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On the implant communication and MAC protocols for WBAN

机译:关于WBAN的植入通信和MAC协议

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摘要

Recent advances in micro-electro-mechanical systems, wireless communication, low-power intelligent sensors, and semiconductor technologies have allowed the realization of a wireless body area network (WBAN). A WBAN provides unobtrusive health monitoring for a long period of time with real-time updates to the physician. It is widely used for ubiquitous health care, entertainment, and military applications. The implantable and wearable medical devices have several critical requirements such as power consumption, data rate, size, and low-power medium access control (MAC) protocols. This article consists of two parts: body implant communication, which is concerned with the communication to and from a human body using radio frequency (RF) technology, and WBAN MAC protocols, which presents several low-power MAC protocols for a WBAN with useful guidelines including a case study of IEEE 802.15.4, PB-TDMA, and SMAC protocols. In body implant communication, the in-body RF performance is affected considerably by the implant's depth and different polarization combinations inside the human body as well as by the muscle and fat. We observe best performance at a depth of 3 to 5 cm and not close to the human skin. Furthermore, the study of low-power MAC protocols highlights the most important aspects of developing a novel low-power and reliable MAC protocol for a WBAN.
机译:微机电系统,无线通信,低功耗智能传感器和半导体技术的最新发展已实现了无线人体局域网(WBAN)。 WBAN通过对医生的实时更新,可以长时间提供健康的监视。它被广泛用于无处不在的医疗,娱乐和军事应用。可植入和可穿戴医疗设备具有几个关键要求,例如功耗,数据速率,大小和低功耗媒体访问控制(MAC)协议。本文包括两个部分:人体植入物通信,它涉及使用射频(RF)技术与人体之间的通信;以及WBAN MAC协议,该协议为WBAN提供了几种低功耗MAC协议,并提供了有用的指南包括对IEEE 802.15.4,PB-TDMA和SMAC协议的案例研究。在人体植入物通信中,体内射频性能会受到植入物深度,人体内部不同的极化组合以及肌肉和脂肪的影响。我们在3到5厘米深度且不靠近人体皮肤的地方观察到最佳性能。此外,对低功耗MAC协议的研究突出了为WBAN开发新颖的低功耗和可靠MAC协议的最重要方面。

著录项

  • 来源
    《International journal of communication systems》 |2010年第8期|P.982-999|共18页
  • 作者单位

    Graduate School of Telecommunication Engineering, Inha University, 253 Yonghyun-dong, Nam-gu, Incheon (402-751), Incheon, South Korea;

    rnZarlink Semiconductor Company, U.K.;

    rnGraduate School of Telecommunication Engineering, Inha University, South Korea;

    rnGraduate School of Telecommunication Engineering, Inha University, South Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    in-body; on-body; RF communication; implant; WBAN;

    机译:体内身体射频通讯;注入;世界银行;

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