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首页> 外文期刊>The Journal of Navigation >A TOA/AOA Underwater Acoustic Positioning System Based on the Equivalent Sound Speed
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A TOA/AOA Underwater Acoustic Positioning System Based on the Equivalent Sound Speed

机译:基于等效声速的TOA / AOA水下声定位系统

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摘要

High-precision underwater positioning must eliminate the influence of refraction artefacts. Since a Time Of Arrival - Global Navigation Satellite System Intelligent Buoys (TOA-GIB) system does not measure incident beam angles, common refraction correction methods cannot be directly used for refraction artefacts. An Equivalent Sound Speed (ESS) iteration method is proposed and is based on the transformation relations between depth, the ESS gradient and the incident beam angle. On this basis, a TOA/AOA-GIB system without a real-time Sound Speed Profile (SSP) is proposed to estimate the target position and the ESS gradient as unknown parameters. The results from a simulation experiment show that the positioning accuracy of a TOA/AOA-GIB system is better than 0.07% of water depth when the accuracy of the incident beam angle is 0.1(degrees).
机译:高精度的水下定位必须消除折射伪影的影响。由于到达时间-全球导航卫星系统智能浮标(TOA-GIB)系统无法测量入射光束角,因此普通的折射校正方法不能直接用于折射伪像。提出了一种等效声速(ESS)迭代方法,该方法基于深度,ESS梯度和入射光束角之间的转换关系。在此基础上,提出了一种不带实时声速剖面(SSP)的TOA / AOA-GIB系统,以估计目标位置和ESS梯度作为未知参数。仿真实验结果表明,入射光束角精度为0.1度时,TOA / AOA-GIB系统的定位精度优于水深的0.07%。

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