首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >THE SWARMS APPROACH TO INTEGRATION OF UNDERWATER AND OVERWATER COMMUNICATION SUB-NETWORKS AND INTEGRATION OF HETEROGENEOUS UNDERWATER COMMUNICATION SYSTEMS
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THE SWARMS APPROACH TO INTEGRATION OF UNDERWATER AND OVERWATER COMMUNICATION SUB-NETWORKS AND INTEGRATION OF HETEROGENEOUS UNDERWATER COMMUNICATION SYSTEMS

机译:整合水下和水上通信子网以及整合异构水下通信系统的群体方法

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The management of a heterogeneous mix of underwater vehicles needs a robust and reliable communication network, able to connect the remote command and control station (typically ashore or on board of a support ship) with nodes and vehicles in the deep sea. On the basis of this scenario, the infrastructure shall satisfy requirements such as: medium to extremely long distances between the control room and the area of operation; management of a variable number and type of nodes and vehicles (mobile, fixed, underwater, surfaced); a guaranteed bandwidth to send commands and receive platform status and tasks execution information with minimum latency; a high bitrate to transfer sensor data, pictures and videos in "near real time"; etc. Compared to the available solutions used nowadays for radio communication systems, the underwater environment imposes several constraints on the maximum achievable bandwidth and distance, drastically reducing data transfer rates. This means that the full communication network is a trade-off between different requirements and performances. The SWARMs project approach to this problem is to select, combine and integrate different and heterogeneous communication technologies, components and solutions, in order to obtain the best performances for the management and control of underwater vehicles during the execution of different missions and tasks. The network is mainly based on commercial components, but specific adaptations were made in order to fulfil the requirements of ad hoc underwater and overwater sub networks in maritime specific scenarios. Several experiments and sea trials have allowed the verification of the performance of the full network and the optimization of its configuration according to the mission needs.
机译:水下车辆的各种混合体的管理需要强大而可靠的通信网络,能够将远程指挥和控制站(通常在岸上或在支援舰上)与深海中的节点和车辆连接起来。在这种情况下,基础结构应满足以下要求:控制室与操作区域之间的距离为中等到极长;管理可变数量和类型的节点和车辆(移动,固定,水下,浮出水面);有保证的带宽,以最小的延迟发送命令并接收平台状态和任务执行信息;高比特率,可以“近实时”传输传感器数据,图片和视频;与当今用于无线电通信系统的可用解决方案相比,水下环境对最大可达到的带宽和距离施加了一些限制,从而大大降低了数据传输速率。这意味着完整的通信网络需要在不同的需求和性能之间进行权衡。 SWARMs解决此问题的方法是选择,组合和集成不同的异构通信技术,组件和解决方案,以便在执行不同任务和任务期间获得最佳性能,以管理和控制水下航行器。该网络主要基于商业组件,但是为了满足特定于海事场景的特设水下和水上子网络的要求,进行了特殊的修改。多项实验和海上试验已允许验证整个网络的性能,并根据任务需要优化其配置。

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