EOG artifacts in EEG recordings. DOI:10.1016/j.clinph.2006.09.003.
  • [9] RAMİS İLERİ: Determination of the most appropriate writing characters for the education of children with dyslexia by using EOG signals- UlusalTezMerkezi - 2020.
  • [10] AHMET COŞKUN:Sleep staging with electrooculography (EOG) signals, 22-35, 2017.
  • [11] Eye anatomy, parts of the eye and how we see, 2021. https://www.aao.org/eye-health/anatomy/parts-of-eye
  • [12] Eye anatomy: close look at the parts of the eye. 2021. https://www.allaboutvision.com/resources/anatomy.htm
  • [13] M.C Kiernan, S. Vucic, B. C. Cheah, M. R. Turner, A., Orla, J. R Burrell, M.C Zoing. Amyotrophic lateral sclerosis 7, 2011. DOI:10.1016.
  • [14] Berthoz A, Melvill Jones G Büttner.Ennever JA. The Electric Signals Originating in the Eye.
  • [15] Estrany, B., Fuster, P., Garcia, A., & Luo, Y. (2009). EOG signal processing and analysis for controlling computer by eye movements. DOI:10.1145/1579114.1579132.
  • [16] Abo-Zahhad, M., Ahmed, S. M., & Abbas, S. N. (2015). A New EEG Acquisition Protocol for Biometric Identification Using Eye Blinking Signals, 2015.06.05.
  • [17] Mala Sundaram Feature selection in activity recognition using eye movements: Filter based approach Jan 2015.
  • [18] Ma, J., Zhang, Y., Cichocki, A., & Matsuno, F. (2015). A Novel EOG/EEG Hybrid Human–Machine Interface Adopting Eye Movements and ERPs: Application to Robot Control. tbme.2014.2369483.
  • [19] Ivailo Milanov Pandiev-Analysis and Design of Instrumentation Amplifiers-June 2013. DOI: 10.1125
  • [20] T. Dear, J. Chang, W. Chow, D. Wai, J. Wang-Filters -Summer 2012.
  • [21] A. Goen.Analysis and Design of Low Pass Filter by Using DGS for WLAN Application-January 2007 DOI:10.15662.
  • [22] W. Hendra Gunawan STT Migas. Low Pass Filter Design With Artificial Ground Structure-November 2017:10.32487.
  • [23] R. Reddy R. PERFORMANCE ANALYSIS OF ADDER CIRCUITS USING FINFET'S. January 2017 DOI:10.26634.
  • [24] James M. Fiore. Operational Amplifiers & Linear Integrated Circuits: Theory and Application-Version 3.2.5, 15 December 2020.
  • [25] ATmega328P 8-bit AVR Microcontroller with 32K Bytes In-System Programmable Flash. https://datasheetspdf.com/datasheet/ATmega328P.html
  • [26] HC-05 -Bluetooth to Serial Port Module. http://www.electronica60norte.com/mwfls/pdf/newBluetooth.pdf
  • [27] autodesk.com/products/eagle/overview.
  • [28] INA118 Precision, Low-Power Instrumentation Amplifier-Datasheet - production data. https://www.ti.com/lit/ds/symlink/ina118.pdf?ts=1636968472131&ref _url=https%253A%252F%252Fwww.google.ru%252F
  • [29] tl082- General purpose JFET dual operation amplifiers -Datasheet - production data. https://www.ti.com/lit/ds/symlink/tl082-n.pdf
APA skheta a, EKREN N (2021). Design and Implementation of EOG Signal Based Wireless System to Control Smart Devices. , 107 - 114. 10.36222/ejt.996015
Chicago skheta abdalrahman,EKREN Nazmi Design and Implementation of EOG Signal Based Wireless System to Control Smart Devices. (2021): 107 - 114. 10.36222/ejt.996015
MLA skheta abdalrahman,EKREN Nazmi Design and Implementation of EOG Signal Based Wireless System to Control Smart Devices. , 2021, ss.107 - 114. 10.36222/ejt.996015
AMA skheta a,EKREN N Design and Implementation of EOG Signal Based Wireless System to Control Smart Devices. . 2021; 107 - 114. 10.36222/ejt.996015
Vancouver skheta a,EKREN N Design and Implementation of EOG Signal Based Wireless System to Control Smart Devices. . 2021; 107 - 114. 10.36222/ejt.996015
IEEE skheta a,EKREN N "Design and Implementation of EOG Signal Based Wireless System to Control Smart Devices." , ss.107 - 114, 2021. 10.36222/ejt.996015
ISNAD skheta, abdalrahman - EKREN, Nazmi. "Design and Implementation of EOG Signal Based Wireless System to Control Smart Devices". (2021), 107-114. https://doi.org/10.36222/ejt.996015
APA skheta a, EKREN N (2021). Design and Implementation of EOG Signal Based Wireless System to Control Smart Devices. European Journal of Technique, 11(2), 107 - 114. 10.36222/ejt.996015
Chicago skheta abdalrahman,EKREN Nazmi Design and Implementation of EOG Signal Based Wireless System to Control Smart Devices. European Journal of Technique 11, no.2 (2021): 107 - 114. 10.36222/ejt.996015
MLA skheta abdalrahman,EKREN Nazmi Design and Implementation of EOG Signal Based Wireless System to Control Smart Devices. European Journal of Technique, vol.11, no.2, 2021, ss.107 - 114. 10.36222/ejt.996015
AMA skheta a,EKREN N Design and Implementation of EOG Signal Based Wireless System to Control Smart Devices. European Journal of Technique. 2021; 11(2): 107 - 114. 10.36222/ejt.996015
Vancouver skheta a,EKREN N Design and Implementation of EOG Signal Based Wireless System to Control Smart Devices. European Journal of Technique. 2021; 11(2): 107 - 114. 10.36222/ejt.996015
IEEE skheta a,EKREN N "Design and Implementation of EOG Signal Based Wireless System to Control Smart Devices." European Journal of Technique, 11, ss.107 - 114, 2021. 10.36222/ejt.996015
ISNAD skheta, abdalrahman - EKREN, Nazmi. "Design and Implementation of EOG Signal Based Wireless System to Control Smart Devices". European Journal of Technique 11/2 (2021), 107-114. https://doi.org/10.36222/ejt.996015