首页> 外文期刊>Journal of Marine Science and Engineering >Colour Sonar: Multi-Frequency Sidescan Sonar Images of the Seabed in the Inner Sound of the Pentland Firth, Scotland
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Colour Sonar: Multi-Frequency Sidescan Sonar Images of the Seabed in the Inner Sound of the Pentland Firth, Scotland

机译:彩色声纳:苏格兰彭特兰峡湾内部声音中的海床多频侧扫声纳图像

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The backscatter response of a seabed to an incident sonar signal is dependent on the carrier wave frequency: i.e. , the seabed is acoustically colourful. Colour is implemented in a prototype three-frequency sidescan sonar system deployed in the Pentland Firth, north Scotland. Sonar amplitude data as a function of frequency are processed to render them an unconfounded effect of the seabed normalized to the response at a reference inclination angle, for colour to be a meaningful property of the seabed. Methods for mapping data at sonar frequencies to optical primary colours for human visualisation are explored. We recommend methods that in our opinion generate colour characteristics harmonious with human vision in which: shadow is white; saturation black; colour shade darkness is proportional to backscatter strength; and shades of red, green and blue are seen in proportion to the backscatter amplitudes of the low-, mid- and high-frequency sonar data. Frequency equalisation is applied to achieve a balance in colour responses in images. The seabed in the survey area is acoustically colourful. Using the “negative BGR” colour mapping method: a weakly backscattering sand dune in the north of the survey area appears as shades of light blue and purple; a strongly backscattering halo of cobbles around the dune appears as shades of hazel brown; a strongly backscattering gravel ridge across the south of the survey area appears as shades of royal blue; and exposed rock as textures ranging in colour from light brown to light blue/green. There is evidence for colour anisotropy (a dependence of colour on the direction of ensonification). Similarities between anthropic colour sonar and the natural sonar of Microchiropteran bats are noted. Bats’ sonar satisfies the information criteria for acoustic colour, and it is hypothesized that it informs a colourfully-perceived world view.
机译:海底对入射声纳信号的反向散射响应取决于载波频率:即海底在声学上是彩色的。彩色在原型三频侧扫声纳系统中实现,该系统部署在苏格兰北部的彭特兰峡湾。对声纳振幅数据作为频率的函数进行处理,以使其成为无色的海底效果,并标准化为参考倾斜角下的响应,从而使颜色成为海底的有意义的属性。探索了将声纳频率的数据映射到光学原色以进行人类可视化的方法。我们建议使用我们认为能够产生与人类视觉相协调的色彩特征的方法,其中:阴影为白色;阴影为白色。饱和黑色度暗度与反向散射强度成正比;低频,中频和高频声纳数据的反向散射幅度与红色,绿色和蓝色的阴影成比例。应用频率均衡以实现图像色彩响应的平衡。调查区域的海床在声学上是彩色的。使用“负BGR”颜色映射方法:在调查区域北部,反向散射较弱的沙丘显示为浅蓝色和紫色阴影;沙丘周围的鹅卵石向后散射强烈,呈淡褐色。横跨调查区域南部的强烈向后散射的砾石山脊呈现为宝蓝色。裸露的岩石纹理从浅棕色到浅蓝色/绿色。有颜色各向异性的证据(颜色与共振方向有关)。指出了人类彩色声纳与微鳞翅目蝙蝠的天然声纳之间的相似性。蝙蝠的声纳满足声学色彩的信息标准,据推测,它可以提供色彩感知的世界观。

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