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A Simulation System of Systems to Assess Military Aircraft Protection

机译:评估军用飞机保护的系统仿真系统

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A simulation-based System of Systems (SoS), called a Virtual Proving Ground (VPG), is being developed as a comprehensive and robust approach to support aircraft protection engineering and training. For more than 20 years, laboratories and specialized equipment were developed and operated for the evaluation of aircraft self-protection. Most of these systems were originally designed on a standalone basis to answer specific questions. On the other hand, operational requests followed an ad-hoc process that did not allow traceability and knowledge management. As these systems are complementary, their integration came as a logical path to increase the capability. This paper presents an overview of the VPG SoS, including the individual systems, the common architecture framework and the services that are key to a comprehensive approach: collaborative tools and computer-assisted processes. The paper also introduces the SoS inner capability to evolve and discusses the benefits of the approach. The VPG links hardware-in-the-loop (HWIL) systems within a common virtual environment. The simulation includes not only services like time and error management, but also a robust execution engine that allows the execution of a broad variety of digital models. It was designed to facilitate reusability by flexible composition schemes and standardized interfaces. Like building blocks, the SoS allows the substitution of digital models with their HWIL counterparts. The decision to use a digital or hardware component must be based on the requirements for a specific level of fidelity or performance. The SoS extends beyond the sole integration of software and hardware systems. It also includes a set of collaborative tools with associated processes, and implements an overarching verification and validation methodology. The collaborative tools are developed to facilitate the communication and interaction, and bring a cultural change within the operational community. More than just a database or a portal, it unifies the way requests are managed by the stakeholders by clarifying the roles and responsibilities; it centralizes data from databases that were up to now located in different places; and finally, it greatly fosters knowledge management and robust problem solving within the organization.
机译:正在开发出一种被称为虚拟证明地面(VPG)的基于模拟的系统(SOS)系统,作为支持飞机保护工程和培训的全面和强大的方法。 20多年以上,制定了实验室和专业设备,为飞机自我保护的评估开发和运营。大多数这些系统最初是由独立的基础设计的,以回答具体问题。另一方面,操作请求遵循一个不允许可追溯性和知识管理的ad-hoc过程。由于这些系统是互补的,因此它们的集成作为提高能力的逻辑路径。本文概述了VPG SOS,包括各个系统,共同的架构框架和全面方法的关键的服务:协作工具和计算机辅助流程。本文还介绍了SOS内心能力,并讨论了方法的好处。 VPG将循环(HWIL)系统链接在常见的虚拟环境中。该模拟不仅包括像时间和错误管理等服务,而且还包括允许执行广泛的数字模型的强大执行引擎。它旨在通过灵活的组成方案和标准化界面促进可重用性。像构建块一样,SOS允许将数字模型替换为他们的HWIL同行。使用数字或硬件组件的决定必须基于特定级别的保真度或性能的要求。 SOS超出了软件和硬件系统的唯一集成。它还包括一组具有关联进程的协作工具,并实现了总体验证和验证方法。开发了协作工具,以促进沟通和互动,并在运营界内带来文化变革。不仅仅是一个数据库或门户网站,它统一了通过澄清角色和职责的请求的要求;它集中到现在位于不同地方的数据库的数据;最后,它大大促进了组织内的知识管理和强大的问题。

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