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Very-high-throughput millimeter-wave system oriented for health monitoring applications

机译:面向健康监测应用的超高通量毫米波系统

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Millimeter-wave transmission systems allow for very high throughput rates and broad bandwidths using wireless technology. Most Body Area Networks (BANs) work in the high MHz or few GHz range, which limit the channel capacity of the system. If the bandwidth is narrow, only low spectrally-efficient modulation techniques can be utilized. In this study an energy-efficient radio-over-fiber media access control protocol using the unlicensed 60-GHz millimeter-wave (mm-wave) band is proposed. The protocol can be best described as an algorithm that generates an isometric distribution of the available frequency-time resources and services the slave motes in monochromatic groups. The master mote builds a frequency-time two-dimensional grid that organizes the chronological service order of this FD-TDMA hybrid protocol. This mechanism provides a collision-free environment in which the sensors can achieve energy independence, also referred as self-sustainability in this work, which is an important feature in BANs. Results show that the proposed protocol successfully manages the BANs in a collision-free and energy self-sustainable manner.
机译:毫米波传输系统使用无线技术可实现极高的吞吐率和宽带宽。大多数人体局域网(BAN)都在高MHz或几GHz范围内工作,这限制了系统的信道容量。如果带宽很窄,则只能使用频谱效率低的调制技术。在这项研究中,提出了一种使用未经许可的60 GHz毫米波(mm-wave)频带的节能光纤无线媒体访问控制协议。该协议可以最好地描述为一种算法,该算法生成可用频率时间资源的等距分布,并以单色组的形式为从节点服务。主节点建立了一个时频二维网格,该二维网格组织了此FD-TDMA混合协议的时间顺序服务。这种机制提供了一个无碰撞的环境,在该环境中,传感器可以实现能量独立性,在这项工作中也称为自我可持续性,这是BAN的重要特征。结果表明,所提出的协议以无冲突且能量自持的方式成功地管理了BAN。

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