Instantaneous altitude estimation of maneuvering target in over-the-horizon radar exploiting multipath Doppler signatures

被引:0
|
作者
Yimin D. Zhang
Jun Jason Zhang
Moeness G. Amin
Braham Himed
机构
[1] Villanova University,Wireless Communications and Positioning Laboratory, Center for Advanced Communications
[2] University of Denver,Electrical and Computer Engineering Department
[3] AFRL/RYMD,Air Force Research Laboratory
来源
EURASIP Journal on Advances in Signal Processing | / 2013卷
关键词
Over-the-horizon radar; Time-frequency analysis; Multipath exploitation; Target tracking; Extended Kalman filter;
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学科分类号
摘要
Over-the-horizon radar systems are capable of localizing targets in range and azimuth but are unable to achieve reliable altitude estimation. Past work has shown that the time-varying Doppler signatures of micro-multipath signals provide rich information for reliable estimation of altitude changes. In this paper, we develop a new technique for the estimation of instantaneous altitude of maneuvering targets by exploiting the estimated multicomponent Doppler signatures. A key contribution of this paper is to apply effective non-stationary signal analysis techniques for estimating the time-varying Doppler signature of each individual multipath. This enables reliable target altitude estimation in an extended Kalman filter setup. The maximum a-posteriori criterion is used for the estimation of initial target states.
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