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Prasit Cholamjiak
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Journal Articles
- 2025
- [j38]Prasit Cholamjiak, Zhongbing Xie, Min Li, Papinwich Paimsang:
Double inertial subgradient extragradient algorithm for solving equilibrium problems and common fixed point problems with application to image restoration. J. Comput. Appl. Math. 460: 116396 (2025) - 2024
- [j37]Min Li, Zhongbing Xie, Prasit Cholamjiak, Kunrada Kankam:
Inertial iterative method for solving equilibrium problems and fixed point problems. Comput. Appl. Math. 43(1): 73 (2024) - [j36]Min Li, Chuan Qin, Prasit Cholamjiak, Papatsara Inkrong:
Projection-type method with line-search process for solving variational inequalities. Int. J. Comput. Math. 101(2): 154-169 (2024) - [j35]Xiaolin Zhou, Gang Cai, Prasit Cholamjiak, Suparat Kesornprom:
A generalized proximal point algorithm with new step size update for solving monotone variational inequalities in real Hilbert spaces. J. Comput. Appl. Math. 438: 115518 (2024) - [j34]Austine Efut Ofem, Akindele Adebayo Mebawondu, Godwin Chidi Ugwunnadi, Prasit Cholamjiak, Ojen Kumar Narain:
Relaxed Tseng splitting method with double inertial steps for solving monotone inclusions and fixed point problems. Numer. Algorithms 96(4): 1465-1498 (2024) - [j33]Duong Viet Thong, Simeon Reich, Prasit Cholamjiak, Le Dinh Long:
Iterative methods for solving monotone variational inclusions without prior knowledge of the Lipschitz constant of the single-valued operator. Numer. Algorithms 97(3): 1267-1300 (2024) - 2023
- [j32]Suthep Suantai, Papatsara Inkrong, Prasit Cholamjiak:
Forward-backward-forward algorithms involving two inertial terms for monotone inclusions. Comput. Appl. Math. 42(6): 255 (2023) - [j31]Bing Tan, Pongsakorn Sunthrayuth, Prasit Cholamjiak, Yeol Je Cho:
Modified inertial extragradient methods for finding minimum-norm solution of the variational inequality problem with applications to optimal control problem. Int. J. Comput. Math. 100(3): 525-545 (2023) - 2022
- [j30]Lateef Olakunle Jolaoso, Pongsakorn Sunthrayuth, Prasit Cholamjiak, Yeol Je Cho:
Analysis of two versions of relaxed inertial algorithms with Bregman divergences for solving variational inequalities. Comput. Appl. Math. 41(7) (2022) - [j29]Suparat Kesornprom, Prasit Cholamjiak, Choonkil Park:
New proximal type algorithms for convex minimization and its application to image deblurring. Comput. Appl. Math. 41(7) (2022) - [j28]Duong Viet Thong, Prasit Cholamjiak, Nattawut Pholasa, Vu Tien Dung, Luong Van Long:
A new modified forward-backward-forward algorithm for solving inclusion problems. Comput. Appl. Math. 41(8) (2022) - [j27]Kunrada Kankam, Watcharaporn Cholamjiak, Prasit Cholamjiak:
Convergence Analysis of a Modified Forward-Backward Splitting Algorithm for Minimization and Application to Image Recovery. Comput. Math. Methods 2022: 1-9 (2022) - [j26]Pongsakorn Sunthrayuth, Lateef Olakunle Jolaoso, Prasit Cholamjiak:
New Bregman projection methods for solving pseudo-monotone variational inequality problem. J. