Coiras Enrique, Petillot Yvan, Lane David M
Ocean Systems Laboratory, Heriot-Watt University, EH14 4AS Edinburgh, U.K.
IEEE Trans Image Process. 2007 Feb;16(2):382-90. doi: 10.1109/tip.2006.888337.
In this paper, a new method for the estimation of seabed elevation maps from side-scan sonar images is presented. The side-scan image formation process is represented by a Lambertian diffuse model, which is then inverted by a multiresolution optimization procedure inspired by expectation-maximization to account for the characteristics of the imaged seafloor region. On convergence of the model, approximations for seabed reflectivity, side-scan beam pattern, and seabed altitude are obtained. The performance of the system is evaluated against a real structure of known dimensions. Reconstruction results for images acquired by different sonar sensors are presented. Applications to augmented reality for the simulation of targets in sonar imagery are also discussed.
本文提出了一种从侧扫声纳图像估计海底高程图的新方法。侧扫图像形成过程由朗伯漫反射模型表示,然后通过受期望最大化启发的多分辨率优化程序进行反演,以考虑成像海底区域的特征。在模型收敛时,可获得海底反射率、侧扫波束模式和海底高度的近似值。针对已知尺寸的真实结构评估了该系统的性能。给出了不同声纳传感器采集图像的重建结果。还讨论了该方法在声纳图像中目标模拟的增强现实中的应用。