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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Cantilever Beam Design for Projectile Internal Moving Mass Systems
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Cantilever Beam Design for Projectile Internal Moving Mass Systems

机译:弹丸内部运动质量系统的悬臂梁设计

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摘要

Internal masses that undergo controlled translation within a projectile have been shown to be effective control mechanisms for smart weapons. However, internal mass oscillation must occur at the projectile roll frequency to generate sufficient control force. This can lead to high power requirements and place a heavy burden on designers attempting to allocate volume within the projectile for internal mass actuators and power supplies. The work reported here outlines a conceptual design for an internal translating mass system using a cantilever beam and electromagnetic actuators. The cantilever beam acts as the moving mass, vibrating at the projectile roll frequency to generate control force. First, a dynamic model is developed to describe the system. Then the natural frequency, damping ratio, and length of the beam are varied to study their affects on force required and total battery size. Trade studies also examine the effect on force required and total battery size of a roll-rate feedback system that actively changes beam elastic properties. Results show that, with proper sizing and specifications, the cantilever beam control mechanism requires relatively small batteries and low actuator control forces with minimum actuator complexity and space requirements.
机译:已经证明,在弹丸内进行受控平移的内部质量是智能武器的有效控制机制。但是,内部质量振荡必须在弹丸侧倾频率下发生,以产生足够的控制力。这可能导致高功率需求,并给试图在弹丸内分配内部质量致动器和电源的设计人员带来沉重负担。本文报道的工作概述了使用悬臂梁和电磁执行器的内部平移质量系统的概念设计。悬臂梁作为移动质量,以弹丸侧倾频率振动以产生控制力。首先,开发一个动态模型来描述系统。然后改变固有频率,阻尼比和梁的长度,以研究它们对所需力和总电池尺寸的影响。贸易研究还研究了主动改变梁弹性的侧倾速率反馈系统对所需力和总电池尺寸的影响。结果表明,采用适当的尺寸和规格,悬臂梁控制机构需要相对较小的电池和较低的执行器控制力,同时将执行器的复杂性和空间要求降至最低。

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