Dynamic channel and transmit-power adaptation of WiFi mesh-networks in search and rescue operations

M. H. Chaudhary, B. Scheers
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引用次数: 4

Abstract

For search and rescue (SAR) missions in emergency and disaster scenarios, unmanned robotic technologies offer an opportunity to save human lives and speed up the rescue process. Communication among the unmanned devices and with the command and control station plays a key role in detecting, locating, and rescuing affected persons. To establish this communication network, ease of deployment provided by the wireless communication paradigm makes it a suitable technology in any SAR mission. Lack of any infrastructure support in a disaster hit area means that the wireless network needs to be a self-organizing network of mobile devices that embodies cognitive features enabling it to adapt to the dynamics of the operational environment. To this end, we develop a framework for cognitive management and control of the WiFi mesh-networks for use in SAR operations. We propose dynamic channel and transmitpower adaptation algorithms that do not require any modification of the underlying device driver or firmware. For control signaling we can use either in-band signaling essentially using the WiFi network, or a dedicated robust narrow-band radio network. Where the latter option may be preferred in harsh propagation environments like in SAR scenarios. Effectiveness of the proposed scheme is illustrated with results from implementation with commercial of the shelf components.
WiFi网状网络在搜救行动中的动态信道和发射功率自适应
在紧急和灾害情况下的搜救任务中,无人机器人技术为拯救生命和加快救援进程提供了机会。无人设备之间的通信以及与指挥控制站的通信在探测、定位和救援受灾人员方面起着关键作用。为了建立这种通信网络,无线通信范式提供的易于部署使其成为适用于任何SAR任务的技术。在受灾地区缺乏任何基础设施支持,这意味着无线网络需要是一个由移动设备组成的自组织网络,该网络体现了使其能够适应动态操作环境的认知特征。为此,我们开发了一个用于SAR操作的WiFi网格网络的认知管理和控制框架。我们提出不需要修改底层设备驱动程序或固件的动态信道和发射功率自适应算法。对于控制信号,我们可以使用带内信号,基本上使用WiFi网络,或专用的鲁棒窄带无线网络。在SAR场景等恶劣的传播环境中,后一种选项可能更可取。通过货架组件商业化实施的结果说明了所提出方案的有效性。
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