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An SDN architecture for under water search and surveillance

机译:用于水上搜索和监视的SDN架构

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Underwater Wireless Networking (UWN) schemes and applications have been attracting considerable interest with both industry and the research community. The nature of water, as a carrier medium, imposes very significant constraints on the both the characteristics and information carrying capacity of underwater communication channels. Currently, acoustic and optical are the two main physical platform/channel choices. Acoustics offers relative simplicity but low data rates. Optical has a considerable bandwidth advantage, but is much more complex to implement, exploit and manage. Leveraging both technologies enables exploitation of their complementarities and synergies. A Software Defined Networking architecture, which separates the control and data planes, enables full exploitation of this acousto-optic combination. In this configuration, the longer-ranged acoustic channel serves as the control plane, allowing the controller to issue mobility and network related commands to distant AUVs, whilst the shorter range (but higher throughput) optical channel serves as the data plane, thereby allowing for fast transfer of data. This paper presents such a system, employing the NATO approved JANUS underwater communications standard for the control channel.
机译:水下无线网络(UWN)方案和应用程序对行业和研究界具有相当大的兴趣。水的性质作为载体介质,对水下通信信道的特性和信息承载能力施加了非常重要的限制。目前,声学和光学是两个主要物理平台/频道选择。声学提供了相对简单但低数据速率。光学具有相当大的带宽优势,但实现,利用和管理更复杂。利用两种技术都可以利用它们的互补性和协同作用。将控制和数据平面分开的软件定义的网络架构能够充分利用这种声光组合。在该配置中,较长范围的声学信道用作控制平面,允许控制器向远程AUV发出移动性和网络相关的命令,而较短的范围(但较高的吞吐量)光通道用作数据平面,从而允许快速转移数据。本文介绍了这样一个系统,聘请了北约批准的控制渠道的Janus水下通信标准。

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