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A Methodology for Short Basis Velocity Measurement in Moving Objects

机译:运动物体短基速度测量的一种方法

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The velocity of various objects is currently measured within a large number of disciplines and activities. This paper presents velocity measurement in single-shot nonlinear processes, which occur only once and are thus characterized by zero repeatability. The measurement methods must therefore enable the recording, saving, and retroactive evaluation of the processes at a pre-defined accuracy; all these operations are performed to facilitate comparison of the recorded event and other similar processes. The methods commonly applied in the measurement of object velocity are based on optical and electromagnetic effects. In this context, the main disadvantage of optoelectronic methods consists in that the detector cannot be placed immediately behind the plasma source (or, generally, objects other than the projectile). Further problematic aspects can be identified in the emitted raw powder particles, muzzle flash, and shock wave, namely spurious effects leaving a track where the information from the launched projectile could be lost. However, the electromagnetic method described in the paper does not possess the disadvantages of the optical methods. We therefore present a design of an induction sensor fitted with an electronic signal processing system; this design is based on numerical evaluation of the relativistic effect occurring in the application of the electromagnetic principle of position sensing/object velocity. The final part of the paper contains a discussion of the measured results.
机译:当前,在许多学科和活动中测量各种物体的速度。本文介绍了单次非线性过程中的速度测量,该过程仅发生一次,因此具有零可重复性。因此,测量方法必须能够以预定的精度记录,保存和追溯评估过程;执行所有这些操作是为了便于比较记录的事件和其他类似过程。通常用于物体速度测量的方法是基于光学和电磁效应。在这种情况下,光电方法的主要缺点在于不能将检测器直接放置在等离子源(或通常不是弹丸的物体)的后面。可以在发出的原始粉末颗粒,枪口闪光和冲击波中识别出其他有问题的方面,即杂散效应,留下了一条轨迹,在此轨迹中,发射的弹丸信息可能会丢失。然而,本文描述的电磁方法不具有光学方法的缺点。因此,我们提出了一种装有电子信号处理系统的感应传感器的设计。该设计基于对位置感应/物体速度的电磁原理应用中发生的相对论效应的数值评估。本文的最后一部分包含对测量结果的讨论。

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