

“5G and wireless body area networks”, 2018 IEEE Wireless Communications and Networking Conference Workshops. On research challenges in hybrid medium access control protocols for ieee 802.15.6 wbans. Saboor, A., Ahmad, R., Ahmed, W., Kiani, A., Le Moullec, Y., & Alam, M. Wearable health devices-vital sign monitoring, systems and technologies. A survey on wireless body area networks for ehealthcare systems in residential environments. S., Harwin, W., Piechockic, R., & Soltanpur, C. Connolly, “Smart wearable body sensors for patient self-assessment and monitoring.” Archives of Public Health, vol. Human-centric Computing and Information Sciences, 7(1), 34.Į. Medium access control (mac) for wireless body area network (wban): Superframe structure, multiple access technique, taxonomy, and challenges. H., Kaiwartya, O., Kumar, S., & Arshad, M. Performance issues in wireless body area networks for the healthcare application: a survey and future prospects. Con- sequences of chronic diseases and other limitations associated with old age - A scoping review. Maresova, P., Javanmardi, E., Barakovic, S., Barakovic Husic, J., Tomsone, S., Krejcar, O., & Kuca, K. Towards automated self-tagging in emergency health cases”, in IEEE 15th interna- tional conference on e-health networking, applications and services (Healthcom 2013). Kiourti, “Wearable, Epidermal, and Implantable Sensors for Medical Applications,” no. Journal of Sensor and Actuator Networks, 8(2), 1–29. Moving towards body-to-body sensor networks for ubiquitous applications: A survey. Salama, “Physical Sensors for Biomedical Applications,” Proceedings of IEEE Sensors, vol. Intelligent management of multiple access schemes in wireless body area network. Kaur, “Performance Upgradation Against Route Discovery using ABC Optimization in Wireless Body Area Network,” no. Ullah, “An overview of IEEE 802.15.6 standard,” 2010 3rd International Sympo- sium on Applied Sciences in Biomedical and Communica- tion Technologies, ISABEL 2010, pp. Yurdal, “Wireless Medical Devices Wireless Technology in Medical Devices-1,” no. Cognitive ra- dio wireless sensor networks: Applications, challenges and research trends. Wearable and implantable wireless sensor network solutions for healthcare monitoring. A survey of routing protocols in WBAN for healthcare applications. Personal area networks: near- field intrabody communication.
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Finally the general parameters of some popular MAC protocols are highlighted as performance metrics of WBANs.

The design of MAC protocols is primarily based on multiple access techniques. In literature, a number of Medium Access Control (MAC) protocols for WBANs have been suggested for addressing the partic- ular challenges associated with reliability, delay, collision and energy within the new research area. Secondly, different multiple access techniques along with TDMA, CSMA/CA, Slotted Aloha and Hybrid are explored in terms of design goals. As a consequence, discussed the challenges of MAC layer in WBAN. As present and rising tendencies in communications included with the tendencies in microelectronics and embedded system technologies the existing tech- niques of IEEE 802.15.4 and IEEE 802.15.6 standards are explored in WBANs. The Wireless Body Area Network (WBAN), which comprises of a set of tiny, invasive/non-invasive, light-weight, high-energy-efficient biosensors that monitor human health for early diagnosis and therapy, has lately received a lot of interest from researchers.
