激光光条水下结构检测

Chau-Chang Wang, S. Shyue, S. Cheng
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引用次数: 15

摘要

随着国际贸易的日益繁荣,商业港口每天需要容纳数百艘船只。当船舶不小心靠泊码头时,可能会对吃水线以下的码头造成一定的损坏而不留下任何痕迹。一般来说,水肺潜水员被派往水下拍摄水下结构的照片或录像带,以便进一步研究损坏情况。我们建议使用激光光条技术来克服混浊水的问题。从几何学中我们知道,直线投射到平面上仍然是直线。另一方面,如果平面上存在任何凹或凸特征,则投影线将相应地变形。因此,我们可以从投影线的变形中提取信息,例如凹面的位置或深度。在我们的研究中,我们将激光束条纹投射到目标上,并使用CCD相机捕获图像。通过图像处理,我们可以提取轮廓的横截面,从而对目标进行整体的三维测量。我们用不同形状的物体浸泡在不同程度的浑浊水中来验证这个想法。初步结果表明,该装置可以在60厘米的距离内检测到NTU 2.5级污水中1厘米的狭窄缝隙,覆盖范围为60厘米宽。
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Underwater structure inspection with laser light stripes
As international trade is getting prosperous, commercial ports need to accommodate hundreds of vessels everyday. When a vessel berths the wharf carelessly, it is possible to cause some damage to the pier beneath the waterline without leaving any evidence. Generally, scuba divers are sent down with camera to take photos or video tapes of the underwater structure for further studies of the damage. We propose using a laser light stripe technique to overcome the problem of turbid water. From geometry we know that a straight line projected to a plane remains a straight line. On the other hand, if there are any concave or convex features on the plane, the projected line will deform accordingly. So we can extract information, such as position or depth of the concavity, from the deformation of the projected line. In our study, we project a laser beam stripe on the target and use a CCD camera to capture the image. With image processing, we can extract the profile of the cross section, thus, the overall 3D measurement of the target. We verify this idea with different shapes of objects submerged in different levels of turbid water in a test tank. Preliminary results indicate that this device can detect narrow gaps of 1 cm in NTU level 2.5 foul water from a distance of 60 cm with coverage of 60 cm wide.
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