Integrated Acoustic Communication and Positioning System Between an Autonomous Surface Vehicle and Autonomous Underwater Vehicles

Author:

Watanabe Yoshitaka1,Meguro Koji1,Deguchi Mitsuyasu1,Kida Yukihiro1,Shimura Takuya1

Affiliation:

1. Japan Agency for Marine-Earth Science and Technology, Yokosuka, Japan

Abstract

Abstract In underwater observation using an autonomous underwater vehicle (AUV), a support vessel typically monitors the AUV to support the observation. In order to make the AUV operation more efficient, an autonomous surface vehicle (ASV) and an acoustic multi-access communication and positioning system have developed. The developed acoustic system achieves multi-access with frequency division multiple access (FDMA) method, and the ASV can monitor up to three AUVs simultaneously. Positioning is performed with super short baseline (SSBL) method. The acoustic device has operation mode in which positioning and communication functions are integrated to achieve efficient uplink and accurate downlink simultaneously. Two observation operations were conducted successfully. In one of those, the ASV communicated with two types of AUVs during observation in 1250m water depth, then multiple access were achieved. Even nadir angle for one AUV became almost 40 degrees, the acoustic communication was performed. In another observation, two cruising AUVs were operated with a vessel and the ASV in 1500m water depth. The ASV monitored one AUV. Condition in case the device is equipped on small body of the ASV was evaluated. The communication was performed in this depth in severe condition. Furthermore integrated sequence of positioning and communication was successfully performed. Requirement in next phase, in which operation depth and number of multiple access are increased, is discussed.

Publisher

American Society of Mechanical Engineers

Cited by 6 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Development of a Basic Formation Control System for Heterogeneous Autonomous Marine Vehicles and its Sea Trials in Suruga Bay;2023 IEEE Underwater Technology (UT);2023-03-06

2. Method to Supply Acoustic Positioning and Communication Service Simultaneously for Underwater Multiple Users;2022 2nd International Conference on Computer Science, Electronic Information Engineering and Intelligent Control Technology (CEI);2022-09-23

3. Study of Underwater Acoustic Positioning and Communication Integrated System Signal;2022 7th International Conference on Intelligent Computing and Signal Processing (ICSP);2022-04-15

4. Suppression of effects of Doppler shifts of multipath signals in underwater acoustic communication;Acoustical Science and Technology;2022-01-01

5. Introduction for Underwater Acoustic Communication Technology;IEICE Communications Society Magazine;2022

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