A System of Systems solution for perimeter control: Combining Unmanned Aerial System with unattended ground sensor network

J. Kaugerand, J. Preden, E. Suurjaak, S. Astapov, L. Motus, R. Pahtma
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引用次数: 6

Abstract

The paper describes a novel and practical System of Systems (SoS) approach for perimeter control in ISR (Intelligence, Surveillance and Reconnaissance) applications. The SoS combines an Unmanned autonomous Aerial System (UAS) with an Unattended Ground Sensor (UGS) SoS in order to provide enhanced situation awareness to the users. A simple mini Unmanned Aerial Vehicle (UAV) with an autopilot capable of waypoint navigation is equipped with additional hardware to become a UAS and is integrated with an existing UGS network, forming a System of Systems of heterogeneous systems. The systems in the resulting SoS are autonomous and they offer the generated information via a subscription based service architecture. The SoS described in the paper offers its detection and identification capabilities as services to external entities. The UGS nodes autonomously detect objects and phenomena of interest (based on information requests received from external entities) and by building up collective situation awareness they are able to classify the detected objects, involving the UAS in image acquisition if an object of interest has been classified. The data collected by the SoS is combined and delivered to the external entity that made the information request. The paper describes the creation of the UAS, its integration with an existing SoS and the evaluation of the performance of the resulting SoS.
周界控制的系统解决方案:结合无人机系统和无人值守的地面传感器网络
本文描述了一种新颖实用的ISR(情报、监视和侦察)应用中周界控制的系统的系统(SoS)方法。SoS结合了无人自主空中系统(UAS)和无人值守地面传感器(UGS) SoS,以便为用户提供增强的态势感知。一种简单的小型无人机(UAV),具有能够航路点导航的自动驾驶仪,配备额外的硬件成为一种无人机,并与现有的UGS网络集成,形成一个异构系统的系统系统。结果so中的系统是自治的,它们通过基于订阅的服务体系结构提供生成的信息。本文中描述的SoS将其检测和识别功能作为服务提供给外部实体。UGS节点自主检测感兴趣的物体和现象(基于从外部实体收到的信息请求),并通过建立集体态势感知,它们能够对检测到的物体进行分类,如果感兴趣的物体已被分类,则涉及UAS进行图像采集。SoS收集的数据被合并并交付给发出信息请求的外部实体。本文描述了UAS的创建,它与现有SoS的集成以及由此产生的SoS的性能评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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