基于人-传感器接口的无线宽带网络干扰感知信道切换

Judhistir Mahapatro, S. Misra, M. Mahadevappa, Nabiul Islam
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引用次数: 15

摘要

无线身体区域网络(WBAN)由不同的医疗传感器组成,通过无线媒介连接到身体上的协调器。这些传感器被放置在人体上,用于持续监测生理参数。节点感知到的信息被传送到体上协调器。在从传感器节点接收到这些信息后,协调器将这些信息发送到医疗服务器以进行后期数据分析。任何基于无线电频率的无线设备都会受到干扰,因为存在其他无线设备在相同的免许可证频带中工作。在本文中,我们解决了当多个wban彼此接近时的干扰问题。在这种情况下,WBAN根据信号干扰比(SIR)感知其他干扰WBAN的存在。提出了一种无线宽带网络的干扰感知信道交换算法(InterACS),实现了无线宽带网络与传感器之间的无干扰无缝通信。我们使用NS-3网络模拟器模拟了所提出的解决方案,并观察到使用所提出的解决方案在减少干扰数量方面有改进。
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Interference-aware channel switching for use in WBAN with human-sensor interface
A Wireless Body Area Network (WBAN) consists of different medical sensors connected to an on-body coordinator through a wireless medium. The sensors are placed over a human body for continuous monitoring of physiological parameters. The information sensed by the nodes are transmitted to the on-body coordinator. Upon receiving these information from the sensor nodes, the coordinator transmits the same to the medical server for post data analysis. Any radio frequency based wireless device suffers from interference due to the existence of other wireless devices operating in the same licence-free frequency band. In this paper, we address the problem of interference when multiple WBANs come in the proximity of one another. In such a scenario, the WBAN senses the existence of other interfering WBANs, based on the Signal-to-Interference Ratio (SIR). We propose an interference-aware channel switching algorithm (InterACS) for WBANs, so that there is seamless communication with their sensors without interference among them. We simulated the proposed solution using the NS-3 network simulator and observed that there is improvement in reducing the number of interferences by using the proposed solution scheme.
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