Regularities of Formation, Taking Into Account the Sizes of the Object, of Spatial-Energy Profile of the Signal Recorded by Active-Pulse Vision Systems

IF 0.8 4区 化学 Q4 SPECTROSCOPY
B. F. Kuntsevich, I. N. Puchkouski, S. S. Shavel, S. B. Bushuk
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Abstract

Regularities of formation of the spatial-energy profile (SEP) of the visibility zone (VZ) of active-pulse vision systems (APVS) have been numerically studied, taking into account the ratio of the cross sections of the observation object Aob and the laser illumination beam Alas in the plane of the object location. For this, the concepts of the boundary distance Sbd, at which Aob = Alas and the multiplier w = Aob/Alas, which is added to the well-known equation for the recorded APVS signal, are introduced. Taking into account the finite length of the VZ, the following cases can be distinguished. If SbdSend (end point of the VZ) within the VZ w =1. Previously known studies were performed for this case. When Sstart (starting point of the VZ) ≤ Sbd < Send within the VZ, there may first be a range of distances with a maximum value w1 = 1, after which there is a range with a factor decreasing to a certain minimum value w2 < 1. Finally, when Sbd < Sstart within the limits of the VZ, w1(Sdel1) < 1 and w2(Sdel2) < 1 (in this case, w2 is always less than w1, and the delay distance Sdel1 < Sdel2). Taking into account the multiplier w < 1 leads, in the corresponding range, to a change in the shape of the SEP, maximum signal values, and other characteristics implemented within the visibility zone. A generalizing parameter that in practice characterizes the infl uence of the range of distances, where w < 1, is the maximum operating range (MOR) of the system SMOR. For the parameters used in the calculations, taking into account the indicated influence led to a decrease in the SMOR by 2.9–5.0 times. The main mechanisms for the influence of the relative position of Sbd and the VZ on the characteristics of MOR are given. The main results of numerical modeling are confirmed experimentally.

考虑到物体的大小,主动脉冲视觉系统记录的信号空间能量曲线的形成规律
考虑到观察物体 Aob 和激光光束 Alas 在物体位置平面上的横截面之比,对主动脉冲视觉系统(APVS)能见度区域(VZ)空间能量剖面(SEP)的形成规律进行了数值研究。为此,引入了 Aob = Alas 时的边界距离 Sbd 和乘数 w = Aob/Alas(添加到所记录的 APVS 信号的著名方程中)的概念。考虑到 VZ 的有限长度,可以区分以下几种情况。如果 Sbd≥ Send(VZ 的终点),在 VZ 内 w =1。之前已知的研究就是针对这种情况进行的。当 Sstart(VZ 的起点)≤ VZ 内的 Sbd < Send 时,可能首先出现一个最大值 w1 = 1 的距离范围,然后出现一个因数递减到某个最小值 w2 < 1 的距离范围。最后,当 Sbd < Sstart 在 VZ 的范围内时,w1(Sdel1) < 1 和 w2(Sdel2) < 1(在这种情况下,w2 总是小于 w1,延迟距离 Sdel1 < Sdel2)。在相应范围内,考虑乘数 w < 1 会导致 SEP 的形状、最大信号值以及可见度区域内的其他特征发生变化。在实践中,w < 1 是 SMOR 系统的最大工作范围(MOR),它是描述距离范围影响的一个通用参数。就计算中使用的参数而言,考虑到上述影响,SMOR 会降低 2.9-5.0 倍。给出了 Sbd 和 VZ 的相对位置对 MOR 特性的主要影响机制。实验证实了数值模拟的主要结果。
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来源期刊
CiteScore
1.30
自引率
14.30%
发文量
145
审稿时长
2.5 months
期刊介绍: Journal of Applied Spectroscopy reports on many key applications of spectroscopy in chemistry, physics, metallurgy, and biology. An increasing number of papers focus on the theory of lasers, as well as the tremendous potential for the practical applications of lasers in numerous fields and industries.
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