TY - JOUR
T1 - Underwater Downwelling Radiance Fields Enable Three-Dimensional Attitude and Heading Determination
AU - Hu, Pengwei
AU - Yang, Jian
AU - Qiao, Jianzhong
AU - Li, Wenshuo
AU - Guo, Lei
N1 - Publisher Copyright:
© 2005-2012 IEEE.
PY - 2024/2/1
Y1 - 2024/2/1
N2 - Underwater autonomous navigation has long been a challenging problem due to the scarcity of information sources. The polarization navigation offers a feasible solution to this problem. The existing polarization navigation schemes, however, require that the horizontal attitude is known, which can only be used for 2-D orientation. To address the limitation, a 3-D attitude determination strategy is developed in this article by exploiting the underwater downwelling radiance fields (light intensity and polarization). In particular, the horizontal attitude information contained in the Snell's window, a unique underwater optical phenomenon induced by refraction, is extracted via an improved edge recognition method. On this basis, underwater polarization is exploited to calculate solar position for orientation. By this means, the 3-D attitude is acquired independently using underwater downwelling radiance fields. The effectiveness of the proposed strategy is validated via experiments in both the water tank and open sea environments.
AB - Underwater autonomous navigation has long been a challenging problem due to the scarcity of information sources. The polarization navigation offers a feasible solution to this problem. The existing polarization navigation schemes, however, require that the horizontal attitude is known, which can only be used for 2-D orientation. To address the limitation, a 3-D attitude determination strategy is developed in this article by exploiting the underwater downwelling radiance fields (light intensity and polarization). In particular, the horizontal attitude information contained in the Snell's window, a unique underwater optical phenomenon induced by refraction, is extracted via an improved edge recognition method. On this basis, underwater polarization is exploited to calculate solar position for orientation. By this means, the 3-D attitude is acquired independently using underwater downwelling radiance fields. The effectiveness of the proposed strategy is validated via experiments in both the water tank and open sea environments.
KW - Polarization sensor
KW - Snell's window
KW - three-dimensional (3-D) attitude and heading determination
KW - underwater autonomous navigation
KW - underwater downwelling radiance fields
UR - https://www.scopus.com/pages/publications/85162693549
U2 - 10.1109/TII.2023.3286901
DO - 10.1109/TII.2023.3286901
M3 - 文章
AN - SCOPUS:85162693549
SN - 1551-3203
VL - 20
SP - 2109
EP - 2118
JO - IEEE Transactions on Industrial Informatics
JF - IEEE Transactions on Industrial Informatics
IS - 2
ER -