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Yıl 2023, Cilt: 2 Sayı: 2, 290 - 296, 27.12.2023

Öz

Kaynakça

  • Abbasi-Kesbi R., Nikfarjam A., Nemati M.,(2020).Developed wireless sensor network to supervise the essential parameters in greenhouses for internet of things applications. IET Circuits Devices Syst.,vol. 14 Iss. 8, pp. 1258-1264. doi: https://doi.org/10.1049/iet-cds.2020.0085.
  • Gupta, A., and Mohammed, I., (2016). Bluetooth low energy (BLE) fundamentals, Cypress Semiconductor. [Online]. [Accessed: Sep - 2023] https://www.embedded.com /design/connectivity/4442870/Bluetooth-low-energy--BLE--fundamentals.
  • Hagem R. M., Sabti H. A., Thiel D. V.(2015).Coach-Swimmer Communications Based on Wrist Mounted 2.4GHz Accelerometer Sensor. Procedia Engineering, vol. 112, pp. 512-516. doi: https://doi.org/10.1016/j.proeng.2015.07.234.
  • Hagem R. M., O'Keefe S. G., Fickenscher T., Thiel D. V. (2013). Self Contained Adaptable Optical Wireless Communications System for Stroke Rate During Swimming. in IEEE Sensors Journal, vol. 13, no. 8, pp. 3144-3151, doi: https://doi: 10.1109/JSEN.2013.2262933.
  • Khan, R., Khan, S. U., Zaheer, R., and Khan, S. (2012). Future Internet: The Internet of Things Architecture, Possible Applications and Key Challenges, 10th International Conference on Frontiers of Information Technology, pp. 257–260. doi: https://doi.org/10.1109/FIT.2012.53
  • Khan A. N, Cha Y., Giddens H., Hao Y. (2022).Recent Advances in Organ Specific Wireless Bioelectronic Devices: Perspective on Biotelemetry and Power Transfer Using Antenna Systems. Engineering, vol. 11,pp. 27-41, doi: https://doi.org/10.1016/j.eng.2021.10.019.
  • Lee, J., Su, Y., and Shen, C., (2007). A Comparative Study of Wireless Protocols: Bluetooth, UWB, ZigBee, and Wi-Fi. 33rd Annual Conference of the IEEE Industrial Electronics Society (IECON), pp. 46-51, Nov. 5-8, Taipei, Taiwan. doi: https://doi.org/10.1109/IECON.2007.4460126
  • Memon S. F., Memon M., Bhatti S.(2020).Wearable technology for infant health monitoring: A surve . IET Circuits Devices Syst. , vol. 14 Iss. 2, pp. 115-129. doi: https://doi.org/10.1049/ietcds.2018.5447 .
  • Nilsson E. Lindman T.(2017).Implementation and evaluation of Bluetooth Low Energy as a communication technology for wireless sensor networks ,Bachelor thesis [Innovative programming], pp.10. https://www.diva-portal.org/smash/get/diva2:1112860/FULLTEXT01.pdf Thumb-size Cloud-ready Internet-of-Things (IoT) board with co-existing WiFi and BLE capability, (2016). [Online]. [Accessed: Sep - 2023] , https://github.com/redbear/Duo. Mohammad, Hagem
  • Yu, B., Xu, L., and Li, Y., (2012). Bluetooth Low Energy (BLE) Based Mobile Electrocardiogram Monitoring System. Proceeding of the IEEE International Conference on Information and Automation, pp. 763-767, Shenyang, China. doi: https://doi.org/10.1109/ICInfA.2012.6246921
  • Zheng, J., Simplot-Ryl, D., Bisdikian, C. and Mouftah, H. T. (2011) The internet of things [Guest Editorial]. IEEE Communications Magazine, vol. 49, no. 11, pp. 30–31. doi: https://doi.org/10.1109/MCOM.2011.6069706

Towards a Wearable Embedded System for real time feedback in health and sports applications based on Bluetooth Wireless Sensor

Yıl 2023, Cilt: 2 Sayı: 2, 290 - 296, 27.12.2023

Öz

Real time feedback for sports and health applications is important for monitoring athletes to improve their performance and for patients and elderly people to save their lives. This paper presents a system based on Bluetooth wireless sensors to give real time feedback. This system is an example of IoT technology. Experiments are conducted in air and in water to examine the relationship between signal strength and distance in both mediums. The results showed that this system is feasible in the air for long distances and in water with and without turbidity for short distances.

