A Ship Detection and Tracking Algorithm for an Airborne Passive Interferometric Microwave Sensor (PIMS)

Ship detection by an airborne passive interferometric microwave sensor has been proposed as a powerful complementary tool for ship detection, especially for large ships in low visibility conditions and high sea clutter. In this article, the brightness temperature (TB) models of the sea background an...

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Vydané v:IEEE journal of selected topics in applied earth observations and remote sensing Ročník 14; s. 3519 - 3532
Hlavní autori: Lu, Hailiang, Li, Hao, Chen, Liangbing, Cheng, Yayun, Zhu, Dong, Li, Yinan, Lv, Rongchuan, Chen, Gang, Su, Xiang, Lang, Liang, Li, Qingxia, Zhao, Yingying
Médium: Journal Article
Jazyk:English
Vydavateľské údaje: Piscataway IEEE 2021
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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Abstract Ship detection by an airborne passive interferometric microwave sensor has been proposed as a powerful complementary tool for ship detection, especially for large ships in low visibility conditions and high sea clutter. In this article, the brightness temperature (TB) models of the sea background and the ship on the sea are established. Given the TB models, a ship detection and tracking algorithm with four steps is proposed, which is devoted to ship tracking. In addition, the impacts of the noises in the passive interferometric microwave images (PIMI) and the algorithm parameters are analyzed and discussed. Numerical simulations and airborne experiments are performed to assess the practicability of the algorithm. Both numerical and experimental results have demonstrated the practicability of the proposed algorithm with dealing with the additional systematic errors and estimating the ship heading, and the results also exhibit that the additional noises in the PIMI caused by the stochastic fluctuations of the aircraft and the algorithm parameters have a non-negligible impact on the algorithm detection performance. As a result, the "ship-free" observed TB maps should be carefully considered as the sea background TB map to improve the algorithm detection performance by reducing the noises caused by the stochastic fluctuations of the aircraft. In addition, the algorithm parameter should also be carefully considered to get a high ship detection probability with a low ship false-alarm rate.
AbstractList Ship detection by an airborne passive interferometric microwave sensor has been proposed as a powerful complementary tool for ship detection, especially for large ships in low visibility conditions and high sea clutter. In this article, the brightness temperature (TB) models of the sea background and the ship on the sea are established. Given the TB models, a ship detection and tracking algorithm with four steps is proposed, which is devoted to ship tracking. In addition, the impacts of the noises in the passive interferometric microwave images (PIMI) and the algorithm parameters are analyzed and discussed. Numerical simulations and airborne experiments are performed to assess the practicability of the algorithm. Both numerical and experimental results have demonstrated the practicability of the proposed algorithm with dealing with the additional systematic errors and estimating the ship heading, and the results also exhibit that the additional noises in the PIMI caused by the stochastic fluctuations of the aircraft and the algorithm parameters have a non-negligible impact on the algorithm detection performance. As a result, the "ship-free" observed TB maps should be carefully considered as the sea background TB map to improve the algorithm detection performance by reducing the noises caused by the stochastic fluctuations of the aircraft. In addition, the algorithm parameter should also be carefully considered to get a high ship detection probability with a low ship false-alarm rate.
Author Su, Xiang
Zhu, Dong
Chen, Gang
Li, Hao
Zhao, Yingying
Chen, Liangbing
Lu, Hailiang
Li, Yinan
Lang, Liang
Lv, Rongchuan
Cheng, Yayun
Li, Qingxia
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SubjectTerms Airborne
Airborne remote sensing
Airborne sensing
Aircraft
Algorithms
Atmospheric modeling
Brightness temperature
Clutter
Detection
False alarms
Fluctuations
High seas
interferometric
Interferometry
Low visibility
Marine vehicles
Mathematical models
microwave sensor
Microwave sensors
Ocean temperature
Parameters
passive
Probability theory
Sea surface
Sensors
ship detection and tracking
Surface clutter
Surface radiation temperature
Systematic errors
Systematics
Tracking
Visibility
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Title A Ship Detection and Tracking Algorithm for an Airborne Passive Interferometric Microwave Sensor (PIMS)
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