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Modeling Unmanned Aircraft System conflicts resolution based on a real-time services approach

机译:基于实时服务方法的无人飞机系统冲突解决建模

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Over the last two decades, Unmanned Aircraft Vehicle (UAV) has been employed in many military and civil activities, such as recognition missions, monitoring of data link and natural resources, border control, energy, oil pipelines and public safety. This article tackles the conflicts resolution modeling of Unmanned Aircraft System (UAS) using a real-time services approach. In the previous work the modeling of monitoring and controlling of UAVs collision avoidance was done with the support of Duration Calculus (DC), a knowledge representation language for real-time systems. The drawback of the approach was to take into consideration only knowledge representation aspects, without emphasizing detailed knowledge acquisition aspects. In order to address the mentioned drawback, this work proposes a service-oriented modeling in conjunction with DC for the design of dynamic UAS. The proposed approach was applied in a case study, whose scenario is based on two UAVs monitored and controlled by a ground control station in order to prevent collision. The major contribution of this work is a robust and flexible model that inherits the benefits of both SOA architecture and DC formal modeling, which can be used in UAS/UAV and real-time collaborative systems.
机译:在过去的二十年中,无人飞行器(UAV)被用于许多军事和民用活动,例如识别任务,数据链路和自然资源的监视,边境管制,能源,石油管道和公共安全。本文使用实时服务方法解决了无人飞机系统(UAS)的冲突解决建模问题。在先前的工作中,在持续时间演算(DC)(一种用于实时系统的知识表示语言)的支持下,完成了对无人机避碰监视和控制的建模。该方法的缺点是仅考虑知识表示方面,而没有强调详细的知识获取方面。为了解决上述缺点,这项工作提出了一种与DC结合的面向服务的建模,用于动态UAS的设计。所提出的方法被应用于案例研究中,该案例的场景基于地面控制站监视和控制的两架无人机,以防止碰撞。这项工作的主要贡献是强大而灵活的模型,该模型继承了SOA体系结构和DC形式化建模的优点,可用于UAS / UAV和实时协作系统中。

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