TY - GEN
T1 - Enhanced OTHR detection using Bayesian fusion of multipath target returns
AU - Wang, Zengfu
AU - Wang, Xuezhi
AU - Liang, Yan
AU - Pan, Quan
PY - 2012
Y1 - 2012
N2 - In this paper, a target detection technique based on the fusion of multipath signals in a Bayesian framework is proposed with application to the HF Over-The-Horizon-Radar (OTHR). The detection consists of a generalized likelihood ratio test and a data fusion process, where target measurement likelihood is derived based on a set of multi-path models which are characterized by a known Doppler transition with additive Gaussian noise. The latter describes the relationship between the Doppler frequencies propagated along each of the multiple paths. A centralized Bayesian fusion is applied to compute an overall amplitude of the detection iteratively, where the posterior probability density of Doppler frequency for a specific propagation path from the underlying target is estimated via a sequential Bayesian estimator. Compared to the conventional detection method used in OTHR, the proposed detection technique is able to increase detection SNR by fusing target detections over all paths. Results from our numerical simulations are presented, which show the effectiveness of the proposed algorithm.
AB - In this paper, a target detection technique based on the fusion of multipath signals in a Bayesian framework is proposed with application to the HF Over-The-Horizon-Radar (OTHR). The detection consists of a generalized likelihood ratio test and a data fusion process, where target measurement likelihood is derived based on a set of multi-path models which are characterized by a known Doppler transition with additive Gaussian noise. The latter describes the relationship between the Doppler frequencies propagated along each of the multiple paths. A centralized Bayesian fusion is applied to compute an overall amplitude of the detection iteratively, where the posterior probability density of Doppler frequency for a specific propagation path from the underlying target is estimated via a sequential Bayesian estimator. Compared to the conventional detection method used in OTHR, the proposed detection technique is able to increase detection SNR by fusing target detections over all paths. Results from our numerical simulations are presented, which show the effectiveness of the proposed algorithm.
KW - Bayesian fusion
KW - Generalized likelihood ratio test
KW - Multipath propagation
KW - Over-The-Horizon Radar
KW - Target detection
UR - http://www.scopus.com/inward/record.url?scp=84867649767&partnerID=8YFLogxK
M3 - 会议稿件
AN - SCOPUS:84867649767
SN - 9780982443859
T3 - 15th International Conference on Information Fusion, FUSION 2012
SP - 910
EP - 916
BT - 15th International Conference on Information Fusion, FUSION 2012
T2 - 15th International Conference on Information Fusion, FUSION 2012
Y2 - 7 September 2012 through 12 September 2012
ER -