论文标题
CAPD:一个安全和弹性的IOBT操作的上下文感知的,政策驱动的框架
CAPD: A Context-Aware, Policy-Driven Framework for Secure and Resilient IoBT Operations
论文作者
论文摘要
战场互联网事物(IOBT)将提高步兵部队的操作效率。但是,这需要自动资产,例如传感器,无人机,战斗设备和未驾驶的车辆,以协作,安全共享信息,并具有反对攻击的有争议的多域操作。 CAPD通过提供背景感知的,政策驱动的框架来解决此问题,该框架支持战争空间中自治实体之间的数据和知识交流。我们提出了一个IOBT本体,该本体促进了受控的信息共享,以实现系统之间的语义互操作性。它的关键贡献包括提供具有共享语义模式的知识图,与背景知识的集成,有效的数据一致性和绘制推断以及支持基于属性的访问控制。 IOBT中的传感器提供了基于本体的填充知识图的数据。本文介绍了使用CAPD检测和减轻对手动作。 CAPD使用感应的数据和SPARQL查询的推理可以实现情境意识。例如,对手会导致传感器故障或劫持并破坏战术网络以降低视频监视。在这种情况下,CAPD使用基于本体的推理者来查看替代方法如何仍然可以支持任务。根据带宽的可用性,推理器通过主动转码或传输仅静止图像来启动降低的帧速率视频的创建。这种在任务感知环境和攻击环境中推理的能力允许自主的IOBT系统在有争议的条件下表现出韧性。
The Internet of Battlefield Things (IoBT) will advance the operational effectiveness of infantry units. However, this requires autonomous assets such as sensors, drones, combat equipment, and uncrewed vehicles to collaborate, securely share information, and be resilient to adversary attacks in contested multi-domain operations. CAPD addresses this problem by providing a context-aware, policy-driven framework supporting data and knowledge exchange among autonomous entities in a battlespace. We propose an IoBT ontology that facilitates controlled information sharing to enable semantic interoperability between systems. Its key contributions include providing a knowledge graph with a shared semantic schema, integration with background knowledge, efficient mechanisms for enforcing data consistency and drawing inferences, and supporting attribute-based access control. The sensors in the IoBT provide data that create populated knowledge graphs based on the ontology. This paper describes using CAPD to detect and mitigate adversary actions. CAPD enables situational awareness using reasoning over the sensed data and SPARQL queries. For example, adversaries can cause sensor failure or hijacking and disrupt the tactical networks to degrade video surveillance. In such instances, CAPD uses an ontology-based reasoner to see how alternative approaches can still support the mission. Depending on bandwidth availability, the reasoner initiates the creation of a reduced frame rate grayscale video by active transcoding or transmits only still images. This ability to reason over the mission sensed environment and attack context permits the autonomous IoBT system to exhibit resilience in contested conditions.