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MONITORING SEABIRDS AND MARINE MAMMALS BY GEOREFERENCED AERIAL PHOTOGRAPHY

机译:通过地理学的航拍监测海鸟和海洋哺乳动物

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The assessment of anthropogenic impacts on the marine environment is challenged by the accessibility, accuracy and validity of bio-geographical information. Offshore wind farm projects require large-scale ecological surveys before, during and after construction, in order to assess potential effects on the distribution and abundance of protected species. The robustness of site-specific population estimates depends largely on the extent and design of spatial coverage and the accuracy of the applied census technique. Standard environmental assessment studies in Germany have so far included aerial visual surveys to evaluate potential impacts of offshore wind farms on seabirds and marine mammals. However, low flight altitudes, necessary for the visual classification of species, disturb sensitive bird species and also hold significant safety risks for the observers. Thus, aerial surveys based on high-resolution digital imagery, which can be carried out at higher (safer) flight altitudes (beyond the rotor-swept zone of the wind turbines) have become a mandatory requirement, technically solving the problem of distant-related observation bias. A purpose-assembled imagery system including medium-format cameras in conjunction with a dedicated geo-positioning platform delivers series of orthogonal digital images that meet the current technical requirements of authorities for surveying marine wildlife at a comparatively low cost. At a flight altitude of 425 m, a focal length of 110 mm, implemented forward motion compensation (FMC) and exposure times ranging between 1/1600 and 1/1000 s, the twin-camera system generates high quality 16 bit RGB images with a ground sampling distance (GSD) of 2 cm and an image footprint of 155 × 410 m. The image files are readily transferrable to a GIS environment for further editing, taking overlapping image areas and areas affected by glare into account. The imagery can be routinely screened by the human eye guided by purpose-programmed software to distinguish biological from non-biological signals. Each detected seabird or marine mammal signal is identified to species level or assigned to a species group and automatically saved into a geo-database for subsequent quality assurance, geo-statistical analyses and data export to third-party users. The relative size of a detected object can be accurately measured which provides key information for species-identification. During the development and testing of this system until 2015, more than 40 surveys have produced around 500.000 digital aerial images, of which some were taken in specially protected areas (SPA) of the Baltic Sea and thus include a wide range of relevant species. Here, we present the technical principles of this comparatively new survey approach and discuss the key methodological challenges related to optimizing survey design and workflow in view of the pending regulatory requirements for effective environmental impact assessments.
机译:对海洋环境的人为影响的评估受生物地理信息的可访问性,准确性和有效性挑战。海上风电场项目需要建设前,期间和之后的大规模生态调查,以评估对受保护物种的分布和丰富的潜在影响。特定于现场的人口估计的稳健性主要取决于空间覆盖范围和设计以及所应用的人口普查技术的准确性。德国标准的环境评估研究迄今为止包括空中视觉调查,以评估海上风电场对海鸟和海洋哺乳动物的潜在影响。然而,低飞行高度,所需的物种视觉分类,干扰敏感的鸟类,以及对观察者的重大安全风险。因此,基于高分辨率数字图像的空中调查,该航空调查可以在更高的(更安全)的飞行高度(超出风力涡轮机的转子扫扫区域)上已经成为强制性要求,技术上解决了遥远相关的问题观察偏见。一种目的地组装的图像系统,包括中型摄像机,与专用地理定位平台一起提供一系列正交数字图像,其符合当前当局的技术要求,用于以相对低的成本测量海洋野生动物。在425米的飞行高度,110 mm的焦距,实施前向动作补偿(FMC)和1/1600和1/1000 S之间的曝光时间,双相机系统产生高质量的16位RGB图像接地采样距离(GSD)为2厘米和155×410米的图像占地面积。图像文件易于转移到GIS环境,以进一步编辑,考虑由眩光影响的重叠图像区域和区域。通过由目的编程的软件引导的人眼可以常规筛选图像,以区分生物学来自非生物信号。每个检测到的海鸟或海洋哺乳动物信号被识别到物种级别或分配到物种组,并自动保存到地理数据库中,以进行后续质量保证,地理统计分析和数据导出到第三方用户。可以精确地测量检测到的对象的相对大小,其提供用于物种识别的关键信息。在该系统的开发和测试期间,直到2015年,超过40个调查已经产生了大约500.000个数字空中图像,其中一些是在波罗的海的特殊保护区域(SPA)中,因此包括各种相关物种。在这里,我们提出了这种相对新的调查方法的技术原则,并讨论了鉴于有效环境影响评估的待定监管要求,讨论了与优化调查设计和工作流程相关的关键方法论挑战。

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