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Passive ranging technique using waveguide invariant in shallow water with thermocline

Passive ranging technique using waveguide invariant in shallow water with thermocline
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摘要 Waveguide invariant is widely used in underwater target passive ranging. In shallow water with uniform sound speed profile, the value of waveguide invariant is approximately a constant, while in shallow water with thermocline, it varies in a wide range. The waveguide invariant distributions and striations in these two conditions are analyzed respectively. On the basis of wavenumber difference between reflected modes and refracted modes, a wavenumber-frequency domain filtering technique is proposed to separate the two groups of modes. The required relationship between array element space, total array length and target azimuth for effective application is discussed. Finally, the simulation results indicate that in shallow water with a thermocline, refracted modes can be effectively filtered out using the wavenumber-frequency domain filtering technique and the target's range is estimated accurately. © 2017 Beijing Institute of Aerospace Information. Waveguide invariant is widely used in underwater target passive ranging. In shallow water with uniform sound speed profile, the value of waveguide invariant is approximately a constant, while in shallow water with thermocline, it varies in a wide range. The waveguide invariant distributions and striations in these two conditions are analyzed respectively. On the basis of wavenumber difference between reflected modes and refracted modes, a wavenumber-frequency domain filtering technique is proposed to separate the two groups of modes. The required relationship between array element space, total array length and target azimuth for effective application is discussed. Finally, the simulation results indicate that in shallow water with a thermocline, refracted modes can be effectively filtered out using the wavenumber-frequency domain filtering technique and the target's range is estimated accurately. © 2017 Beijing Institute of Aerospace Information.
出处 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2017年第2期244-250,共7页 系统工程与电子技术(英文版)
基金 supported by the National Natural Science Foundation of China(11374072 61371171)
关键词 Frequency domain analysis Stream flow Waveguide filters WAVEGUIDES Frequency domain analysis Stream flow Waveguide filters Waveguides
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