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Towards an Open, Distributed Software Architecture for UxS Operations: 'It's difficult to work in groups when you're omnipotent,' - Q Star Trek: The Next Generation:: Deja Q (1990)

机译:对于UXS操作的开放,分布式软件架构:“当您无所不能的时候,很难在群组中工作,” - Q Star Trek:下一代:: deja Q(1990)

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To address the growing need to evaluate, test, and certify an ever expanding ecosystem of UxS platforms in preparation of cultural integration, NASA Langley Research Center's Autonomy Incubator (AI) has taken on the challenge of developing a software framework in which UxS platforms developed by third parties can be integrated into a single system which provides evaluation and testing, mission planning and operation, and out-of-the-box autonomy and data fusion capabilities. This software framework, named AEON (Autonomous Entity Operations Network), has two main goals. The first goal is the development of a cross-platform, extensible, onboard software system that provides autonomy at the mission execution and course-planning level, a highly configurable data fusion framework sensitive to the platform's available sensor hardware, and plug-and-play compatibility with a wide array of computer systems, sensors, software, and controls hardware. The second goal is the development of a ground control system that acts as a test-bed for integration of the proposed heterogeneous fleet, and allows for complex mission planning, tracking, and debugging capabilities. The ground control system should also be highly extensible and allow plug-and-play interoperability with third party software systems. In order to achieve these goals, this paper proposes an open, distributed software architecture which utilizes at its core the Data Distribution Service (DDS) standards, established by the Object Management Group (OMG), for inter-process communication and data flow. The design decisions proposed herein leverage the advantages of existing robotics software architectures and the DDS standards to develop software that is scalable, high-performance, fault tolerant, modular, and readily interoperable with external platforms and software.
机译:为了解决越来越需要评估,测试和认证在编写文化整合方面,NASA Langley研究中心的自治孵化器(AI)挑战在开发UXS平台开发的软件框架的挑战中第三方可以集成到一个系统中,提供评估和测试,任务规划和操作以及开箱即用的自主和数据融合功能。这个名为AEON(自主实体运营网络)的软件框架有两个主要目标。第一个目标是开发一个跨平台,可扩展,板载软件系统,可在任务执行和课程规划级别提供自主权,这是一个高度可配置的数据融合框架对平台可用的传感器硬件敏感,以及即插即用兼容各种计算机系统,传感器,软件和控制硬件。第二个目标是开发一个地面控制系统,它用作测试床,用于集成所提出的异构船队,并允许复杂的任务规划,跟踪和调试功能。地面控制系统还应高度可扩展,并允许与第三方软件系统的即插即用互操作性。为了实现这些目标,本文提出了一个开放的分布式软件架构,它在其核心的数据分发服务(DDS)标准中,由对象管理组(OMG)建立,用于进程间通信和数据流。本文提出的设计决策利用现有机器人软件架构和DDS标准的优势开发出可扩展,高性能,容错,模块化和随机互操作的软件与外部平台和软件。

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