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Joint Angle Estimation Method for TBD Based on Inter-Frame Angle Compensation
DOI:10.1109/LGRS.2024.3407830.png)
Abstract
En 中文
Measuring target angles is a crucial issue in airborne radar detection. Traditional dynamic programming track-before-detect (DP-TBD) often operates in low signal-to-noise ratio (SNR), posing challenges to angle measurement and localization. This letter presents an angle estimation technique for TBD processing. It interprets target angles across multiple frames using initial frame angle (IF-AG) and inter-frame angular rate of change (IF-ARC). Compensating for the latter and performing noncoherent accumulation to improve SNR before estimating the IF-AG enhance multiframe target angle estimation precision. The method initially formulates the cost function for multiframe angle measurement based on the raw data extracted from the multiframe array by DP-TBD. It subsequently estimates and compensates for IF-ARC, related to velocity, followed by IF-AG estimation, providing target angles for all frames concurrently. Simulation results validate the effectiveness of this method.
Keywords:
Airborne radar
dynamic programming track-before-detect (DP-TBD)
multiframe angle measurement
newton iteration method
Airborne radar
dynamic programming track-before-detect (DP-TBD)
multiframe angle measurement
newton iteration method
Journal
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16.4
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1.0W
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5.1K

