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Methods for Interference Management in Medical Wireless Sensor Networks

机译:医疗无线传感器网络中的干扰管理方法

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摘要

Emerging Medical Body Area Networks (MBANs) require new, protected spectrum for clinical applications. This may mean uncoordinated and autonomous operation of multiple MBANs, within the new candidate bands. The question is that how will MBANs coexist as a secondary service with other radio systems? Clinical environment requires balance of robust and efficient wireless techniques to enable coexistence of MBANs and other radio devices where low transmission power MBANs as secondary systems may be vulnerable to interference from incumbent devices transceivers. Physical separation between the MBANs and incumbent radio devices and avoiding the transmission in the same frequency bands among the wireless techniques may be considered. In this paper, we propose interference management techniques considering such coexistence between the MBANs and other radio systems and deal with the issue of co existence with primary systems by proposing novel methods for a gateway-to-gateway coordination, to assist the methods described in the first and second part of this paper. Result is improved reliability and Quality of Service for MBANs. These would lead to multiple clinical benefits, including better patient mobility, more monitoring flexibility and extension of monitoring into care areas that are currently unmonitored. Reduced clinical errors and reduced overall monitoring costs are other results.
机译:新兴的医疗体域网(MBAN)需要新的受保护频谱用于临床应用。这可能意味着在新的候选频段内多个MBAN的不协调自主运行。问题是,MBAN如何作为辅助服务与其他无线电系统共存?临床环境需要强大和高效的无线技术之间的平衡,以实现MBAN和其他无线电设备的共存,在这些设备中,作为辅助系统的低传输功率MBAN可能容易受到现有设备收发器的干扰。可以考虑在MBAN与现有无线电设备之间进行物理隔离,并避免无线技术之间在相同频带中进行传输。在本文中,我们提出了一种考虑MBAN与其他无线电系统之间共存的干扰管理技术,并通过提出网关到网关协调的新方法来解决与主要系统共存的问题,以协助在本手册中描述的方法。本文的第一和第二部分。结果是提高了MBAN的可靠性和服务质量。这些将带来多种临床益处,包括更好的患者移动性,更大的监测灵活性以及将监测范围扩展到当前未监测的护理领域。其他结果是,减少了临床错误并减少了总体监控成本。

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  • 作者

    Abedi, Saied;

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  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 eng
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