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Autonomous and Adaptive Underwater Plume Detection and Tracking with AUVs: Concepts, Methods, and Available Technology

机译:使用AUV的自主和适应水下羽流检测和跟踪:概念,方法和可用技术

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An autonomous underwater vehicle (AUV) equipped with environmental sensors and an on-board autonomy system can greatly increase the efficiency of environmental data collection and the synopticity of the data set collected simply by autonomously adapting its motion to changes it senses in its local environment. One application of this is tracking ocean features in an unknown ocean environment. This can be accomplished with one or multiple AUVs collaborating in near-real-time using acoustic communications. To further explore one example of this application, this paper focuses on using multiple AUVs to track underwater plumes. We evaluate various types of plumes (e.g., hydrothermal vent plumes, algal blooms, oil leaks), how each plume type may be detected and its spatial extent determined, what types of sensors can be used, and how AUVs can be employed to autonomously and adaptively track these dynamic plumes. Since AUVs vary significantly in design, mobility, deployment duration, on-board processing power, etc., it is also necessary to consider the best choice of AUV (or combination of AUVs) to track a plume. Thus, an operator/scientist's choice of AUV type(s) will likely depend the type of plume to be tracked, or vice versa. Since most underwater plumes are highly spatiotemporally dynamic, employing environmentally adaptive autonomy to track them with a fleet of AUVs is one of the most efficient ways to do so, given today's technology.
机译:的自主式水下航行器(AUV)装备有环境传感器和机载自治系统可以大大增加的环境数据收集的效率和所述数据集的由自主地调整其对改变运动其感测在其本地环境简单地收集的synopticity。这方面的一个应用是跟踪一个未知的海洋环境,海洋特色。这可以用一个或多个自动潜航器使用声通讯在近实时的协作来实现。为了进一步探索本申请的一个示例中,本文的重点使用多个水下机器人跟踪水下羽流。我们计算各种类型的羽流(例如,热液羽流,藻华,油泄漏),如何每羽流类型可以被检测和其空间范围确定,可以使用什么类型的传感器,以及如何水下机器人可自主地采用和自适应跟踪这些动态的羽毛。由于水下机器人设计中,移动性,部署持续时间,板上处理能力等显著变化,也有必要考虑AUV的跟踪羽流的最佳选择(或水下机器人的组合)。因此,操作者/科学家者选择的AUV类型可能取决于羽流的待跟踪反之亦然类型或副。由于大多数水下羽毛是高度动态的时空,采用环保自适应自主权水下机器人的船队,以跟踪它们是最有效的方式做到这一点,因为今天的技术之一。

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