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Measurement of the velocity vector of a flying projectile with infrared light screens

机译:红外光屏幕飞行射弹的速度矢量测量

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A conventional velocity measuring system of flying projectile consists of two light screens and a chronometer. The flying trajectory is vertical to the sensing plane of light screens. Otherwise the system might produce more measurement errors. In the terminal of trajectory, it is very difficult to ensure that the trajectory of the flying projectile is vertical to the sensing plane because of the scattering of the projectiles. Especially, there is a quite big angle between the flying trajectory and the sensing plane in measuring the velocity of terminal of the fragments. More errors may occur if using two light screens to measure velocity. The new method for measuring velocity at any direction with six infrared light screens is presented. The six infrared light screens are composed of light screen arrays in some special geometric structure. The chronometer records the times of the projectile going through each screen. The flying velocity and special angle of the projectile, that is flying velocity vector, can be calculated according to six times and the geometric structure parameters.
机译:飞行射弹的传统速度测量系统由两个光屏和计时器组成。飞行轨迹垂直于光屏的传感平面。否则系统可能会产生更多的测量错误。在轨迹的终端中,由于射弹的散射,非常困难地确保飞行射弹的轨迹是垂直于传感平面的。特别地,在测量片段的端子速度时,飞行轨迹和传感平面之间存在相当大的角度。如果使用两个光屏幕测量速度,可能会发生更多错误。提出了一种用六个红外光屏幕测量速度的新方法。六个红外光屏幕由某些特殊几何结构中的光屏阵列组成。该计时器记录每个屏幕的弹丸的时间。可以根据六次和几何结​​构参数计算射弹的飞行速度和特殊角度,即飞行速度向量。

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