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Vector-Phase Characteristics of Acoustic Fields: Statistical Analysis and Measurement Algorithms

机译:声场的矢量相位特性:统计分析和测量算法

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摘要

Statistical characteristics of an acoustic field that are based on the data of simultaneous measurements of pressure and acoustic velocity vector are investigated. Conditions of the formation of vector-phase characteristics of acoustic field are formulated in relation to the dispersion properties of the medium. Cross-correlation functions of the components of the vector field are presented. Expressions for the characteristic functionals of vector-phase relationships in acoustic fields and, in particular, for the acoustic energy flux are derived with the use of functional methods. Algorithms of space-time processing of the energy flux vector and the optimum measurement algorithm for a Gaussian vector-phase field are considered. The signal-to-noise ratio is determined as the quality index of vector reception algorithms, and its relation to the corresponding parameter of scalar pressure field measurements is revealed. Indices of relative efficiency of vector algorithms are determined depending on the dispersion characteristics of the medium (the flux algorithm) and the dimension of the input vector of observations (the optimum algorithm).
机译:研究了基于压力和声速矢量同时测量数据的声场统计特性。相对于介质的色散特性,公式化了形成声场矢量相位特性的条件。提出了矢量场分量的互相关函数。使用函数方法可以得出声场中矢量相位关系的特征函数,尤其是声能通量的表达式。考虑了能量通量矢量的时空处理算法和高斯矢量相场的最佳测量算法。确定信噪比作为矢量接收算法的质量指标,并揭示其与标量压力场测量的相应参数的关系。向量算法的相对效率指标取决于介质的分散特性(通量算法)和观测值输入向量的大小(最佳算法)。

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