Max Planck Institute for Marine Microbiology, Bremen, Germany.
Australian Institute for Marine Science, Townsville, Australia.
Sci Rep. 2017 Aug 2;7(1):7122. doi: 10.1038/s41598-017-07337-y.
We developed a novel integrated technology for diver-operated surveying of shallow marine ecosystems. The HyperDiver system captures rich multifaceted data in each transect: hyperspectral and color imagery, topographic profiles, incident irradiance and water chemistry at a rate of 15-30 m per minute. From surveys in a coral reef following standard diver protocols, we show how the rich optical detail can be leveraged to generate photopigment abundance and benthic composition maps. We applied machine learning techniques, with a minor annotation effort (<2% of pixels), to automatically generate cm-scale benthic habitat maps of high taxonomic resolution and accuracy (93-97%). The ability to efficiently map benthic composition, photopigment densities and rugosity at reef scales is a compelling contribution to modernize reef monitoring. Seafloor-level hyperspectral images can be used for automated mapping, avoiding operator bias in the analysis and deliver the degree of detail necessary for standardized environmental monitoring. The technique can deliver fast, objective and economic reef survey results, making it a valuable tool for coastal managers and reef ecologists. Underwater hyperspectral surveying shares the vantage point of the high spatial and taxonomic resolution restricted to field surveys, with analytical techniques of remote sensing and provides targeted validation for aerial monitoring.
我们开发了一种新型的集成技术,用于潜水员操作的浅海生态系统调查。HyperDiver 系统以每分钟 15-30 米的速度在每个横截面上捕获丰富的多方面数据:高光谱和彩色图像、地形剖面、入射辐照度和水化学。根据标准潜水员协议在珊瑚礁上进行的调查,我们展示了如何利用丰富的光学细节来生成光色素丰度和海底组成图。我们应用了机器学习技术,只需进行少量注释(<2%的像素),就可以自动生成具有高分类分辨率和准确性(93-97%)的厘米级海底栖息地图。以高效率绘制珊瑚礁尺度的海底组成、光色素密度和粗糙度的能力是实现现代化珊瑚礁监测的一个引人注目的贡献。海底水平高光谱图像可用于自动制图,避免了分析中的操作人员偏差,并提供了标准化环境监测所需的详细程度。该技术可以快速、客观和经济地提供珊瑚礁调查结果,是沿海管理人员和珊瑚礁生态学家的宝贵工具。水下高光谱调查具有与实地调查一样的空间和分类分辨率优势,并且具有遥感分析技术,并为航空监测提供了有针对性的验证。