Department of Information Technology, Faculty of Computing and Information Technology, King AbdulAziz University, Jeddah 21589, Saudi Arabia.
Sensors (Basel). 2020 Feb 25;20(5):1243. doi: 10.3390/s20051243.
Wireless Body Area Networks (WBANs) are designed to provide connectivity among diverse miniature body sensors that support different Internet of Things (IoT) healthcare applications. Among diverse body sensors, WBANs exploit in-vivo sensor nodes that detect and collect the required biometric data of certain physiological change inside the human body, and transmits the sensed data utilizing wireless communication. However, sensing and wireless communication activities of in-vivo sensors produce heat and could result thermal damage to the human tissue if the sensing and communication continues for a long period. Furthermore, Quality of Service (QoS) provisioning for diverse traffic types is another striking requirement for WBANs. These pressing yet conflicting concerns trigger the design of ThMAC-a Thermal aware duty cycle MAC protocol for IoT healthcare. The protocol regulates the communication operation of a body sensor based on estimated temperature surrounding a tissue to maintain moderate temperature level in a body, also avoiding hotspot. Exploiting both contention-based and contention free channel access mechanisms, ThMAC introduces a superframe structure, where disjoint periods are allocated for diverse traffic types to achieve QoS provisioning. Moreover, ThMAC ensures a reliable and timely delivery of sporadically generated emergency data through an emergency data management mechanism. ThMAC performance is evaluated through computer simulations in terms of thermal rise, energy consumption as well as QoS metrics such as delay and reliability. The results show superior performance of ThMAC compared to that of IEEE 802.15.6.
无线体域网 (WBAN) 旨在提供各种微型体传感器之间的连接,这些传感器支持不同的物联网 (IoT) 医疗应用。在各种体传感器中,WBAN 利用体内传感器节点来检测和收集人体内部特定生理变化所需的生物识别数据,并利用无线通信传输感测数据。然而,体内传感器的感测和无线通信活动会产生热量,如果感测和通信持续很长时间,可能会对人体组织造成热损伤。此外,为各种流量类型提供服务质量 (QoS) 也是 WBAN 的另一个突出要求。这些紧迫但相互冲突的问题引发了针对物联网医疗保健的 ThMAC-一种感知热的占空比 MAC 协议的设计。该协议根据组织周围的估计温度来调节体传感器的通信操作,以维持体内的适度温度水平,同时避免热点。ThMAC 利用基于竞争和无竞争的信道访问机制,引入了一个超帧结构,其中为各种流量类型分配不相交的时间段,以实现 QoS 供应。此外,ThMAC 通过紧急数据管理机制确保突发生成的紧急数据的可靠和及时传输。通过计算机模拟从热上升、能量消耗以及延迟和可靠性等 QoS 指标方面评估了 ThMAC 的性能。结果表明,与 IEEE 802.15.6 相比,ThMAC 具有更好的性能。