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A Low-cost Electromagnetic Docking Guidance System for Micro Autonomous Underwater Vehicles

机译:微型自动水下航行器的低成本电磁对接制导系统

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摘要

As important observational platforms for the Smart Ocean concept, autonomous underwater vehicles (AUVs) that perform long-term observation in fleets are beneficial because they provide large-scale sampling data with a sufficient spatiotemporal resolution. Therefore, a large number of low-cost micro AUVs with docking capability for power recharge and data transmission are essential. This study designed a low-cost electromagnetic docking guidance (EMDG) system for micro AUVs. The EMDG system is composed of a transmitter coil located on the dock and a three-axial search coil magnetometer acting as a receiver. The search coil magnetometer was optimized for small sizes while maintaining sufficient sensitivity. The signal conditioning and processing subsystem was designed to calculate the deflection angle (β) for docking guidance. Underwater docking tests showed that the system can detect the electromagnetic signal and successfully guide AUV docking. The AUV can still perform docking in extreme positions, which cannot be realized through normal optical or acoustic guidance. This study is the first to focus on the EM guidance system for low-cost micro AUVs. The search coil sensor in the AUV is inexpensive and compact so that the system can be equipped on a wide range of AUVs.
机译:作为智能海洋概念的重要观测平台,在船队中进行长期观测的自动水下航行器(AUV)很有用,因为它们提供了具有足够时空分辨率的大规模采样数据。因此,大量具有对接功能的低成本微型AUV对电源充电和数据传输至关重要。这项研究设计了一种用于微型AUV的低成本电磁对接制导(EMDG)系统。 EMDG系统由位于基座上的发射器线圈和充当接收器的三轴搜索线圈磁力计组成。搜索线圈磁力计针对小尺寸进行了优化,同时保持足够的灵敏度。信号调理和处理子系统设计用于计算对接引导的偏转角(β)。水下对接测试表明,该系统可以检测电磁信号并成功引导AUV对接。 AUV仍可以在极端位置执行对接,这是无法通过正常的光学或声音引导实现的。这项研究是第一个专注于低成本微型AUV的EM引导系统的研究。 AUV中的搜索线圈传感器既便宜又紧凑,因此该系统可以安装在各种AUV上。

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