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Scalable sensor management for automated fusion and tactical reconnaissance

机译:可扩展的传感器管理,用于自动融合和战术侦察

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The capabilities of tactical intelligence, surveillance, and reconnaissance (ISR) payloads are expanding from single sensor imagers to integrated systems-of-systems architectures. Increasingly, these systems-of-systems include multiple sensing modalities that can act as force multipliers for the intelligence analyst. Currently, the separate sensing modalities operate largely independent of one another, providing a selection of operating modes but not an integrated intelligence product. We describe here a Sensor Management System (SMS) designed to provide a small, compact processing unit capable of managing multiple collaborative sensor systems on-board an aircraft. Its purpose is to increase sensor cooperation and collaboration to achieve intelligent data collection and exploitation. The SMS architecture is designed to be largely sensor and data agnostic and provide flexible networked access for both data providers and data consumers. It supports pre-planned and ad-hoc missions, with provisions for on-demand tasking and updates from users connected via data links. Management of sensors and user agents takes place over standard network protocols such that any number and combination of sensors and user agents, either on the local network or connected via data link, can register with the SMS at any time during the mission. The SMS provides control over sensor data collection to handle logging and routing of data products to subscribing user agents. It also supports the addition of algorithmic data processing agents for feature/target extraction and provides for subsequent cueing from one sensor to another. The SMS architecture was designed to scale from a small UAV carrying a limited number of payloads to an aircraft carrying a large number of payloads. The SMS system is STANAG 4575 compliant as a removable memory module (RMM) and can act as a vehicle specific module (VSM) to provide STANAG 4586 compliance (level-3 interoperability) to a non-compliant sensor system. The SMS architecture will be described and results from several flight tests and simulations will be shown.
机译:战术情报,监视和侦察(ISR)载荷的功能正从单传感器成像仪扩展到集成的系统体系结构。这些系统系统越来越多地包含多种传感模式,可以充当情报分析师的力量倍增器。当前,单独的感测模式在很大程度上彼此独立地操作,从而提供了一种操作模式的选择,但没有提供集成的智能产品。我们在这里描述一种传感器管理系统(SMS),该系统旨在提供一个小型,紧凑的处理单元,该单元能够管理飞机上的多个协作传感器系统。其目的是加强传感器合作与协作,以实现智能数据的收集和利用。 SMS体系结构被设计为在很大程度上与传感器和数据无关,并为数据提供者和数据使用者提供了灵活的网络访问。它支持预先计划的任务和临时任务,并提供按需任务和通过数据链接连接的用户进行更新的规定。传感器和用户代理的管理通过标准网络协议进行,因此,在任务执行期间,可以在本地网络上或通过数据链接连接的任意数量和组合的传感器和用户代理可以在SMS上进行注册。 SMS提供对传感器数据收集的控制,以处理数据产品的日志记录和路由,以订阅用户代理。它还支持添加用于特征/目标提取的算法数据处理代理,并提供从一个传感器到另一个传感器的后续提示。 SMS体系结构的设计范围可以从携带有限数量有效载荷的小型无人机扩展到携带大量有效载荷的飞机。 SMS系统符合STANAG 4575的要求,可作为可移动存储模块(RMM),并且可以用作车辆专用模块(VSM),以向不符合要求的传感器系统提供符合STANAG 4586的要求(3级互操作性)。将描述SMS架构,并显示几次飞行测试和模拟的结果。

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