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Distance Aware Relaying Energy-Efficient: DARE to Monitor Patients in Multi-hop Body Area Sensor Networks

机译:距离感知中继节能:DARE监视多跳人体区域传感器网络中的患者

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In recent years, interests in the applications of Wireless Body Area Sensor Network (WBASN) is noticeably developed. WBASN is playing a significant role to get the real time and precise data with reduced level of energy consumption. It comprises of tiny, lightweight and energy restricted sensors, placed in/on the human body, to monitor any ambiguity in body organs and measure various biomedical parameters. In this study, a protocol named Distance Aware Relaying Energy efficient (DARE) to monitor patients in multi-hop Body Area Sensor Networks (BASNs) is proposed. The protocol operates by investigating the ward of a hospital comprising of eight patients, under different topologies by positioning the sink at different locations or making it static or mobile. Seven sensors are attached to each patient, measuring different parameters of Electrocardiogram (ECG), pulse rate, heart rate, temperature level, glucose level, toxins level and motion. To reduce the energy consumption, these sensors communicate with the sink via an on-body relay, affixed on the chest of each patient. The body relay possesses higher energy resources as compared to the body sensors as, they perform aggregation and relaying of data to the sink node. A comparison is also conducted conducted with another protocol of BAN named, Mobility-supporting Adaptive Threshold-based Thermal-aware Energy-efficient Multi-hop ProTocol (M-ATTEMPT). The simulation results show that, the proposed protocol achieves increased network lifetime and efficiently reduces the energy consumption, in relative to MATTEMPT protocol.
机译:近年来,人们对无线人体区域传感器网络(WBASN)的应用产生了浓厚的兴趣。 WBASN在获取实时和精确数据,降低能耗水平方面发挥着重要作用。它由微型,轻巧和能量受限的传感器组成,它们放置在人体中/人体上,以监视人体器官中的任何歧义并测量各种生物医学参数。在这项研究中,提出了一种名为“距离感知中继节能”(DARE)的协议,用于监视多跳人体区域传感器网络(BASN)中的患者。通过将水槽放置在不同位置或使其静止或移动,该协议通过调查由八名患者组成的医院病房在不同的拓扑结构下进行操作。七个传感器连接到每个患者,测量心电图(ECG),脉搏,心率,温度水平,葡萄糖水平,毒素水平和运动的不同参数。为了减少能量消耗,这些传感器通过贴在每个患者胸部的人体继电器与水槽通信。与身体传感器相比,身体继电器具有更高的能源,因为它们执行聚合并将数据中继到接收器节点。还与BAN的另一种协议进行了比较,该协议名为基于移动性的自适应基于阈值的热感知节能多跳协议(M-ATTEMPT)。仿真结果表明,相对于MATTEMPT协议,所提出的协议具有更长的网络寿命并有效地降低了能耗。

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