UWB-ITRC Center, Inha University, 253 Yongyun-dong, Nam-gu, Incheon, 402-751, Korea.
Sensors (Basel). 2011;11(1):771-84. doi: 10.3390/s110100771. Epub 2011 Jan 12.
Wireless Body Area Networks (WBANs) designed for medical, sports, and entertainment applications, have drawn the attention of academia and industry alike. A WBAN is a special purpose network, designed to operate autonomously to connect various medical sensors and appliances, located inside and/or outside of a human body. This network enables physicians to remotely monitor vital signs of patients and provide real time feedback for medical diagnosis and consultations. The WBAN system can offer two significant advantages: patient mobility due to their use of portable monitoring devices and a location independent monitoring facility. With its appealing dimensions, it brings about a new set of challenges, which we do not normally consider in such small sensor networks. It requires a scalable network in terms of heterogeneous data traffic, low power consumption of sensor nodes, integration in and around the body networking and coexistence. This work presents a medium access control protocol for WBAN which tries to overcome the aforementioned challenges. We consider the use of multiple beam adaptive arrays (MBAA) at BAN Coordinator (BAN_C) node. When used as a BAN_C, an MBAA can successfully receive two or more overlapping packets at the same time. Each beam captures a different packet by automatically pointing its pattern toward one packet while annulling other contending packets. This paper describes how an MBAA can be integrated into a single hope star topology as a BAN_C. Simulation results show the performance of our proposed protocol.
用于医疗、运动和娱乐应用的无线体域网 (WBAN) 引起了学术界和工业界的关注。WBAN 是一种特殊用途的网络,旨在自主运行,连接人体内外的各种医疗传感器和设备。该网络使医生能够远程监测患者的生命体征,并提供实时反馈,用于医疗诊断和咨询。WBAN 系统具有两个显著优势:由于使用了便携式监测设备,患者可以移动,并且具有独立于位置的监测设施。凭借其吸引人的特点,它带来了一系列新的挑战,而在如此小的传感器网络中,我们通常不会考虑这些挑战。它需要在异构数据流量、传感器节点的低功耗、体内和周围网络的集成以及共存方面具有可扩展性的网络。这项工作提出了一种用于 WBAN 的媒体访问控制协议,旨在克服上述挑战。我们考虑在 BAN 协调器 (BAN_C) 节点使用多个波束自适应阵列 (MBAA)。当用作 BAN_C 时,MBAA 可以同时成功接收两个或更多重叠的数据包。每个波束通过自动将其模式指向一个数据包来捕获不同的数据包,同时取消其他竞争数据包。本文描述了如何将 MBAA 集成到单个希望之星拓扑结构中作为 BAN_C。仿真结果显示了我们提出的协议的性能。