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A Fast Method to Calculate the Spatial Impulse Response for 1-D Linear Ultrasonic Phased Array Transducers

机译:一维线性超声相控阵换能器空间脉冲响应的快速计算方法

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A method is developed to accurately determine the spatial impulse response at the specifically discretized observation points in the radiated field of 1-D linear ultrasonic phased array transducers with great efficiency. In contrast, the previously adopted solutions only optimize the calculation procedure for a single rectangular transducer and required approximation considerations or nonlinear calculation. In this research, an algorithm that follows an alternative approach to expedite the calculation of the spatial impulse response of a rectangular linear array is presented. The key assumption for this algorithm is that the transducer apertures are identical and linearly distributed on an infinite rigid plane baffled with the same pitch. Two points in the observation field, which have the same position relative to two transducer apertures, share the same spatial impulse response that contributed from corresponding transducer, respectively. The observation field is discretized specifically to meet the relationship of equality. The analytical expressions of the proposed algorithm, based on the specific selection of the observation points, are derived to remove redundant calculations. In order to measure the proposed methodology, the simulation results obtained from the proposed method and the classical summation method are compared. The outcomes demonstrate that the proposed strategy can speed up the calculation procedure since it accelerates the speed-up ratio which relies upon the number of discrete points and the number of the array transducers. This development will be valuable in the development of advanced and faster linear ultrasonic phased array systems.
机译:开发了一种方法,可以高效地精确确定一维线性超声相控阵换能器辐射场中特定离散观测点的空间脉冲响应。相反,先前采用的解决方案仅优化了单个矩形换能器的计算程序,并且需要进行近似考虑或进行非线性计算。在这项研究中,提出了一种算法,该算法遵循另一种方法来加快矩形线性阵列的空间脉冲响应的计算。该算法的关键假设是换能器孔径是相同的,并且线性地分布在以相同节距折曲的无限刚性平面上。相对于两个换能器孔的位置相同的观测场中的两个点分别共享由相应换能器贡献的相同空间脉冲响应。观察场专门离散化以满足平等关系。基于观察点的特定选择,提出的算法的解析表达式被导出以去除多余的计算。为了测量所提出的方法,比较了从所提出的方法和经典求和方法获得的仿真结果。结果表明,所提出的策略可以加快计算过程,因为它可以加快加速比,该加速比取决于离散点的数量和阵列换能器的数量。该开发对先进和更快的线性超声相控阵系统的开发将是有价值的。

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