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Sequential long-baseline navigation for REMUS an autonomous underwater vehicle

机译:REMUS自主水下航行器的顺序长基线导航

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Abstract: Many of the problems of operating an AUV can be reduced to one of navigation: How accurately do you know where you are. Navigational precision determines the ability to follow track liens,the ability to map a target to world coordinates, and ultimately, even determines the areas where you are willing to operate the vehicle. This paper presents the technique used for long baseline acoustic navigation by REMUS, a low cost AUV developed by the Oceanographic Systems Laboratory of the Woods Hole Oceanographic Institution. Adapting the traditional long base line approach to this vehicle presents a complex problem because it must be low power, low cost, and small in size, and in addition must work in a shallow water environment. The REMUS system uses a single data acquisition system and DSP to interrogate and receive multiple transponders in a sequential manner. It uses spread spectrum technology which reduces the impact of multi-path in the shallow water environment. A moored pair of acoustic transponders whose coordinates are determined using differential or P-Code GPS allow the vehicle to navigate in world coordinates. The DSP minimizes the hardware requirements, thus lowering the associated hardware cost, size, and complexity. This paper describes the techniques used and provides result of this system using frequencies in the 20-30 khz band, giving a range of up to 1500 meters in water 4 meters deep, and also 10-15 khz band, giving a range of up to 7000 meters in waters 14 meters deep. !5
机译:摘要:操作AUV的许多问题可以归结为以下一种导航:您如何准确地知道自己的位置。导航精度决定了追随跟踪留置权的能力,将目标映射到世界坐标的能力,甚至最终决定了您愿意操作车辆的区域。本文介绍了REMUS用于长基线声学导航的技术,该技术是伍兹霍尔海洋研究所的海洋系统实验室开发的低成本AUV。将传统的长基线方法应用于该车辆存在一个复杂的问题,因为它必须低功耗,低成本且体积小,此外还必须在浅水环境中工作。 REMUS系统使用单个数据采集系统和DSP以顺序方式询问和接收多个应答器。它使用扩频技术,可减少多路径对浅水环境的影响。一对系泊的声学应答器,其坐标是使用差分GPS或P-Code GPS确定的,从而可以在世界坐标系中导航。 DSP将硬件要求降到最低,从而降低了相关的硬件成本,尺寸和复杂性。本文介绍了所使用的技术,并使用20-30 khz频段的频率提供了该系统的结果,在4米深的水中给出了1500米的范围,在10-15 khz频段给出了最大范围的频率。在14米深的水域中7000米。 !5

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