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Context-aware reconfiguration of large-scale surveillance systems: argumentative approach

机译:大型监视系统的上下文感知重新配置:论证方法

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The Metis research project aims at supporting maritime safety and security by facilitating continuous monitoring of vessels in national coastal waters and prevention of phenomena, such as vessel collisions, environmental hazard, or detection of malicious intents, such as smuggling. Surveillance systems such as Metis typically comprise a number of heterogeneous information sources and information aggregators. Among the main problems of their deployment lies their scalability with respect to a potentially large number of monitored entities. One of the solutions to the problem is continuous and timely adaptation and reconfiguration of the system according to the changing environment it operates in. At any given timepoint, the system should use only a minimal set of information sources and aggregators needed to facilitate effective and early detection of indicators of interest. Here, we describe the Metis system prototype and introduce a theoretical framework for modelling scalable information-aggregation systems. We model information-aggregation systems as networks of inter-dependent reasoning agents, each representing a mechanism for justification/refutation of a conclusion derived by the agent. The proposed continuous reconfiguration algorithm relies on standard results from abstract argumentation and corresponds to computation of a grounded extension of the argumentation framework associated with the system. Finally, we demonstrate the flexibility of the presented framework by extending the proposed algorithm to adapt to context-dependent changes in information sources availability, as well as shifts in system's focus according to its context.
机译:Metis研究项目旨在通过促进对国家沿海水域船只的持续监控和预防现象(例如船只碰撞,环境危害或发现恶意意图,例如走私)来支持海上安全。诸如Metis的监视系统通常包含许多异构信息源和信息聚合器。它们部署的主要问题之一是它们相对于大量受监视实体的可伸缩性。解决该问题的方法之一是根据运行中的不断变化的环境对系统进行连续,及时的适应和重新配置。在任何给定的时间点,系统都应仅使用最少的信息源和集合器,以促进有效和早期的发展。检测感兴趣的指标。在这里,我们描述了Metis系统原型,并介绍了用于建模可伸缩信息聚合系统的理论框架。我们将信息汇总系统建模为相互依赖的推理代理的网络,每个代表代理对代理得出的结论进行论证/反驳的机制。所提出的连续重配置算法依赖于抽象论证的标准结果,并对应于与系统关联的论证框架的基础扩展的计算。最后,我们通过扩展提出的算法以适应信息源可用性的上下文相关更改以及根据系统上下文改变系统焦点的方式,展示了所提出框架的灵活性。

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