Abstract

최근 비약적인 기술발전을 통해 8,000만 화소급 디지털 카메라가 등장했으며, 비측량용 디지털 카메라가 사진 측량 분야에서 다양하게 활용되고 있다. 본 연구에서는 항공사진과 지상기준점을 이용하여 렌즈 캘리브레이션을 수행하였다. 항공사진은 35mm 렌즈가 장착된 CMOS 2,110만 화소급 비측량용 디지털 카메라를 헬리콥터에 설치하여 취득하였고, 지상기준점은 1:1,000 도화원도에서 선점하였다. 그 결과 렌즈에 대한 초점거리, PPA, 방사왜곡계수를 계산할 수 있었다. 또한 렌즈 캘리브레이션 전후에 항공삼각측량을 수행하여 지상기준점의 평균제곱근오차와 최대 잔차를 비교하였으며, 캘리브레이션 후 정확도가 매우 큰 폭으로 향상됨을 알 수 있었다. The most recent, 80 mega pixels digital camera appeared through the development of digital technology, and nonmetric digital cameras have been using in various field of photogrammetry. In this study, we experimented lens calibration using aerial photographs and ground control points. The aerial photographs were taken a non-metric digital camera which is CMOS(Complementary Metal Oxide Semiconductor) 21.1 mega pixels sensor and 35mm lens at a helicopter. And the ground control points were selected on the 1:1,000 plotting origin data. As a result, we calculated focal length, PPA(Principal Point of Autocollimation) and symmetric radial distortion coefficients from the lens. Also, RMSE(root mean square error) and maximum residual of the ground control points from the aerial triangulation were compared before and after calibration. And we found that the accuracy of the after calibration was improved very significantly.

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