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Investigation on underwater positioning stochastic model based on acoustic ray incidence angle

机译:基于声学射线入射角的水下定位随机模型研究

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摘要

High-precision underwater positioning requires more accurate stochastic model. The commonly used equal weight stochastic model (EWSM) cannot be effective in precise underwater positioning process under the assumption of equal-precision observation. In this paper, inaccurate stochastic model effect on the positioning precision is analyzed and a novel acoustic ray incidence angle stochastic model (IASM) is proposed by taking the ranging error and the uncorrected acoustic ray bending error into consideration to improve positioning accuracy. The performance of both EWSM and IASM involving four different forms (the general proportional form, the cosine form, the exponent form and the piecewise cosine form) is tested by the simulation and experiment. The simulation results show that positioning accuracy for underwater static objects is 0.386 m when adopting EWSM while positioning accuracy is 0.334 m, 0.196 m, 0.318 m and 0.091 m when adopting four forms of IASM respectively and sequentially. The experiment results show that the positioning accuracy can be superiorly improved from 1.187 m in EWSM scheme to 0.991 m based on IASM in piecewise cosine form. It's obvious that the novel IASM can perform better than conventional EWSM in terms of positioning accuracy according to testing results.
机译:高精度水下定位需要更准确的随机模型。常用的相等重量随机模型(EWSM)在相等精度观察的假设下,在精确的水下定位过程中不能有效。在本文中,分析了对定位精度的不准确随机模型效应,并通过考虑到提高定位精度来提出了一种新的声学光线入射角随机模型(IASM)。 EWSM和IASM的性能涉及四种不同的形式(一般比例形式,余弦形式,指数形式,指数形式和分段余弦形式)是通过模拟和实验测试的。仿真结果表明,在采用分别采用四种形式的IASM和顺序时,在采用EWSM时,水下静态物体的定位精度为0.386米。实验结果表明,基于分段余弦形式的IASM,在EWSM方案中的1.187米中,可以从1.187米到0.991m的定位精度。显而易见的是,根据测试结果,新颖的IASM可以在定位精度方面比传统EWSM更好。

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