Chinese Optics Letters, Volume. 4, Issue 8, 453(2006)
Kalman filtering techniques for reducing variance of digital speckle displacement measurement noise
[1] [1] J. C. Dainty, Laser Speckle and Related Phenomena (Springer-Verlag, Berlin, 1975).
[2] [2] T. C. Chu, W. F. Ranson, M. A. Sutton, and W. H. Peters, Experimental Mechanics 25, 232 (1985).
[3] [3] W. H. Peters and W. F. Ranson, Opt. Eng. 21, 427 (1982).
[4] [4] I. Yamaguchi, J. Phys. E: Sci. Instrum. 14, 1270 (1981).
[5] [5] D. Li, L. Guo, and T. Qiu, Proc. SPIE 6150, 61505A (2006).
[6] [6] D. Li, L. Guo, and T. Qiu, Proc. SPIE 6150, 615059 (2006).
[7] [7] N. Takai and T. Asakura, Appl. Opt. 22, 3514 (1983).
[9] [9] P. Zhou and K. E. Goodson, Opt. Eng. 40, 1613 (2001).
[10] [10] R. E. Kalman, Trans. ASME J. Basic Eng. 82, 35 (1960).
[11] [11] T.-J. Park, H.-S. Choi, C.-S. Han, and Y.-W. Lee, Opt. Laser Technol. 37, 229 (2005).
[12] [12] X. Dai, Y. C. Chan, and A. C. K. So, Appl. Opt. 38, 3474 (1999).
[13] [13] B. Friedland, IEEE Trans. Aerospace and Electronic System 9, 906 (1973).
[14] [14] G. F. Franklin, J. D. Powell, and M. L. Workman, Digital Control of Dynamic Systems (Addison-Wesley, New York, 1990).
[15] [15] R. A. Singer, IEEE Trans. Aerospace and Electronic System 6, 473 (1970).
Get Citation
Copy Citation Text
Donghui Li, Li Guo, "Kalman filtering techniques for reducing variance of digital speckle displacement measurement noise," Chin. Opt. Lett. 4, 453 (2006)