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Design and experimental validation of UAV-assisted radiological and nuclear sensing

机译:无人机辅助放射和核传感的设计和实验验证

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For the detection of radiological and nuclear material a wide - area deployment of unmanned ground and aerial vehicles acting as an autonomous sensor swarm has been developed and validated by the ANCHORS project. In this paper the software architecture and platform for the control of the heterogeneous robot system as well as the communication system are presented. For a highly-reliable communication the ANCHORS system integrates a flexible ad-hoc wireless communication infrastructure using a combination of a stand-alone LTE system and IEEE 802.11s wireless mesh networking technology. The system was validated in 2015 during a large-scale fire brigade exercise in strong cooperation with potential end-users. Ongoing research addresses the integration of the results gained with systems such as the ANCHORS system in a cloud-based data storage accessible for rescue organizations. The paper introduces therefore the combination of the autonomous distributed sensor swarm with a cloud emergency information system concept currently developed within the EU-Project SecInCoRe (Secure Dynamic Cloud for Information, Communication and Resource Interoperability based on Pan-European Disaster Inventory).
机译:为了探测放射性和核材料,ANCHORS项目已经开发并验证了充当自主传感器群的无人地面和空中飞行器的广泛部署。本文介绍了用于异构机器人系统以及通信系统控制的软件体系结构和平台。对于高度可靠的通信,ANCHORS系统使用独立的LTE系统和IEEE 802.11s无线网状网络技术的组合,集成了灵活的自组织无线通信基础架构。该系统于2015年在与潜在最终用户的大力合作下进行的大规模消防演习中得到验证。正在进行的研究涉及将诸如ANCHORS系统之类的系统获得的结果整合到救援组织可访问的基于云的数据存储中。因此,本文介绍了自主分布式传感器群与当前在欧盟项目SecInCoRe(基于泛欧灾害清单的信息,通信和资源互操作性的安全动态云)中开发的云应急信息系统概念的组合。

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