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Experimental design methodology for hardware-in-the-loop missile performance simulations

机译:半实物导弹性能仿真的实验设计方法

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摘要

Hardware-in-the-loop (HWIL) simulation can be a cost effective and validated way to assess the performance of missiles. Current experimental practise for HWIL simulations favours the use of Monte Carlo methods. There are often a significant number of interrelated factors that may affect the outcome of a missile/target engagement. Proper consideration of all factors can lead to a large test matrix with associated large resource demands. There is a need to develop a methodology to reduce the number of simulations required and still achieve a statistically significant result. In this regard, the selection of the sample size or the number of replications required for each experimental condition based on scientific methods is important. This paper discusses ways to establish sample size and confidence levels for the results. The paper also discusses factorial design applied to HWIL simulations; in particular, how factorial design aids the analysis of factor effects and interactions.
机译:硬件在环(HWIL)模拟可以是一种经济高效且经过验证的评估导弹性能的方法。 HWIL模拟的当前实验实践偏爱使用蒙特卡洛方法。通常,有许多相互关联的因素可能会影响导弹/目标交战的结果。适当考虑所有因素会导致形成带有相关大量资源需求的大型测试矩阵。需要开发一种方法,以减少所需的模拟数量并仍然获得具有统计意义的结果。在这方面,基于科学方法选择每种实验条件所需的样本量或重复次数很重要。本文讨论了建立结果的样本量和置信度的方法。本文还讨论了应用于HWIL仿真的析因设计。特别是,析因设计如何帮助分析因子影响和相互作用。

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