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Motion estimation in wide band synthetic aperture sonar based on the raw echo data using the method of displaced phase center antenna 被引量:3

Motion estimation in wide band synthetic aperture sonar based on the raw echo data using the method of displaced phase center antenna
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摘要 Phase errors in synthetic aperture sonar (SAS) imaging must be reduced to less than one eighth of a wavelength so as to avoid image destruction. Most of the phase errors occur as a result of platform motion errors, for example, sway yaw and surge that are the most important error sources. The phase error of a wide band synthetic aperture sonar is modeled and solutions to sway yaw and surge motion estimation based on the raw sonar echo data with a Displaced Phase Center Antenna (DPCA) method are proposed and their implementations are detailed in this paper. It is shown that the sway estimates can be obtained from the correlation lag and phase difference between the returns at coincident phase centers. An estimate of yaw is also possible if such a technique is applied to more than one overlapping phase center positions. Surge estimates can be obtained by identifying pairs of phase centers with a maximum correlation coefficient. The method works only if the platform velocity is low enough such that a number of phase centers from adjacent pings overlap. Phase errors in synthetic aperture sonar (SAS) imaging must be reduced to less than one eighth of a wavelength so as to avoid image destruction. Most of the phase errors occur as a result of platform motion errors, for example, sway yaw and surge that are the most important error sources. The phase error of a wide band synthetic aperture sonar is modeled and solutions to sway yaw and surge motion estimation based on the raw sonar echo data with a Displaced Phase Center Antenna (DPCA) method are proposed and their implementations are detailed in this paper. It is shown that the sway estimates can be obtained from the correlation lag and phase difference between the returns at coincident phase centers. An estimate of yaw is also possible if such a technique is applied to more than one overlapping phase center positions. Surge estimates can be obtained by identifying pairs of phase centers with a maximum correlation coefficient. The method works only if the platform velocity is low enough such that a number of phase centers from adjacent pings overlap.
出处 《声学技术》 CSCD 2003年第z1期56-59,共4页 Technical Acoustics
关键词 sonar SYNTHETIC APERTURE SONAR (SAS) motion estimation RAW data DPCA. sonar, synthetic aperture sonar (SAS), motion estimation, raw data, DPCA.
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参考文献9

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同被引文献13

  • 1杨元喜,张双成.导航解算中的系统误差及其协方差矩阵拟合[J].测绘学报,2004,33(3):189-194. 被引量:41
  • 2蒋小奎,孙超,冯杰.采用Vernier阵技术的SAS图像重建[J].西北工业大学学报,2005,23(1):60-64. 被引量:7
  • 3Celuzza S, Abbot P, Gedney C. Feasibility of littoral imaging with a 3 kHz synthetic aperture sonar[R]. Acoustic Imaging, 1997:223-231.
  • 4Chatillon J A. SAMI: A low-frequency prototype for mapping and imaging of the seabed by means of synthetic aperture[J]. IEEE Journal of Oceanic Engineering, 1999, 24(1) : 4-15.
  • 5Sheriff R W. Synthetic aperture beamforming with automatic phase compensation for high frequency sonar[C]. IEEE Proceedings of the 1992 Symposium on Autonomous Underwater Vehicle Technology, 1992: 236-245.
  • 6Andrea Bellettini. Theoretical accuracy of synthetic aperture sonar micronavigation using a displaced phase-center antenna[J].IEEE Journal of Oceanic Engineering, 2002, 27(4) : 780 - 789.
  • 7Celuzza S,Abbot P,Gedney C.Feasibility of Littoral Imaging with a 3 kHz Synthetic Aperture Sonar[J].Acoustic Imaging (S0270-5117),1997,23(1):223-231.
  • 8Chatillon J A,Alan E L,Michael A Z.SAMI:A Low-frequency Prototype for Mapping and Iimaging of the Seabed by Means of Synthetic Aperture[J].IEEE Journal of Oceanic Engineering (S0364-9059),1999,24(1):4-15.
  • 9Sheriff R W.Synthetic Aperture Beamforming with Automatic Phase Compensation for High Frequency Sonar[C]//IEEE Proceedings of the 1992 Symposium on Autonomous Underwater Vehicle Technology,Washington:IEEE,1992:236-245.
  • 10Andrea Bellettini.Theoretical Accuracy of Synthetic Aperture Sonar Micronavigation Using a Displaced Phase-center Antenna[J].IEEE Journal of Oceanic Engineering (S0364-9059),2002,27(4):780-789.

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