Intelligent sensors — Why they are so important for future ocean observing systems

C. Waldman, J. del Río, D. Toma, T. O'Reilly, J. Pearlman
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引用次数: 3

Abstract

The complexity of installations in the oceans to carry out observations on specific processes and for detecting long-term trends have grown significantly in the past years. This applies also to the type and number of sensors that are in use in observing systems. In these days, sensors shall be compatible to different platforms that are in use like floats, gliders or moorings, and accordingly also different data acquisition systems. Facilitating the integration process in existing or newly established observing systems comes with a real benefit for the operators and is important for the broader application of different sensors. However, how to achieve the goals is under debate. The most serious obstacle for all initiatives is the willingness of stakeholders to adopt a strategy and, even more so, to adopt a specific architecture to enable interoperability across platforms and observing systems. Therefore, the situation at this point in time is characterized by the fact that parallel approaches have been developed (IEEE 1451, the OGC set of standards, etc.) that are ready to be evaluated but still lacking the support by the community. Therefore it seems to be a good time to consider and to agree on the implementation of interoperability arrangements. These and related aspects shall be discussed in this paper.
智能传感器-为什么它们对未来的海洋观测系统如此重要
在海洋中对特定过程进行观测和探测长期趋势的装置的复杂性在过去几年中已大大增加。这也适用于观测系统中使用的传感器的类型和数量。在这些日子里,传感器应该兼容不同的平台,如浮子,滑翔机或系泊,以及相应的不同的数据采集系统。促进现有或新建立的观测系统的集成过程对操作员来说是真正的好处,对于不同传感器的更广泛应用非常重要。然而,如何实现这些目标仍存在争议。对于所有计划来说,最严重的障碍是涉众愿意采用策略,甚至更愿意采用特定的体系结构来实现跨平台和观察系统的互操作性。因此,目前的情况的特点是并行方法已经开发出来(IEEE 1451、OGC标准集等),这些方法已经准备好进行评估,但仍然缺乏社区的支持。因此,现在似乎是考虑并同意互操作性安排的实现的好时机。本文将对这些及相关方面进行讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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