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STEM-NET: How to deploy a self-organizing network of mobile end-user devices for emergency communication

机译:STEM-NET:如何部署移动最终用户设备的自组织网络以进行紧急通信

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摘要

Spontaneous wireless networks constructed out of mobile end-user devices (e.g. smartphones or tablets) are currently receiving considerable interest as they enable a wide range of novel, highly pervasive and user-centric network services and applications. In this paper, we focus on emergency-related scenarios, and we investigate the potential of spontaneous networks for providing Internet connectivity over the emergency area through the sharing of resources owned by the end-user devices. Novel and extremely flexible network deployment strategies are required in order to cope with the user mobility, the limited communication capabilities of wireless devices, and the intrinsic dynamics of traffic loads and QoS requirements. To this purpose, we propose here a novel approach toward the deployment of spontaneous networks composed by a new generation of wireless devices - called Stem Nodes (SNs) - to emphasize their ability to cover multiple network roles (e.g. gateway, router). The self-organization of the spontaneous network is then achieved through the local reconfiguration of each SN. Two complementary research contributions are provided. First, we describe the software architecture of a SN (which can be implemented on top of existing end-user devices), and we detail how a SN can manage its role set, eventually extending it through cooperation with other SNs. Second, we propose distributed algorithms, based on swarm intelligence principles, through which each SN can autonomously select its role, and self-elect to gateway or router, so that end-to-end performance are maximized while the lifetime of the spontaneous emergency network is prolonged. The ability of the proposed algorithm to guarantee adaptive and self-organizing network behaviors is demonstrated through extensive Omnet++ simulations, and through a prototype implementation of the SN architecture on a real testbed, (c) 2015 Elsevier B.V. All rights reserved.
机译:由移动终端用户设备(例如,智能手机或平板电脑)构成的自发无线网络目前正引起人们的极大兴趣,因为它们可以支持各种新颖,高度普及且以用户为中心的网络服务和应用。在本文中,我们重点关注与紧急情况有关的场景,我们研究了自发网络通过共享最终用户设备拥有的资源在紧急区域提供Internet连接的潜力。为了应对用户移动性,无线设备有限的通信功能以及业务负载和QoS要求的内在动态,需要新颖且极其灵活的网络部署策略。为此,我们在这里提出一种新颖的方法来部署由新一代无线设备-干节点(SN)组成的自发网络,以强调其覆盖多个网络角色(例如网关,路由器)的能力。然后,通过每个SN的本地重新配置来实现自发网络的自组织。提供了两个互补的研究贡献。首先,我们描述了SN的软件体系结构(可以在现有最终用户设备之上实现),并且详细介绍了SN如何管理其角色集,并最终通过与其他SN的合作对其进行扩展。其次,我们提出了基于群体智能原理的分布式算法,每个SN可以通过这些算法自主选择其角色,并自动选择网关或路由器,从而在自发应急网络的生命周期内最大化端到端性能被延长。通过广泛的Omnet ++仿真以及在实际测试台上SN架构的原型实现,证明了所提出算法保证自适应和自组织网络行为的能力,(c)2015 Elsevier B.V.保留所有权利。

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