Voir la notice de l'article provenant de la source Math-Net.Ru
@article{DVMG_2024_24_1_a3, author = {M. A. Donskaya and I. P. Yarovenko}, title = {On selecting free path length sampling method for solving the non-stationary radiation transport equation using graphic accelerators}, journal = {Dalʹnevosto\v{c}nyj matemati\v{c}eskij \v{z}urnal}, pages = {33--44}, publisher = {mathdoc}, volume = {24}, number = {1}, year = {2024}, language = {ru}, url = {http://geodesic.mathdoc.fr/item/DVMG_2024_24_1_a3/} }
TY - JOUR AU - M. A. Donskaya AU - I. P. Yarovenko TI - On selecting free path length sampling method for solving the non-stationary radiation transport equation using graphic accelerators JO - Dalʹnevostočnyj matematičeskij žurnal PY - 2024 SP - 33 EP - 44 VL - 24 IS - 1 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/DVMG_2024_24_1_a3/ LA - ru ID - DVMG_2024_24_1_a3 ER -
%0 Journal Article %A M. A. Donskaya %A I. P. Yarovenko %T On selecting free path length sampling method for solving the non-stationary radiation transport equation using graphic accelerators %J Dalʹnevostočnyj matematičeskij žurnal %D 2024 %P 33-44 %V 24 %N 1 %I mathdoc %U http://geodesic.mathdoc.fr/item/DVMG_2024_24_1_a3/ %G ru %F DVMG_2024_24_1_a3
M. A. Donskaya; I. P. Yarovenko. On selecting free path length sampling method for solving the non-stationary radiation transport equation using graphic accelerators. Dalʹnevostočnyj matematičeskij žurnal, Tome 24 (2024) no. 1, pp. 33-44. http://geodesic.mathdoc.fr/item/DVMG_2024_24_1_a3/
[1] Bal G., “Inverse transport theory and applications”, Inverse Problems, 25:5 (2009), 025019 | MR
[2] Prokhorov I. V., Suschenko A. A., “Issledovanie zadachi akusticheskogo zondirovaniya morskogo dna metodami teorii perenosa izlucheniya”, Akusticheskii zhurnal, 61:3 (2015), 400–408 | DOI
[3] Anikonov D. S., Kovtanyuk A. E., Prokhorov I. V., Ispolzovanie uravneniya perenosa v tomografii, Logos, M., 2000
[4] Fano U., Spenser L., Perenos gamma izlucheniya, Gosatomizdat, M., 1963
[5] Cherchinyani K., Teoriya i prilozheniya uravneniya Boltsmana, Mir, M., 1978
[6] Budak V. P., Savenkov V. I., “O novom reshenii uravneniya perenosa izlucheniya v ramkakh malo uglovogo priblizheniya”, Tp. Mosk. energ. in-t, no. 591, 1982, 141–144
[7] Strelkov S. A., Sushkevich T. A., “Poluanaliticheskii metod resheniya uravneniya perenosa polyarizovannogo solnechnogo izlucheniya v neodnorodnoi atmosfere”, Preprinty IPM im. M. V. Keldysha, 1988, 65, M.
