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Cognitive radio mixed sensor and Mobile Ad Hoc Networks (SMANET) for dual use applications

机译:用于双重使用应用的认知无线电混合传感器和移动临时网络(SMANET)

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In this paper, we investigate the issues of survivability and efficiency in a heterogeneous Mobile Ad Hoc Network (MANET) and Sensor Network as a combined network where the communications is achieved using a mixed MANET and Sensor Network, referred to as SMANET for supporting mission critical applications. Using the Cluster Managed SMANET where, heterogeneous nodes with different capabilities and nodes from different organizations deployed within the same geographical area will support variety of multi-service mission critical applications while increasing the network lifetime. In this network, nodes from different organizations collaborate with each other for mission critical data to be delivered using multi-hop radio-sensor-radio type path routing while keeping the tactical operations supported by the battlefield command control structure transparent. While keeping the collaborative encounters, it is important to keep cross-organization data transfer at the lowest possible level for minimal disruption of the traffic within each organization and for security reasons. Assuming that all nodes are equipped with cognitive radio capability maintaining interoperability, we propose a novel routing metric that maximize the benefits from the collaboration of heterogeneous nodes and take the organizational constraints into account. Furthermore, we propose joint design of cognitive radio and multi-carrier modulation to maximize the bandwidth utilization and energy efficiency in SMANET. Simulation results demonstrate that the proposed method provide much needed survivability and efficiency in battlefield environment while keeping the cross-organization data transfer at the lowest possible level as a value added enhancement compared to homogeneous MANET or sensor networks. Same network design can also find use in civilian environment for supporting applications such as emergency preparedness management and traffic efficiency in congested transportation systems.
机译:在本文中,我们调查异构移动临时网络(MANET)和传感器网络中的生存性和效率的问题,作为使用混合阵列和传感器网络实现通信的组合网络,称为SMANET以支持关键任务应用程序。使用群集管理的Smanet,来自同一地理区域内部署的不同组织的不同功能和节点的异构节点将支持各种多服务任务关键应用程序,同时增加网络生命周期。在该网络中,来自不同组织的节点彼此协作,用于使用多跳无线电传感器 - 无线电类型路径路径路径传送的任务关键数据,同时保持由战场命令控制结构透明的战术操作。在保持协作遭遇的同时,在最低可能的水平下保持跨组织数据传输以实现每个组织内的流量的最低级别,并且出于安全原因。假设所有节点都配备有认知无线电能力,维持互操作性,我们提出了一种新的路由度量,可以最大化来自异构节点的协作并考虑组织限制的益处。此外,我们提出了认知无线电和多载波调制的联合设计,以最大化Smanet中的带宽利用率和能量效率。仿真结果表明,该方法在战场环境中提供了许多所需的生存能力和效率,同时将交叉组织数据传输保持在最低可能水平的同时,与均匀的船长或传感器网络相比增加了增强。相同的网络设计还可以在平民环境中找到用于支持拥挤运输系统中的应急准备管理和交通效率等应用。

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