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首页> 外文期刊>IEEE Transactions on Signal Processing >Second-Generation Curvelets on the Sphere
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Second-Generation Curvelets on the Sphere

机译:球面上的第二代Curvelet

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Curvelets are efficient to represent highly anisotropic signal content, such as a local linear and curvilinear structure. First-generation curvelets on the sphere, however, suffered from blocking artefacts. We present a new second-generation curvelet transform, where scale-discretized curvelets are constructed directly on the sphere. Scale-discretized curvelets exhibit a parabolic scaling relation, are well localized in both spatial and harmonic domains, support the exact analysis and synthesis of both scalar and spin signals, and are free of blocking artefacts. We present fast algorithms to compute the exact curvelet transform, reducing computational complexity from O(L5) to O(L3 log2 L) for signals band limited at L. The implementation of these algorithms is made publicly available. Finally, we present an illustrative application demonstrating the effectiveness of curvelets for representing directional curve-like features in natural spherical images.
机译:Curvelet可以有效地表示高度各向异性的信号内容,例如局部线性和曲线结构。然而,球体上的第一代曲波遭受了伪像阻塞。我们提出了一种新的第二代Curvelet变换,其中比例离散的Curvelet直接在球体上构建。比例离散的曲线小波呈抛物线比例关系,在空间域和谐波域都很好地定位,支持标量和自旋信号的精确分析和合成,并且没有阻塞伪像。我们提出了快速算法来计算精确的Curvelet变换,从而将受限于L的信号频带的计算复杂度从O(L5)降低到O(L3 log2 L)。这些算法的实现已公开提供。最后,我们提出了一个说明性应用程序,该应用程序演示了Curvelet表示自然球形图像中的方向性曲线状特征的有效性。

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