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Interpolation beamforming with a bent array

机译:插值波束形成与弯曲阵列

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An interpolation beamformer (IBF) may be defined as a line-array beamformer where the output for a given beam is formed from the weighted sum of relatively few Fourier coefficients taken from the (spatial) Fast-Fourier transform of the narrowbanddata measured across the array. Such an implementation may be computationally efficient. It is the intent of this paper to discuss the application of the method to a bent line array where the weights are chosen to offer both array shading and bendcompensation. It will be demonstrated that for reasonable amounts of array curvature the IBF has a beampattern close to the benchmark delay-and-sum beamformer and a rule-of-thumb is given for the number of weights necessary for Kaiser-Bessel shading of auniform line-array bent into a circular arc of known radius.
机译:插值波束形成器(IBF)可以被定义为线阵列波束形成器,其中给定波束的输出由来自跨越阵列测量的窄带数据的(空间)快速傅立叶变换的相对较少的傅里叶系数的加权和形成。这种实现可以是计算效率的。本文的目的是讨论该方法在弯曲线阵列中的应用,其中选择权重和弯曲代计数。将证明,对于合理量的阵列曲率,IBF具有靠近基准延迟和总比形成器的波束模式,并且拇指为kaiser-bessel阴影所需的权重次数 - 阵列弯曲成已知半径的圆弧。

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