[8] Radiatsionnyi perenos v rasseivayuschei i pogloschayuschei atmosferakh: standartnye vychislitelnye protsedury, ed. Zh. Lenobl, Deepak Publishing, 1990
[9] Yamschikov V. M., “Analiticheskoe reshenie zadachi o perenose nemonokhromaticheskogo napravlennogo izlucheniya v rezonansno pogloschayuschei srede”, Optika i spektroskopiya, 131:5, 705–710 | DOI
[10] Marchuk G. I., Mikhailov G. A., Nazaraliev M. A., Metod Monte-Karlo v atmosfernoi optike, Nauka, Novosibirsk, 1976 | MR
[11] Sobol I. M., Chislennye metody Monte-Karlo, Nauka, M., 1973
[12] Mikhailov G. A., Medvedev I. N., Optimizatsiya vesovykh algoritmov statisticheskogo modelirovaniya, Omega Print, Novosibirsk, 2011
[13] Boreskov A. V., Kharlamov A. A., Osnovy raboty s tekhnologiei CUDA, DMK Press, M., 2010
[14] Zhukovskii M. E., Uskov R. V., “Modelirovanie vzaimodeistviya gamma-izlucheniya s veschestvom na gibridnykh vychislitelnykh sistemakh”, Matematicheskoe modelirovanie, 23:7 (2011), 20–-32 | Zbl
[15] Alerstam E., Svensson T., Andersson-Engels S., “Parallel Computing with Graphics Processing Units for High-Speed Monte Carlo Simulation of Photon Migration”, Journal of biomedical optics., 13:6 (2008), 060504 | DOI
[16] Uskov R. V., “O nekotorykh osobennostyakh primeneniya tekhnologii CUDA dlya modelirovaniya perenosa izlucheniya.”, Vestnik Moskovskogo gosudarstvennogo tekhnicheskogo universiteta im. NE Baumana. Seriya «Estestvennye nauki», 2011, no. 3, 71–83
[17] MC GPU project, Monte Carlo simulation of x-ray transport in a GPU with CUDA http://code.google.com/p/mcgpu/
[18] Periyasamy V., Pramanik M., “Advances in Monte Carlo Simulation for Light Propagation in Tissue”, IEEE Reviews in Biomedical Engineering, 2017, 1–11
[19] Russkova T., “Monte Carlo Simulation of the Solar Radiation Transfer in a Cloudy Atmosphere with the Use of Graphic Processor and NVIDIA CUDA Technology”, Atmospheric and Oceanic Optics, 31 (2018), 119–130 | DOI
[20] Chetverushkin B. N., Markov M. B., Uskov R. V., “O rasparallelivanii metoda chastits dlya gibridnogo superkompyutera”, Doklady Rossiiskoi akademii nauk. Matematika, informatika, protsessy upravleniya, 2022, no. 505, 19–23 | Zbl
[21] Fetisov, “X-ray diffraction methods for structural diagnostics of materials: progress and achievements”, Physics-Uspekhi, 63:1 (2020), 2–32 | DOI
[22] Kuznetsov V. S., Nikolaeva O. V., Bass L. P., Bykov A. V., “Modelirovanie rasprostraneniya ultrakorotkogo impulsa sveta cherez silno rasseivayuschuyu sredu”, Matematicheskoe modelirovanie, 21:4 (2009), 3–14 | MR | Zbl
[23] Prokhorov I. V., Yarovenko I. P., “Determination of the attenuation coefficient for the nonstationary radiative transfer equation”, Comput. Math. Math. Phys., 61:12 (2021), 2088–2101 | DOI | MR | Zbl
[24] Yarovenko I. P., Kazantsev I. G., “An extrapolation method for improving the linearity of CT-values in X-ray pulsed tomography”, Dalnevost. matem. zhurn., 22:2 (2022), 269–275 | Zbl
[25] Coleman W. A., “Mathematical verification of a certain Monte Carlo sampling technique to radiation transport problems”, Nucl. Sci. Eng., 32:1 (1968), 76-–81 | DOI
[26] Mikhailov G. A., Averina T. A., “Algoritm maksimalnogo secheniya v metode Monte-Karlo”, Doklady Akademii nauk, 428:2 (2009), 163–165 | Zbl
[27] Antyufeev V. S., “K obosnovaniyu modifikatsii metoda maksimalnogo secheniya”, Vychislitelnye tekhnologii, 17:2 (2012), 13–19 | MR
[28] Prokhorov I. V., Zhuplev A. S., “Ob effektivnosti metodov maksimalnogo secheniya v teorii perenosa izlucheniya”, Kompyuternye issledovaniya i modelirovanie, 5:4 (2013), 573–582