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首页> 外文期刊>Oceanic Engineering, IEEE Journal of >FPGA-Based Adaptive Speckle Suppression Filter for Underwater Imaging Sonar
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FPGA-Based Adaptive Speckle Suppression Filter for Underwater Imaging Sonar

机译:基于FPGA的水下成像声纳的自适应散斑抑制滤波器

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摘要

Underwater forward-looking imaging sonar (FLS) is widely used on stationary and moving platforms to overcome underwater visibility problems. The SONAR images are perturbed by a multiplicative noise called speckle, due to the coherent nature of the scattering phenomenon. Speckle reduction filters are necessary to optimize the images' exploitation procedures. The results of speckle filters may vary from one sensor and one wavelength to another; therefore, no generic de-speckling algorithm exists. Several studies have been carried out on speckle noise suppression on sidescan sonar, but the problem of speckle noise suppression for FLS has not yet been covered. A comparison of the most used classical speckle suppression filters as well as advanced wavelet-based ones was carried out. The Frost filter was found to be the most adequate for FLS data, but also the most computationally complex and not suitable for real-time processing. Two novel architectures for real-time and low-power field-programmable gate array (FPGA) implementation of the Frost speckle filter for underwater imaging sonar are presented. The proposed architectures have superior performance and power efficiency compared to standard software implementation.
机译:水下前视成像声纳(FLS)被广泛用于固定平台和移动平台,以克服水下能见度问题。由于散射现象的相干特性,声纳图像会受到称为斑点的乘性噪声的干扰。散斑减少滤镜对于优化图像的利用程序是必需的。散斑滤波器的结果可能会因一个传感器和一个波长而异。因此,不存在通用的去斑点算法。关于侧扫声纳的斑点噪声抑制已经进行了一些研究,但是尚未解决FLS的斑点噪声抑制问题。比较了最常用的经典斑点抑制滤波器和基于高级小波的滤波器。发现弗罗斯特滤波器最适合FLS数据,但也最计算复杂,不适合实时处理。提出了两种新颖的架构,用于水下成像声纳的Frost散斑滤波器的实时和低功耗现场可编程门阵列(FPGA)实现。与标准软件实现相比,所提出的体系结构具有卓越的性能和能效。

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