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Geometrical Multiresolution Adaptive Transforms

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Geometrical Multiresolution Adaptive Transforms
Lowest price (incl. delivery)
7 174,00 JPY
Typical price527,31 PLN
Lowest (90 days)35,99 PLN
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2026-08-08 2026-08-15
Riwayat Harga
Diperbarui PadaHarga
2026-08-0839,99
2026-08-1435,99
2026-08-1551,99
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SP SpringerNatureLink Shop INT 7 149,00 JPY 25,00 JPY 7 174,00 JPY Tersedia 6 hari yang lalu View offer
SP Springer Nature Author 7 149,00 JPY 29,00 JPY 7 178,00 JPY Tersedia 1 minggu yang lalu View offer
SP SpringerNatureLink Shop INT 49,99 USD 29,00 USD 78,99 USD Tersedia 6 hari yang lalu View offer
SP SpringerNatureLink Shop INT 54,99 USD free 54,99 USD Tersedia 6 hari yang lalu View offer
SP SpringerNatureLink Shop INT 54,99 USD 19,00 USD 73,99 USD Tersedia 6 hari yang lalu View offer
SP SpringerNatureLink Shop INT 59,00 EUR 29,00 EUR 88,00 EUR Tersedia 6 hari yang lalu View offer

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Modern image processing techniques are based on multiresolution geometrical methods of image representation. These methods are efficient in sparse approximation of digital images. There is a wide family of functions called simply ‘X-lets’, and these methods can be divided into two groups: the adaptive and the nonadaptive. This book is devoted to the adaptive methods of image approximation, especially to multismoothlets. Besides multismoothlets, several other new ideas are also covered. Current literature considers the black and white images with smooth horizon function as the model for sparse approximation but here, the class of blurred multihorizon is introduced, which is then used in the approximation of images with multiedges. Additionally, the semi-anisotropic model of multiedge representation, the introduction of the shift invariant multismoothlet transform and sliding multismoothlets are also covered. Geometrical Multiresolution Adaptive Transforms should be accessible to both mathematicians and computer scientists. It is suitable as a professional reference for students, researchers and engineers, containing many open problems and will be an excellent starting point for those who are beginning new research in the area or who want to use geometrical multiresolution adaptive methods in image processing, analysis or compression.

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