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Measurement of reflection coefficient for a double-layered scaled model using the inverse filter

机译:使用逆滤波器测量双层缩放模型的反射系数

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A method of measuring the reflection coefficient for a double-layered scaled model using the inverse filter is presented. First, the response of the circuit and underwater acoustical channel is measured, and the retransmitted inverse signal isestimated with the least square method for solving the cost function, which is constructed by the inverse filtering theory. Then, by retransmitting the inverse signal, the incident signal at the position of the double-layered scaled model is focused with high-main-lobe resolution, low side-lobelevel and a narrow pulse signal in temporal domain. The focus improves the measurement accuracy of the reflection coefficient for the double-layered scaled model in low frequencies. The feasibility of replacing the whole cylindrical with the double-layered scaled model is verified by simulation. The validity of the proposed method is verified by experiments carried out in a cylindrical tank for a double-layered scaled model at the frequency 0.5 kHz~10 kHz. The experimental results show that the proposed method is effective to the measurement of the reflection coefficient for the double-layered scaled model.The experimental results for the double-layered scaled model with acoustical coating on different shells have strongly directive significance for the process design and improvement of the acoustical coating.
机译:呈现了使用逆滤波器测量双层缩放模型的反射系数的方法。首先,测量电路和水下声道通道的响应,并利用用于解决成本函数的最小二乘法赞成的重传逆信号,该方法由逆滤波理论构成。然后,通过重新传输逆信号,双层缩放模型位置处的入射信号聚焦在时间域中的高主瓣分辨率,低侧滑动纤维和窄脉冲信号。重点提高了低频下双层缩放模型的反射系数的测量精度。通过模拟验证用双层缩放模型更换整个圆柱形的可行性。通过在圆柱形罐中进行的实验来验证所提出的方法的有效性,用于在0.5kHz〜10kHz的频率下的双层缩放模型。实验结果表明,该方法有效地对双层缩放模型的反射系数有效。不同壳体上具有声学涂层的双层缩放模型的实验结果对工艺设计具有很大的指导意义和改善声学涂层。

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