首页> 外文会议>Modeling, Signal Processing, and Control >A Dynamic Model for Generating Actuator Specifications for Small Arms Barrel Active Stabilization
【24h】

A Dynamic Model for Generating Actuator Specifications for Small Arms Barrel Active Stabilization

机译:用于生成小臂桶主动稳定器执行器规格的动态模型

获取原文
获取原文并翻译 | 示例

摘要

Due to stresses encountered in combat, it is known that soldier marksmanship noticeably decreases regardless of prior training. Active stabilization systems in small arms have potential to address this problem to increase soldier survivability and mission effectiveness. The key to success is proper actuator design, but this is highly dependent on proper specification which is challenging due to the human/weapon interaction. This paper presents a generic analytical dynamic model which is capable of defining the necessary actuation specifications for a wide range of small arms platforms. The model is unique because it captures the human interface - shoulder and arm - that introduces the jitter disturbance in addition to the geometry, inertial properties and active stabilization stiffness of the small arms platform. Because no data to date is available for actual shooter-induced disturbance in field conditions, a method is given using the model to back-solve from measured shooting range variability data the disturbance amplitude information relative to the input source (arm or shoulder). As examples of the applicability of the model to various small arms systems, two different weapon systems were investigated: the M24 sniper weapon and the M16 assault rifle. In both cases, model based simulations provided valuable insight into impact on the actuation specifications (force, displacement, phase, frequency) due to the interplay of the human-weapon-active stabilization interface including the effect of shooter-disturbance frequency, disturbance location (shoulder vs. arm), and system parameters (stiffness, barrel rotation).
机译:由于在战斗中遇到压力,众所周知,与以前的训练无关,士兵的枪法显着降低。小型武器中的主动稳定系统有可能解决这个问题,以提高士兵的生存能力和任务效率。成功的关键是适当的执行器设计,但这在很大程度上取决于适当的规格,由于人与武器的相互作用,这具有挑战性。本文提出了一种通用的分析动力学模型,该模型能够为各种小型武器平台定义必要的驱动规范。该模型是独特的,因为它捕获了人的界面-肩膀和手臂-除了小臂平台的几何形状,惯性和主动稳定刚度之外,还引入了抖动干扰。由于迄今尚无数据可用于野外条件下实际的射手诱发的干扰,因此提供了一种使用该模型从测得的射击范围变异性数据中反求解相对于输入源(手臂或肩膀)的干扰幅度信息的方法。作为该模型对各种小型武器系统适用性的示例,研究了两种不同的武器系统:M24狙击武器和M16突击步枪。在这两种情况下,基于模型的模拟都可提供对操纵规范(力,位移,相位,频率)的影响的宝贵见解,这是由于人机主动稳定界面的相互作用所致,包括射手扰动频率,干扰位置(肩膀与手臂的距离),以及系统参数(刚度,镜筒旋转度)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号