Küsel Elizabeth T, Ratilal Purnima
Department of Electrical and Computer Engineering, Northeastern University, Boston, Massachusetts 02115, USA.
J Acoust Soc Am. 2009 Apr;125(4):1930-6. doi: 10.1121/1.3083235.
The effect of incident field refraction on the scattered field from vertically extended cylindrical targets is investigated. A theoretical model for the total scattered field from a cylindrical target in a range-dependent ocean waveguide is developed from Green's theorem. The locally scattered field on the target surface is estimated as a function of the incident field by applying the appropriate boundary conditions on continuity of acoustic pressure and normal velocity, making the model applicable to general penetrable cylinders. The model can account for depth dependence in medium sound speed and hence refraction in the incident field along the target depth. Numerical implementation is done for a passive acoustic reflector, a long cylindrical air-filled rubber hose, often deployed vertically in experiments to provide calibration and charting consistency for wide-area active sonar systems. Analysis with the model indicates that refraction in the incident field along the target depth must be taken into account to accurately estimate the scattered field level from vertically extended cylindrical targets. It is demonstrated that the standard Ingenito waveguide target scattering model, which assumes that the incident field is planar along the target extent, can lead to significant errors of 10 dB or more in estimating the scattered field level.
研究了入射场折射对垂直延伸圆柱目标散射场的影响。基于格林定理,建立了范围相关海洋波导中圆柱目标总散射场的理论模型。通过应用声压和法向速度连续性的适当边界条件,将目标表面的局部散射场估计为入射场的函数,使该模型适用于一般可穿透圆柱体。该模型可以考虑介质声速的深度依赖性,从而考虑沿目标深度的入射场折射。对一个无源声学反射器——一根长的圆柱形充气橡胶软管进行了数值模拟,该软管在实验中经常垂直部署,为广域有源声纳系统提供校准和绘图一致性。用该模型进行的分析表明,为了准确估计垂直延伸圆柱目标的散射场水平,必须考虑沿目标深度的入射场折射。结果表明,标准的英格尼托波导目标散射模型(该模型假设入射场沿目标范围是平面的)在估计散射场水平时可能会导致10 dB或更大的显著误差。