Kaynakça

  • Abbasi-Kesbi R., Nikfarjam A., Nemati M.,(2020).Developed wireless sensor network to supervise the essential parameters in greenhouses for internet of things applications. IET Circuits Devices Syst.,vol. 14 Iss. 8, pp. 1258-1264. doi: https://doi.org/10.1049/iet-cds.2020.0085.
  • Gupta, A., and Mohammed, I., (2016). Bluetooth low energy (BLE) fundamentals, Cypress Semiconductor. [Online]. [Accessed: Sep - 2023] https://www.embedded.com /design/connectivity/4442870/Bluetooth-low-energy--BLE--fundamentals.
  • Hagem R. M., Sabti H. A., Thiel D. V.(2015).Coach-Swimmer Communications Based on Wrist Mounted 2.4GHz Accelerometer Sensor. Procedia Engineering, vol. 112, pp. 512-516. doi: https://doi.org/10.1016/j.proeng.2015.07.234.
  • Hagem R. M., O'Keefe S. G., Fickenscher T., Thiel D. V. (2013). Self Contained Adaptable Optical Wireless Communications System for Stroke Rate During Swimming. in IEEE Sensors Journal, vol. 13, no. 8, pp. 3144-3151, doi: https://doi: 10.1109/JSEN.2013.2262933.
  • Khan, R., Khan, S. U., Zaheer, R., and Khan, S. (2012). Future Internet: The Internet of Things Architecture, Possible Applications and Key Challenges, 10th International Conference on Frontiers of Information Technology, pp. 257–260. doi: https://doi.org/10.1109/FIT.2012.53
  • Khan A. N, Cha Y., Giddens H., Hao Y. (2022).Recent Advances in Organ Specific Wireless Bioelectronic Devices: Perspective on Biotelemetry and Power Transfer Using Antenna Systems. Engineering, vol. 11,pp. 27-41, doi: https://doi.org/10.1016/j.eng.2021.10.019.
  • Lee, J., Su, Y., and Shen, C., (2007). A Comparative Study of Wireless Protocols: Bluetooth, UWB, ZigBee, and Wi-Fi. 33rd Annual Conference of the IEEE Industrial Electronics Society (IECON), pp. 46-51, Nov. 5-8, Taipei, Taiwan. doi: https://doi.org/10.1109/IECON.2007.4460126
  • Memon S. F., Memon M., Bhatti S.(2020).Wearable technology for infant health monitoring: A surve . IET Circuits Devices Syst. , vol. 14 Iss. 2, pp. 115-129. doi: https://doi.org/10.1049/ietcds.2018.5447 .
  • Nilsson E. Lindman T.(2017).Implementation and evaluation of Bluetooth Low Energy as a communication technology for wireless sensor networks ,Bachelor thesis [Innovative programming], pp.10. https://www.diva-portal.org/smash/get/diva2:1112860/FULLTEXT01.pdf Thumb-size Cloud-ready Internet-of-Things (IoT) board with co-existing WiFi and BLE capability, (2016). [Online]. [Accessed: Sep - 2023] , https://github.com/redbear/Duo. Mohammad, Hagem
  • Yu, B., Xu, L., and Li, Y., (2012). Bluetooth Low Energy (BLE) Based Mobile Electrocardiogram Monitoring System. Proceeding of the IEEE International Conference on Information and Automation, pp. 763-767, Shenyang, China. doi: https://doi.org/10.1109/ICInfA.2012.6246921
  • Zheng, J., Simplot-Ryl, D., Bisdikian, C. and Mouftah, H. T. (2011) The internet of things [Guest Editorial]. IEEE Communications Magazine, vol. 49, no. 11, pp. 30–31. doi: https://doi.org/10.1109/MCOM.2011.6069706
Toplam 11 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Endüstri Mühendisliği
Bölüm Araştırma Makalesi
Yazarlar

Mohammad Tarik

Erken Görünüm Tarihi 27 Aralık 2023
Yayımlanma Tarihi 27 Aralık 2023
Yayımlandığı Sayı Yıl 2023 Cilt: 2 Sayı: 2

Kaynak Göster

APA Tarik, M. (2023). Towards a Wearable Embedded System for real time feedback in health and sports applications based on Bluetooth Wireless Sensor. Journal of Optimization and Decision Making, 2(2), 290-296.
AMA Tarik M. Towards a Wearable Embedded System for real time feedback in health and sports applications based on Bluetooth Wireless Sensor. JODM. Aralık 2023;2(2):290-296.
Chicago Tarik, Mohammad. “Towards a Wearable Embedded System for Real Time Feedback in Health and Sports Applications Based on Bluetooth Wireless Sensor”. Journal of Optimization and Decision Making 2, sy. 2 (Aralık 2023): 290-96.
EndNote Tarik M (01 Aralık 2023) Towards a Wearable Embedded System for real time feedback in health and sports applications based on Bluetooth Wireless Sensor. Journal of Optimization and Decision Making 2 2 290–296.
IEEE M. Tarik, “Towards a Wearable Embedded System for real time feedback in health and sports applications based on Bluetooth Wireless Sensor”, JODM, c. 2, sy. 2, ss. 290–296, 2023.
ISNAD Tarik, Mohammad. “Towards a Wearable Embedded System for Real Time Feedback in Health and Sports Applications Based on Bluetooth Wireless Sensor”. Journal of Optimization and Decision Making 2/2 (Aralık 2023), 290-296.
JAMA Tarik M. Towards a Wearable Embedded System for real time feedback in health and sports applications based on Bluetooth Wireless Sensor. JODM. 2023;2:290–296.
MLA Tarik, Mohammad. “Towards a Wearable Embedded System for Real Time Feedback in Health and Sports Applications Based on Bluetooth Wireless Sensor”. Journal of Optimization and Decision Making, c. 2, sy. 2, 2023, ss. 290-6.
Vancouver Tarik M. Towards a Wearable Embedded System for real time feedback in health and sports applications based on Bluetooth Wireless Sensor. JODM. 2023;2(2):290-6.