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A Novel Image Compression Algorithm Based on the Biorthogonal Invariant Set Multiwavelet

机译:一种基于双正交不变集多小波的新型图像压缩算法

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On the basis of the theory of the biorthogonal invariant set multiwavelets (BISM) which is established by Micchelli and Xu, a biorthogonal invariant set multi-wavelets (BISM) filter is designed and the algorithms of decomposition and reconstruction of this filter are given in this paper, and it has many characteristics, such as symmetry, compact support, orthogonality and low complexity. In this filter, the self-affine triangle domain is as support interval, and constant function is as scaling function. Advantages such as low algorithm complexity, the energy and entropy in high concentration after transformation, no blocking effect to facilitate parallel computing are analyzed when the biorthogonal invariant sets multiwavelet (BISM) filters are used image compression. Finally, the validity of image compression algorithm based on biorthogonal invariant set multiwavelet is verified by the approximate JPEG2000 framework.
机译:基于由Micchelli和Xu建立的双正交不变集多小波(BISM)的理论,设计了双正交不变集多小波(Bism)滤波器,并给出了该滤波器的分解算法和改造纸张,它具有许多特征,如对称性,紧凑的支撑,正交性和低复杂性。在该过滤器中,自助式三角形域作为支撑间隔,恒定函数是缩放功能。当双正交不变集多小波(BISM)滤波器使用图像压缩时,在转换后,诸如低算法复杂性,能量和熵的高浓度的能量和熵在转换后的高浓度,不能促进平行计算。最后,通过近似JPEG2000框架验证了基于双正交不变集多小波的图像压缩算法的有效性。

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