TY - JOUR
T1 - GPS-based single-epoch attitude determination without prior knowledge of measurement precision
AU - Chen, Wantong
AU - Honglei, Qin
AU - Li, Shujian
PY - 2013
Y1 - 2013
N2 - During attitude determination using the Global Positioning System (GPS), incomplete knowledge of the stochastic model of the observables often occurs in realistic applications, resulting in the failure of the traditional least-squares method for the Global Navigation Satellite System baseline model. This paper presents a single-frequency single-epoch GPS attitude determination method, which is aimed at attitude determination without theprior knowledge of measurement precision. The new approach is a combination of an analytical resolution and the constrained integer least-squares theory. By using the global minimizer of the fixed ambiguity objective function, our method identifies the most likely solution from all possible analytical candidates. Simulation experiments demonstrate the performance of the proposed algorithm for different noise levels and different baseline lengths. To determine the applicable scope of this scheme, the success rate gap of the least-squares method is also analyzed. Actual experiments also verify the effectiveness of theproposed method.
AB - During attitude determination using the Global Positioning System (GPS), incomplete knowledge of the stochastic model of the observables often occurs in realistic applications, resulting in the failure of the traditional least-squares method for the Global Navigation Satellite System baseline model. This paper presents a single-frequency single-epoch GPS attitude determination method, which is aimed at attitude determination without theprior knowledge of measurement precision. The new approach is a combination of an analytical resolution and the constrained integer least-squares theory. By using the global minimizer of the fixed ambiguity objective function, our method identifies the most likely solution from all possible analytical candidates. Simulation experiments demonstrate the performance of the proposed algorithm for different noise levels and different baseline lengths. To determine the applicable scope of this scheme, the success rate gap of the least-squares method is also analyzed. Actual experiments also verify the effectiveness of theproposed method.
KW - Ambiguity resolution
KW - Attitude determination
KW - Constrained integer least squares
KW - Global Positioning System (GPS)
UR - https://www.scopus.com/pages/publications/84879710698
U2 - 10.1061/(ASCE)SU.1943-5428.0000093
DO - 10.1061/(ASCE)SU.1943-5428.0000093
M3 - 文章
AN - SCOPUS:84879710698
SN - 0733-9453
VL - 139
SP - 34
EP - 46
JO - Journal of Surveying Engineering, - ASCE
JF - Journal of Surveying Engineering, - ASCE
IS - 1
ER -