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Analysis of the Increase of Matching Points for Accuracy Improvement in 3D Reconstruction Using Stereo CCTV Image Data

  • Moon, Kwang-il (Dept. of Civil Engineering, Konkuk University) ;
  • Pyeon, MuWook (Dept. of Civil Engineering, Konkuk University) ;
  • Eo, YangDam (Dept. of Advanced Technology Fusion, Konkuk University) ;
  • Kim, JongHwa (Dept. of Advanced Technology Fusion, Konkuk University) ;
  • Moon, Sujung (Dept. of Advanced Technology Fusion, Konkuk University)
  • Received : 2016.04.06
  • Accepted : 2017.04.30
  • Published : 2017.04.30

Abstract

Recently, there has been growing interest in spatial data that combines information and communication technology with smart cities. The high-precision LiDAR (Light Dectection and Ranging) equipment is mainly used to collect three-dimensional spatial data, and the acquired data is also used to model geographic features and to manage plant construction and cultural heritages which require precision. The LiDAR equipment can collect precise data, but also has limitations because they are expensive and take long time to collect data. On the other hand, in the field of computer vision, research is being conducted on the methods of acquiring image data and performing 3D reconstruction based on image data without expensive equipment. Thus, precise 3D spatial data can be constructed efficiently by collecting and processing image data using CCTVs which are installed as infrastructure facilities in smart cities. However, this method can have an accuracy problem compared to the existing equipment. In this study, experiments were conducted and the results were analyzed to increase the number of extracted matching points by applying the feature-based method and the area-based method in order to improve the precision of 3D spatial data built with image data acquired from stereo CCTVs. For techniques to extract matching points, SIFT algorithm and PATCH algorithm were used. If precise 3D reconstruction is possible using the image data from stereo CCTVs, it will be possible to collect 3D spatial data with low-cost equipment and to collect and build data in real time because image data can be easily acquired through the Web from smart-phones and drones.

Keywords

References

  1. Bae, K.R. (2011), A Hardware Architecture Based on the NCC Algorithm for Fast Disparity Estimation, Master's thesis, Kyungpook National University, Daegu, Korea, 52p.
  2. Barsky, B.A. (2002), Light, color, perception, and color space theory, University of California, Berkeley, California.
  3. Chen, C.S., Hung, Y.P., and Cheng, J.B. (1999), RANSACbased DARCES: a new approach to fast automatic registration of partially overlapping range images, IEEE Computer Society, IEEE, Vol. 21, No. 11, pp. 1229-1234.
  4. Jang, I.W., Pyeon, M.W., Hong, K.H., Kim, J.H., Moon, K.I., and Kim, K.S. (2014), Realtime digital map by using multi source video image, International Conference on Innovative Engineering Technologies (ICIET) , 28-29 Dec., Bangkok, Thailand, pp. 169-171.
  5. Kim, K.S., Pyeon, M.W., Kim, J.H., and Moon, K.I. (2015), Time series image stereo matching experiment using the overlap method, Journal of Korean Society for Geospatial Information System, Vol. 23, No. 1, pp. 123-128. https://doi.org/10.7319/kogsis.2015.23.1.123
  6. Koo, J.M. (2015), A Study on the Robust Stereo Matching Algorithm under Radiometric Change based on Weighted Local Descriptor, Master's thesis, Chung-Ang University, 65p.
  7. Lee, H.J. (2008), Producing true orthophoto using multidimensional spatial information, Journal of the Korean Society of Surveying, Vol. 26, No. 3, pp. 241-253.
  8. Lee, H.J., You, J.H., and Koh, Y.C. (2009), Analysis for practical use as KOMPSAT-2 imagery for product of geo-spatial information, Journal of Korean Society for Geospatial Information System, Vol. 17, No. 1, pp. 21-35.
  9. Lowe, D.G. (2004), Distinctive image features from scaleinvariant keypoints, International Journal of Computer Vision, Vol. 60, No. 2, pp. 91-110. https://doi.org/10.1023/B:VISI.0000029664.99615.94
  10. Yocky, D.A. (1995), Image merging and data fusion by means of the discrete two-dimensional wavelet transform, Journal of the Optical Society of America A, Vol. 12, No. 9, pp. 1834p. https://doi.org/10.1364/JOSAA.12.001834