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Constructing Dynamic AD-HOC Emergency Networks Using Software-Defined Wireless Mesh Networks

机译:使用软件定义的无线网状网络构建动态AD-HOC应急网络

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摘要

Natural disasters and other emergency situations have the potential to destroy a whole network infrastructure needed for communication critical to emergency rescue, evacuation, and initial rehabilitation. Hence, the research community has begun to focus attention on rapid network reconstruction in such emergencies; however, research has tried to create or improve emergency response systems using traditional radio and satellite communications, which face high operation costs and frequent disruptions. This thesis proposes a centralized monitoring and control system to reconstruct ad-hoc networks in emergencies by using software-defined wireless mesh networks (SDWMN). The proposed framework utilizes wireless mesh networks and software-defined networking to provide real-time network monitoring services to restore Internet access in a targeted disaster zone. It dispatches mobile devices including unmanned aerial vehicles and self-driving cars to the most efficient location aggregation to recover impaired network connections by using a new GPS position finder (GPS-PF) algorithm. The algorithm is based on density-based spatial clustering that calculates the best position to deploy one of the mobile devices. The proposed system is evaluated using the common open research emulator to demonstrate its efficiency and high accessibility in emergency situations. The results obtained from the evaluation show that the performance of the emergency communication system is improved considerably with the incorporation of the framework.
机译:自然灾害和其他紧急情况有可能破坏整个通信网络所需的整个网络基础设施,而这些网络对于紧急救援,疏散和最初的恢复至关重要。因此,研究界已开始将注意力集中在这种紧急情况下的快速网络重建上。但是,研究已经尝试使用传统的无线电和卫星通信来创建或改进应急系统,这些系统面临着高昂的运营成本和频繁的中断。本文提出了一种集中监控系统,通过使用软件定义的无线网状网络(SDWMN)来重建紧急情况下的自组织网络。所提出的框架利用无线网状网络和软件定义的网络来提供实时网络监视服务,以恢复目标灾区中的Internet访问。它通过使用新的GPS位置查找器(GPS-PF)算法,将无人驾驶飞机和自动驾驶汽车等移动设备分配到最有效的位置汇总,以恢复受损的网络连接。该算法基于基于密度的空间聚类,该聚类计算出部署移动设备之一的最佳位置。使用通用的开放式研究仿真器对提出的系统进行评估,以证明其在紧急情况下的效率和高可访问性。从评估中获得的结果表明,通过合并框架,应急通信系统的性能得到了显着改善。

著录项

  • 作者

    Sriramulu, Roop Kumar.;

  • 作者单位

    San Jose State University.;

  • 授予单位 San Jose State University.;
  • 学科 Computer engineering.
  • 学位 M.S.
  • 年度 2018
  • 页码 62 p.
  • 总页数 62
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:05

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