Hybrid systems: models, simulation, and testing [military]

N. Coleman, S. Banks, J. James, A. Nerode, W. Kohn
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引用次数: 2

Abstract

Realization of the vision of a synthetic theater of war (STOW) fully depends on the creation of interoperable simulators, simulations, and fielded systems that realistically represent warfighting concepts, doctrine, forces and weapon systems of friendly, neutral and opposing forces. Distributed interactive simulations (DIS) cannot be relied upon to create the STOW because of problems with synchronization, interoperability and scalability. We provide preliminary ideas concerning how a detailed model being develop as part of the Automation and Robotics program of the US Army Armaments Research, Development and Engineering Center can be applied to address current problems in DIS by providing a timely approach to simulation implementation. Such an approach can be used to provide standard design guidance for linking models into seamless simulation exercises. Existing models can be incorporated by creating the appropriate simulation agents, thereby providing backward compatibility. We will provide an overview of the architecture being developed and details concerning how such low-level, detailed models can be integrated into distributed, agent-based architectures to support early development of flexible test products. Such test products can be made to mature with the engineering design to provide a more realistic set of test products for verification, validation and accreditation of new systems.<>
混合系统:模型、仿真和测试[军事]
综合战区(STOW)愿景的实现完全依赖于可互操作的模拟器、仿真和战场系统的创建,这些系统能够真实地代表友军、中立国和敌对部队的作战概念、理论、部队和武器系统。由于同步、互操作性和可伸缩性方面的问题,不能依赖分布式交互模拟(DIS)来创建STOW。作为美国陆军军备研究、开发和工程中心自动化和机器人项目的一部分,我们提供了关于如何通过提供及时的仿真实施方法来应用于解决DIS当前问题的详细模型的初步想法。这种方法可用于为将模型链接到无缝仿真练习中提供标准设计指导。可以通过创建适当的模拟代理来合并现有模型,从而提供向后兼容性。我们将提供正在开发的体系结构的概述,以及有关如何将这种低级的、详细的模型集成到分布式的、基于代理的体系结构中以支持灵活测试产品的早期开发的详细信息。这样的测试产品可以随着工程设计的成熟而成熟,为新系统的验证、确认和认可提供一套更现实的测试产品
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