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Accurate Multiple Ocean Bottom Seismometer Positioning in Shallow Water Using GNSS/Acoustic Technique

机译:使用GNSS /声学技术在浅水中精确定位多个海底地震仪

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摘要

The Global Navigation Satellite System combined with acoustic technique has achieved great economic benefits in positioning of ocean bottom seismometers, with hundreds of underwater transponders attached to seismometers typically being deployed during oil exploration. The previous single transponder positioning method ignored the similar underwater environments between the transponders. Due to the refraction effect of sound, the technique usually showed poor positioning accuracy in shallow water when the incidence angles are large. In this paper, the effect of sound ray bending is analyzed based on the sound ray tracing method in shallow water, and a new piecewise incidence angle model is proposed to improve the positioning accuracy of multiple objects in order to estimate the sound ray bending correction. The parameters of the new model are divided into groups and estimated by sequential least squares method, together with all of the transponders. The observability analysis is discussed in simulation and testing experiments in the South China Sea. The results show that the newly proposed method is able to make full use of the acoustic observation data of hundreds of transponders to accurately estimate the SRB correction, which could also significantly improve the positioning accuracy of multiple transponders.
机译:结合声学技术的全球导航卫星系统在海底地震仪的定位方面已取得了巨大的经济利益,通常在石油勘探过程中会部署数百个与地震仪相连的水下应答器。以前的单个应答器定位方法忽略了应答器之间类似的水下环境。由于声音的折射作用,当入射角大时,该技术通常在浅水中显示出较差的定位精度。本文基于浅水声线示踪方法,分析了声线弯曲的影响,提出了一种新的分段入射角模型,以提高多个物体的定位精度,以估计声线弯曲的校正量。将新模型的参数与所有应答器一起分为几组,并通过顺序最小二乘法进行估计。在南海的模拟和测试实验中讨论了可观察性分析。结果表明,该方法能够充分利用数百个应答器的声波观测数据,准确估算出SRB校正值,从而可以显着提高多个应答器的定位精度。

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