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Diffraction loss calculation based on boundary element method for an air-coupled phased array

机译:空边界相控阵基于边界元法的衍射损耗计算

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We present an efficient numerical method to analyze the diffraction loss of an ultrasonic air-coupled phased array transducer to an arbitrary located receiving aperture. The objective is the efficient calculation of diffraction loss for applications in which such an array is excited with arbitrary input signals on all channels for different beam steering angles. Available software, such as Field II, provide the pressure field in front of the phased transducer array, i.e. they assume a point source receiver. Our calculation method, however, is focused on directly calculating the diffraction loss to a given receiving aperture, such as a microphone or a receiving transducer, with arbitrary location and orientation. The boundary element method (BEM) is used for an efficient calculation. The entire model is implemented in the commercially available software package Mathematica V10 from Wolfram Research. Excellent agreement between calculation results and microphone measurements validate the approach. For future work, we will use this model for further optimizing the development of high-performance air-coupled phased array transducer designs.
机译:我们提出了一种有效的数值方法来分析超声空气耦合相控阵换能器到任意位置的接收孔径的衍射损耗。目的是针对这样的应用有效地计算衍射损耗,在这种应用中,对于不同的光束转向角,在所有通道上使用任意输入信号来激发这样的阵列。可用软件(例如Field II)在相控换能器阵列前面提供压力场,即它们假定为点源接收器。但是,我们的计算方法着眼于直接计算具有任意位置和方向的给定接收孔径(例如麦克风或接收换能器)的衍射损耗。边界元方法(BEM)用于有效的计算。整个模型在Wolfram Research的市售软件包Mathematica V10中实现。计算结果与麦克风测量结果之间的极佳一致性验证了该方法。在以后的工作中,我们将使用该模型进一步优化高性能空气耦合相控阵换能器设计的开发。

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