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利用以数据为中心的通信实现多任务互操作的无人机系统。

Enabling Multi-Mission Interoperable UAS Using Data-Centric Communications.

机构信息

Telematic Engineering Department, Universidad Carlos III de Madrid, 28911 Madrid, Spain.

Department of Computer Science and Engineering, University of Bologna, 40136 Bologna, Italy.

出版信息

Sensors (Basel). 2018 Oct 12;18(10):3421. doi: 10.3390/s18103421.

Abstract

We claim the strong potential of data-centric communications in Unmanned Aircraft Systems (UAS), as a suitable paradigm to enhance collaborative operations via efficient information sharing, as well as to build systems supporting flexible mission objectives. In particular, this paper analyzes the primary contributions to data dissemination in UAS that can be given by the Data Distribution Service (DDS) open standard, as a solid and industry-mature data-centric technology. Our study is not restricted to traditional UAS where a set of Unmanned Aerial Vehicles (UAVs) transmit data to the ground station that controls them. Instead, we contemplate flexible UAS deployments with multiple UAV units of different sizes and capacities, which are interconnected to form an aerial communication network, enabling the provision of value-added services over a delimited geographical area. In addition, the paper outlines an approach to address the issues inherent to the utilization of network-level multicast, a baseline technology in DDS, in the considered UAS deployments. We complete our analysis with a practical experience aiming at validating the feasibility and the advantages of using DDS in a multi-UAV deployment scenario. For this purpose, we use a UAS testbed built up by heterogeneous hardware equipment, including a number of interconnected micro aerial vehicles, carrying single board computers as payload, as well as real equipment from a tactical UAS from the Spanish Ministry of Defense.

摘要

我们声称数据中心通信在无人机系统 (UAS) 中有很大的潜力,可以通过有效的信息共享增强协作操作,并构建支持灵活任务目标的系统。特别是,本文分析了数据分发服务 (DDS) 开放标准在 UAS 数据传播中可以做出的主要贡献,这是一种可靠且成熟的以数据为中心的技术。我们的研究不仅限于传统的 UAS,其中一组无人机向控制它们的地面站传输数据。相反,我们考虑了具有不同大小和容量的多个无人机单元的灵活 UAS 部署,这些单元相互连接形成一个空中通信网络,能够在限定的地理区域内提供增值服务。此外,本文概述了一种方法来解决在考虑中的 UAS 部署中使用网络级组播(DDS 中的基线技术)所固有的问题。我们通过一个旨在验证在多无人机部署场景中使用 DDS 的可行性和优势的实际经验来完成我们的分析。为此,我们使用了由异构硬件设备构建的 UAS 测试平台,包括一些互联的微型无人机,携带单板计算机作为有效载荷,以及来自西班牙国防部的战术 UAS 的实际设备。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d38/6210890/73b09392967d/sensors-18-03421-g002.jpg

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