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在战斗射击评估中使用小武器稳定性措施。

The use of small-arms stability measures in combat shooting assessments.

机构信息

Sport, Performance, and Nutrition Research Group, School of Allied Health, Human Services and Sport, La Trobe University, Melbourne, Victoria, Australia; Defence Science and Technology Group, Perth, Western Australia, Australia.

Curtin University, Perth, Western Australia, Australia.

出版信息

Appl Ergon. 2025 Jan;122:104385. doi: 10.1016/j.apergo.2024.104385. Epub 2024 Sep 10.

Abstract

The acquisition of weapons at scale requires objective measures to discriminate between products and inform decisions. Testing of weapons commonly occurs on known-distance ranges in static positions at static targets using accuracy and timing as the main variables of interest. However, testing weapons in more representative environments may better show variations in ergonomic-related factors such as centre-of-gravity (CoG) changes. This study aimed to examine the utility of weapon accelerations as a measure of stability, understand how stability changes with repeated shots and the responsiveness to changes in the CoG. Eighteen soldiers shot 60 times under four conditions: an unweighted rifle and the addition of a mass fixed at three different positions. A weapon-mounted accelerometer captured the accelerations of the weapon 200 ms before shot release. Twelve stability measures were calculated and reduced via a principal component analysis. Three of these metrics were then assessed for changes over the shots and between the four conditions. Decreased stability occurred over the 60 shots for all conditions, suggesting increasing fatigue. Stability only differed between one pair of conditions with one metric, implying that stability can be maintained with the different weapon configurations.

摘要

大规模获取武器需要客观的措施来区分产品并做出决策。武器测试通常在已知距离的范围内进行,在静态位置上以静态目标为目标,以精度和时间作为主要关注的变量。然而,在更具代表性的环境中测试武器可能会更好地显示与人体工程学相关的因素(如重心变化)的变化。本研究旨在检验武器加速度作为稳定性衡量标准的实用性,了解稳定性如何随着重复射击而变化以及对重心变化的响应。18 名士兵在四种条件下射击 60 次:未加权的步枪和固定在三个不同位置的质量。武器安装的加速度计在射击释放前 200 毫秒捕获武器的加速度。计算了 12 个稳定性度量,并通过主成分分析进行了简化。然后,对这三个指标在射击过程中的变化和四个条件之间的变化进行了评估。所有条件下,60 次射击的稳定性都有所下降,这表明疲劳程度增加。只有一对条件中的一个指标存在稳定性差异,这意味着不同的武器配置可以保持稳定性。

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