Please use this identifier to cite or link to this item: https://dspace.ncfu.ru/handle/20.500.12258/13667
Title: High-performance hardware 3D medical imaging using wavelets in the residue number system
Authors: Chervyakov, N. I.
Червяков, Н. И.
Lyakhov, P. A.
Ляхов, П. А.
Nagornov, N. N.
Нагорнов, Н. Н.
Valueva, M. V.
Валуева, М. В.
Keywords: 3D image processing;Discrete wavelet transform;FPGA;Hardware implementation;Medical imaging;Parallel computing;Residue number system (RNS);Medical imaging
Issue Date: 2020
Publisher: Institute of Electrical and Electronics Engineers Inc.
Citation: Chervyakov, N.I., Lyakhov, P.A., Nagornov, N.N., Valueva, M.V., Kaplun, D.I. High-Performance Hardware 3D Medical Imaging using Wavelets in the Residue Number System // 2020 9th Mediterranean Conference on Embedded Computing, MECO 2020. - 2020. - Номер статьи 9134123
Series/Report no.: 2020 9th Mediterranean Conference on Embedded Computing, MECO 2020
Abstract: Discrete wavelet transform (DWT) is used in medical imaging to solve many problems. The practical DWT implementation requires a lot of time. We propose parallelizing computations by using the non-positional residue number system (RNS) to improve the performance of medical imaging systems. We use RNS moduli of a special type which allows us to reduce the computational complexity of the arithmetic operations used for 3D tomographic imaging. In mathematical and hardware modeling, all calculations are performed with fixed-point numbers. Hardware implementation is carried out in Xilinx Vivado 2019.2 for the target device FPGA Kintex UltraScale xcku115-flvf1924-3-e and allows to increase the performance of medical imaging devices by 1.57 - 2.70 times
URI: http://hdl.handle.net/20.500.12258/13667
Appears in Collections:Статьи, проиндексированные в SCOPUS, WOS

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