Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10409798 | Optics & Laser Technology | 2005 | 6 Pages |
Abstract
This investigation proposes a cost-effective, compact, and robust optoelectronic targeting system for measuring ballistic impact velocity and the distribution of projectile motion. The major elements of this system are four photo-gates hybridized by compound one-dimensional prism array and analog/digital electronic components. The number of light sources and photodetectors used in a photo-gate was reduced to one pair of light source and photodetector. The average velocity and location of the projectile are determined according to the measured time intervals (â¼10-8Â s) passing each pair. The system can accurately measure the velocity of a bullet as it leaves a gun barrel, as well as the velocity at specific points along the trajectory outside the firearm. Additionally, the system uses a widespread low-powered laser pointer as a light source. Compared with other optoelectronic targeting systems that use high-powered lasers, the proposed system is both economical and safe.
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Engineering
Electrical and Electronic Engineering
Authors
C.C. Chang, H.C. Chang, L.C. Tang, W.K. Young, J.C. Wang, K.L. Huang,