Abstract

움직이는 한 개의 카메라 동영상으로부터 개체의 3차원 위치를 추출할 수 있다고 알려져 있다. 이로부터 캠코더 측정시스템을 이용하여 부유체 모형에 대한 영상기반 모니터링을 수행하였다. 규칙파 및 비규칙파 실험조건에서의 디지털 캠코더 동영상으로부터 프레임 영상을 추출하고, 특징점을 정합하여, 상대적인 3차원 좌표를 획득하였다. 수정된 SURF 기반 정합의 영상 변환 정확도와 규칙파에서 부유체 모델의 영상기반 변위 관측 정확도를 평가하였다. 규칙파의 경우 조파기의 설정값은 3.0sec이고, 영상기반 변위에 의한 주기는 2.993sec이었다. 기계적 오차를 고려할 때 이 두 값은 유사한 결과로 여겨진다. 시각적으로도 X Y Z축으로의 1차원 투영결과나 3차원 공간에서의 결과에서 규칙파의 형상을 볼 수 있었다. 결과적으로 30fps의 일반 디지털 캠코더 동영상을 이용하여 근실시간으로 위치변동을 계산할 수 있었다. It is well known that a single moving camera video is capable of extracting the 3-dimensional position of an object. With this in mind, current research performed image-based monitoring to establish a floating structure model using a camcorder system. Following this, the present study extracted frame images from digital camcorder video clips and matched the interest points to obtain relative 3D coordinates for both regular and irregular wave conditions. Then, the researchers evaluated the transformation accuracy of the modified SURF-based matching and image-based displacement estimation of the floating structure model in regular wave condition. For the regular wave condition, the wave generator's setting value was 3.0 sec and the cycle of the image-based displacement result was 2.993 sec. Taking into account mechanical error, these values can be considered as very similar. In terms of visual inspection, the researchers observed the shape of a regular wave in the 3-dimensional and 1-dimensional figures through the projection on X Y Z axis. In conclusion, it was possible to calculate the displacement of a floating structure module in near real-time using an average digital camcorder with 30fps video.

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