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HELPER: Heterogeneous Efficient Low Power Radio for enabling ad hoc emergency public safety networks

机译:HELPER:异构高效低功率无线电,可启用临时的紧急公共安全网络

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Natural and man-made disasters have been causing destruction and distress to humanity all over the world. In these scenarios, communication infrastructures are the most affected entities making the rescue and emergency response operations extremely challenging. This invokes a need to equip the affected people and the emergency responders with the ability to rapidly set up and use independent means of communication. Therefore, in this work, we present a complete end-to-end solution that can connect survivors of a disaster with each other and the authorities using a completely self-sufficient ad hoc network that can be setup rapidly. Accordingly, we develop a Heterogeneous Efficient Low Power Radio (HELPER) that acts as a WiFi (Wireless Fidelity) access point for end-users to connect using website application developed by us. These HELPERs then coordinate with each other to form a LoRa based ad hoc network. To this end, we propose a novel cross-layer optimized distributed energy-efficient routing (SEEK) algorithm that aims to maximize the network lifetime. This aspect is critical especially in energy constrained scenarios after a disaster.To prove the feasibility of the solutions, we prototype the HELPER using WiFi enabled Raspberry Pi and LoRa module that is configured to run using Li-ion batteries. We implement the required cross-layer protocol stack along with the SEEK routing algorithm and develop a website application that an end-user can avail to connect using any device such as smartphones, tablets, laptops etc. We have conducted demonstrations to establish the feasibility of exchanging of text messages over the HELPER network, live map updates, ability to send distress messages (like 9-1-1 calls) to authorities. In the context of authorities, we have shown how they can leverage this technology to remotely monitor the connectivity of the affected area, alert users of imminent dangers and share resource (water, food, first aid) availability information. We have also conducted an extensive numerical evaluation of SEEK algorithm against a greedy geographical routing algorithm using the HELPER testbed. Results showed up to 53% improvement in network lifetime and up to 28% improvement in throughput. Overall, we hope this technology will become instrumental in improving the efficiency and effectiveness of public safety activities. (C) 2019 Elsevier B.V. All rights reserved.
机译:自然和人为灾难已给全世界人类造成破坏和困扰。在这些情况下,通信基础架构是受影响最大的实体,这使得救援和紧急响应操作极具挑战性。这就需要使受灾人员和应急人员具备快速建立和使用独立通信手段的能力。因此,在这项工作中,我们提出了一个完整的端到端解决方案,该解决方案可以使用可以快速设置的完全自给自足的特设网络,将灾难的幸存者与当局相互联系起来。因此,我们开发了一种异构高效低功耗无线电(HELPER),它可以作为WiFi(无线保真)接入点,供最终用户使用我们开发的网站应用程序进行连接。然后,这些HELPER相互协调以形成基于LoRa的自组织网络。为此,我们提出了一种新颖的跨层优化分布式节能路由(SEEK)算法,旨在最大化网络寿命。这一点对于灾难后的能源受限情况尤其重要。为证明解决方案的可行性,我们使用支持WiFi的Raspberry Pi和LoRa模块对HELPER进行原型设计,该模块配置为使用锂离子电池运行。我们实现了所需的跨层协议栈以及SEEK路由算法,并开发了一个最终用户可以使用任何设备(如智能手机,平板电脑,笔记本电脑等)进行连接的网站应用程序。我们进行了演示,以证明建立该协议的可行性。通过HELPER网络交换文本消息,实时地图更新,向管理员发送遇险消息(如9-1-1呼叫)的功能。在当局的背景下,我们已经展示了他们如何利用这项技术来远程监视受灾地区的连通性,警告用户即将发生的危险并共享资源(水,食物,急救)的可用性信息。我们还使用HELPER测试床针对贪婪的地理路由算法进行了SEEK算法的广泛数值评估。结果显示,网络寿命提高了53%,吞吐量提高了28%。总体而言,我们希望这项技术将有助于提高公共安全活动的效率和效力。 (C)2019 Elsevier B.V.保留所有权利。

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