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Energy Efficient and Delay-Aware Adaptive Slot Allocation Medium Access Control Protocol for Wireless Body Area Network

机译:无线体积网络的节能和延迟感知自适应插槽分配介质访问控制协议

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Wireless Body Area Network (WBAN) is the cheapest solution using BioMedical Sensors. They monitor different physiological vital signs of a patient. The output of vital signs does not accept collision, delay, loss, and a high energy consumption of BMSs. This paper proposes Energy Efficient and Delay-Aw are Adaptive Slots Allocation Medium Access Control (EED-MAC) Protocol for WBAN. This Proposed MAC provides sufficient and dedicated channels to all types of BMSs. The patient's data are divided according to the need of a patient. Moreover, the contentions of BMSs are reduced and does not drop data by proposing a Reduced Contention Adaptive Slots Allocation CSMA/CA (RCA-CSMA/CA) scheme. The third proposed scheme is Reliability-Aware Channel Allocation (RAC), which allocates channels for emergency-based BMSs using alert signals without contention. The simulation of the proposed MAC and other schemes achieve significant improvements against the state-of-the-art MAC protocols.
机译:无线体区域网络(WBAN)是使用生物医学传感器最便宜的解决方案。它们监测患者的不同生理生命体征。生命体征的产出不接受碰撞,延迟,损失和BMS的高能量消耗。本文提出了节能和延迟 - AW是WBAN的自适应槽分配介质访问控制(EED-MAC)协议。该提议的MAC为所有类型的BMS提供了足够的专用频道。患者的数据根据​​患者的需要划分。此外,BMS的差异减少,并且通过提出减少的争用自适应槽分配CSMA / CA(RCA-CSMA / CA)方案,不会丢弃数据。第三种提出的方​​案是可靠性感知信道分配(RAC),其使用不争用的警报信号分配基于紧急的BMS的通道。所提出的MAC和其他方案的模拟实现了对最先进的MAC协议的显着改进。

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