Effects of datalink target data on air-to-air missile performance

John Öström, Timo Sailaranta, Kai Virtanen
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Abstract

Modern air-to-air missiles rely on data updated via a datalink about the position and velocity of a target until their own seeker can lock on to the target. The quality of the datalink target data depends on the errors of position and velocity updates, delay of these updates and lost updates. This paper introduces a simulation framework for analyzing the utilization of this data. The framework consists of models describing the target, the missile, and the generation of the datalink target updates. The versatile simulation experiments presented in the paper analyze the effects of the quality of the datalink data on the performance of different air-to-air missiles. The measure of performance is the probability of kill. The results of the simulations imply that the quality of the final updates before attempting the transition to using the missile’s seeker have the largest effect on the performance. Unless a large percentage of the target updates are lost or the seeker’s lock on to the target is delayed, the missile can typically get within a lethal miss distance of the target. The framework presented in this paper is suitable for evaluating the performance of all types of guided weapons.
数据链目标数据对空空导弹性能的影响
现代空对空导弹依赖于通过数据链更新有关目标位置和速度的数据,直到它们自己的导引头能够锁定目标。数据链目标数据的质量取决于位置和速度更新的误差、这些更新的延迟和丢失的更新。本文介绍了一个仿真框架来分析这些数据的利用。该框架由描述目标、导弹和数据链目标更新生成的模型组成。通过多用途仿真实验,分析了数据链数据质量对不同空空导弹性能的影响。表现的衡量标准是击杀的概率。仿真结果表明,在过渡到使用导弹导引头之前的最后更新质量对性能影响最大。除非很大比例的目标更新丢失或导引头锁定目标被延迟,导弹通常可以进入目标的致命脱靶距离内。本文提出的框架适用于各种类型制导武器的性能评估。
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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