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Low bit-rate compression of underwater imagery based on adaptive hybrid wavelets and directional filter banks

机译:基于自适应混合小波和定向滤波器组的水下图像低比特率压缩

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摘要

A new underwater video compression technique based on adaptive hybrid wavelets,and directional filter banks is proposed to achieve both high coding efficiency and good reconstruction quality at very low-bit rates. A key application is the real-time transmission of video through acoustic channels with limited bandwidth, from an autonomous underwater vehicle to a surface station, e.g., for man-in-the-loop monitoring and inspection operations. For intra-frame coding, the method maintains details in texture regions at relatively low bit rates, and overcomes the ringing artifacts within smooth regions. For inter frame coding, improved efficiency is achieved by making use of: (1) a new spatio-temporal just-noticeable-distortion model to remove perceptual redundancy; (2) motion interpolation to reduce bit rate; and (3) variable-precision in quantizing the residual error. Experiments with underwater video sequences are presented to assess the effectiveness of the proposed approach, in comparison to traditional wavelet-based techniques. (C) 2016 Elsevier B.V. All rights reserved.
机译:提出了一种新的基于自适应混合小波和方向滤波器组的水下视频压缩技术,可以在非常低的比特率下实现高编码效率和良好的重建质量。关键应用是通过带宽有限的声学通道实时传输视频,例如从无人水下航行器到地面站,以便进行人环监控和检查操作。对于帧内编码,该方法以较低的比特率保持纹理区域中的细节,并克服了平滑区域内的振铃伪影。对于帧间编码,通过使用以下方法实现了提高的效率:(1)一种新的时空正好可察觉的失真模型,以消除感知冗余; (2)运动插补以降低比特率; (3)量化残差时的精度。与传统的基于小波的技术相比,提出了水下视频序列的实验,以评估该方法的有效性。 (C)2016 Elsevier B.V.保留所有权利。

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