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Micro-Ballast Dispenser for Long Endurance Underwater Mapping Platforms

机译:用于长耐久性水下测绘平台的微镇流器分配器

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The development of low cost, long endurance autonomous platforms is critical to scale our ocean monitoring capabilities. This paper describes a novel micro-ballast dispenser designed to precisely control the buoyancy of low energy seafloor mapping platforms such as the Lagrangian imaging float without the need for seawater density profiles to be known. Simulations are performed to analyse the impact of different ballast-weight design options on the energy required to maintain a fixed altitude over rugged terrains using a vertical thruster. The results show that large energy savings can be achieved by using a high-resolution buoyancy control system while maintaining fail-safe nature of drop weights. The proposed buoyancy management approach offers unique advantages for long-endurance seafloor mapping platforms.
机译:低成本的发展,长期耐力自主平台,对我们的海洋监测能力扩展至关重要。本文介绍了一种新型微镇流器分配器,设计用于精确地控制低能量海底映射平台的浮力,例如拉格朗日成像浮子,而不需要已知海水密度轮廓。进行模拟以分析不同镇流器重量设计选项对使用垂直推进器在坚固的地形上维持固定高度所需的能量的影响。结果表明,通过使用高分辨率浮力控制系统可以实现大的节能,同时保持滴重的故障安全性。拟议的浮力管理方法为长期耐久的海底测绘平台提供独特的优势。

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