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首页> 外文期刊>Frontiers in Marine Science >A conceptual framework for developing the next generation of Marine OBservatories (MOBs) for science and society
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A conceptual framework for developing the next generation of Marine OBservatories (MOBs) for science and society

机译:为科学和社会开发下一代海洋观测站(MOB)的概念框架

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In the field of ocean observing, the term of ‘observatory’ is often used without a unique meaning. A clear and unified definition of observatory is needed in order to facilitate the communication in a multidisciplinary community, to capitalize on future technological innovations and to support the observatory design based on societal needs. In this paper, we present a general framework to define the next generation Marine OBservatory (MOB), its capabilities and functionalities in an operational context. The MOB structure has four components (observatory infrastructure, cyberinfrastructure, human capacity and knowledge generation engine) that are constantly and adaptively interacting with each other. Therefore, MOB is a complex infrastructure focused on a specific geographic area with the primary scope to generate knowledge via data and information thus addressing scientific, societal and economical challenges. MOB long-term sustainability, is a key feature that should be guaranteed by strategic planning that incorporates governance feedbacks. Innovations and the overall reduced-cost of equipment and operations will allow the development in quality and quantity of the MOBs globally. Thanks to the desirable MOB’s proliferation, a deeper biological understanding of the marine ecosystem should be reached thus contributing to effective conservation of ecosystems and management of humankind activities in the oceans. In sum, we provide an actionable blue-print for the upgrade and development of a sustained marine observatory producing knowledge to support science-based economical and societal decisions.
机译:在海洋观测领域,“天文台”一词常常没有独特的含义。需要对天文台进行清晰统一的定义,以便于在多学科社区中进行交流,利用未来的技术创新并支持基于社会需求的天文台设计。在本文中,我们提出了一个通用框架,用于定义下一代海洋天文台(MOB),其功能和功能。 MOB结构具有四个组成部分(天文台基础设施,网络基础设施,人员能力和知识生成引擎),它们始终不断地进行自适应交互。因此,MOB是一个专注于特定地理区域的复杂基础架构,其主要范围是通过数据和信息生成知识,从而解决了科学,社会和经济方面的挑战。 MOB的长期可持续性是一项关键功能,应通过纳入治理反馈的战略计划来保证。创新和设备与运营的总体成本降低将使全球MOB的质量和数量得到发展。由于理想的MOB的扩散,应该对海洋生态系统有了更深的生物学了解,从而有助于有效保护生态系统和管理海洋中的人类活动。总而言之,我们提供了一个可行的蓝图,用于升级和开发持续不断发展的海洋天文台,以产生知识来支持基于科学的经济和社会决策。

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