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The new seafloor observatory (OBSEA) for remote and long-term coastal ecosystem monitoring

机译:新的海底观测站(OBsEa)用于远程和长期沿海生态系统监测

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摘要

A suitable sampling technology to identify species and to estimate population dynamics based on individual counts at different temporal levels in relation to habitat variations is increasingly important for fishery management and biodiversity studies. In the past two decades, as interest in exploring the oceans for valuable resources and in protecting these resources from overexploitation have grown, the number of cabled (permanent) submarine multiparametric platforms with video stations has increased. Prior to the development of seafloor observatories, the majority of autonomous stations were battery powered and stored data locally. The recently installed low-cost, multiparametric, expandable, cabled coastal Seafloor Observatory (OBSEA), located 4 km off of Vilanova i la Gertrú, Barcelona, at a depth of 20 m, is directly connected to a ground station by a telecommunication cable; thus, it is not affected by the limitations associated with previous observation technologies. OBSEA is part of the European Multidisciplinary Seafloor Observatory (EMSO) infrastructure, and its activities are included among the Network of Excellence of the European Seas Observatory NETwork (ESONET). OBSEA enables remote, long-term, and continuous surveys of the local ecosystem by acquiring synchronous multiparametric habitat data and bio-data with the following sensors: Conductivity-Temperature-Depth (CTD) sensors for salinity, temperature, and pressure; Acoustic Doppler Current Profilers (ADCP) for current speed and direction, including a turbidity meter and a fluorometer (for the determination of chlorophyll concentration); a hydrophone; a seismometer; and finally, a video camera for automated image analysis in relation to species classification and tracking. Images can be monitored in real time, and all data can be stored for future studies. In this article, the various components of OBSEA are described, including its hardware (the sensors and the network of marine and land nodes), software (data acquisition, transmission, processing, and storage), and multiparametric measurement (habitat and bio-data time series) capabilities. A one-month multiparametric survey of habitat parameters was conducted during 2009 and 2010 to demonstrate these functions. An automated video image analysis protocol was also developed for fish counting in the water column, a method that can be used with cabled coastal observatories working with still images. Finally, bio-data time series were coupled with data from other oceanographic sensors to demonstrate the utility of OBSEA in studies of ecosystem dynamics.
机译:对于渔业管理和生物多样性研究而言,一种合适的抽样技术,以根据不同时间水平上与栖息地变化有关的个体计数来识别物种并估算种群动态,这一点越来越重要。在过去的二十年中,随着人们对探索海洋中有价值的资源并保护这些资源免于过度开采的兴趣增加,带有视频台的有线(永久)海底多参数平台的数量增加了。在开发海底观测站之前,大多数自主站都由电池供电并在本地存储数据。最近安装的低成本,多参数,可扩展的沿海海底天文台(OBSEA)位于巴塞罗那Vilanova i laGertrú的4公里处,深度20 m,通过电信电缆直接连接到地面站;因此,它不受与以前的观测技术有关的限制的影响。 OBSEA是欧洲多学科海底天文台(EMSO)基础设施的一部分,其活动已包含在欧洲海洋天文台网络卓越网络(ESONET)中。 OBSEA通过使用以下传感器获取同步的多参数栖息地数据和生物数据,从而能够对本地生态系统进行远程,长期和连续的调查:电导率,温度,深度(CTD)盐度,温度和压力传感器;声学多普勒电流剖面仪(ADCP)用于当前速度和方向,包括浊度计和荧光计(用于确定叶绿素浓度);水听器;地震仪最后是一台用于与物种分类和跟踪相关的自动图像分析的摄像机。可以实时监视图像,并且可以存储所有数据以备将来研究。本文介绍了OBSEA的各个组成部分,包括其硬件(传感器以及海洋和陆地节点的网络),软件(数据采集,传输,处理和存储)和多参数测量(栖息地和生物数据)时间序列)功能。为了证明这些功能,2009年和2010年进行了为期一个月的栖息地参数多参数调查。还开发了一种自动视频图像分析协议,用于水柱中的鱼类计数,该方法可用于处理静止图像的有线沿海天文台。最后,生物数据时间序列与其他海洋学传感器的数据相结合,证明了OBSEA在生态系统动力学研究中的实用性。

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