基于虚拟化的交战控制可重构集成测试与仿真平台

Kilseok Cho, Ohkyun Jeong, Moonhyung Yoon
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摘要

在过去的几十年里,建模和仿真(M&S)技术已经被广泛用于解决时间、空间、安全和成本等限制,当我们实现与真实战争环境相同的开发和测试环境来开发、测试和评估武器系统时。用于开发和测试评估的集成和测试环境需要提供实时虚拟构建(LVC)仿真环境,以进行需求分析、设计、集成、测试和验证。此外,它们还需要提供能够根据测试配置更改轻松地重新配置计算资源和软件组件的计算环境,并在特定的硬件和软件环境上独立运行遗留软件组件。本文提出了一种基于裸金属虚拟化机制的交战控制集成测试与仿真(ITSEC)平台,以满足上述测试与仿真需求,并在某防空导弹防御系统中进行了应用与实现。在防空和导弹防御环境下进行的交战仿真实验结果表明,该平台是一种经济可行的解决方案,可以根据各种集成和测试环境对应用软件和计算资源进行重新配置和扩展。
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A Reconfigurable Integration Test and Simulation Bed for Engagement Control Using Virtualization
Modeling and Simulation(M&S) technology has been widely used to solve constraints such as time, space, safety, and cost when we implement the same development and test environments as real warfare environments to develop, test, and evaluate weapon systems for the last several decades. The integration and test environments employed for development and test & evaluation are required to provide Live Virtual Construction(LVC) simulation environments for carrying out requirement analysis, design, integration, test and verification. Additionally, they are needed to provide computing environments which are possible to reconfigure computing resources and software components easily according to test configuration changes, and to run legacy software components independently on specific hardware and software environments. In this paper, an Integration Test and Simulation for Engagement Control(ITSEC) bed using a bare-metal virtualization mechanism is proposed to meet the above test and simulation requirements, and it is applied and implemented for an air missile defense system. The engagement simulation experiment results conducted on air and missile defense environments demonstrate that the proposed bed is a sufficiently cost-effective and feasible solution to reconfigure and expand application software and computing resources in accordance with various integration and test environments.
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