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Firing Accuracy Evaluation of Electromagnetic Railgun Based on Multicriteria Optimal Latin Hypercube Design

机译:基于多准则最优拉丁超立方体设计的电磁炮的射击精度评估

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摘要

Electromagnetic railgun (EMRG) is a promising candidate weapon system for the future surface-fire support mission characterized by quick response, hypersonic velocity, and high damage efficiency. Since the huge power consumption during launching, priority should be given to the precise strike. Firing accuracy of EMRG, which refers to the closeness degree of the projectiles’ impact points to the target, is an important performance metric in the EMRG exterior ballistic performance assessment. To provide a systematic solution for the measure of firing accuracy, the assessment factors are formulated in detail. Then, a general framework, including trajectory simulation, data preprocessing, parameters estimation, and hit probability calculation, is proposed to evaluate EMRG firing accuracy. Considering the trajectory simulation experiments may be time consuming, a new multicriteria optimal Latin hypercube design method is presented to maintain the balance between experiment time and sampling performance. Finally, firing accuracy assessment of 16-kg projectiles is performed using the designed framework and proposed experimental design method. The result reveals that the circular error probability is about 5 km under current defined scenarios, which means the initial disturbances may have great impact on the firing accuracy of projectiles without guidance and control units.
机译:电磁轨道炮(EMRG)是具有前景的候选武器系统,具有快速反应,高超音速和高伤害效率的特点,可用于未来的地面火力支援任务。由于发射期间耗电量巨大,因此应优先考虑精确打击。 EMRG的射击精度是指弹丸撞击点与目标的接近程度,是EMRG外部弹道性能评估中的一项重要性能指标。为了提供一种测量点火精度的系统解决方案,详细制定了​​评估因素。然后,提出了一种通用框架,包括弹道仿真,数据预处理,参数估计和命中概率计算,以评估EMRG的射击精度。考虑到轨迹模拟实验可能很耗时,因此提出了一种新的多准则最优拉丁超立方体设计方法,以保持实验时间与采样性能之间的平衡。最后,使用设计框架和拟议的实验设计方法对16千克弹丸进行射击精度评估。结果表明,在当前定义的情况下,圆形误差的概率约为5 km,这意味着初始扰动可能会对没有制导和控制单元的弹丸的射击精度产生重大影响。

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