Confidence estimation in the application of simulation in the development of aircraft self-protection measures

C. Willers, J. Roodt
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引用次数: 2

Abstract

This paper describes the application of simulation in the development of aircraft self-protection countermeasures against infrared missiles. The integrated approach followed here consists of repeated cycles of materiel1 characterisation, analysis and modelling, design synthesis, solution implementation and deployment. Results from the activities in this workflow are used to support the estimation of confidence in the simulation tools. The well known Qualification, Verification and Validation (QVV) model is extended by adding the notion of quality of scenario information to the physical characterisation, the conceptual modelling and the computer modelling of system elements. It is shown that a simulation with high confidence requires extensive validation testing. Some measure of confidence can be achieved by ensuring that the conceptual and computer models support extrapolation between fewer validated ‘islands’. To express simulation confidence, a ‘potential field’ is proposed; the value of this potential is determined by the degree to which the QVV requirements are met. The results from an infrared simulation model is used to demonstrate this principle.
置信度估计在飞机自保护措施研制仿真中的应用
本文介绍了仿真技术在飞机自保护对抗红外导弹研制中的应用。这里遵循的综合方法包括材料表征、分析和建模、设计综合、解决方案实施和部署的重复循环。该工作流中活动的结果用于支持仿真工具的置信度估计。众所周知的资格、验证和确认(QVV)模型通过向系统元素的物理特征、概念建模和计算机建模中添加场景信息质量的概念而得到扩展。结果表明,高置信度的仿真需要大量的验证测试。通过确保概念模型和计算机模型支持在较少的经过验证的“岛屿”之间进行外推,可以达到一定程度的置信度。为了表示仿真置信度,提出了“势场”;这个潜力的价值是由满足QVV要求的程度决定的。用红外仿真模型的结果验证了这一原理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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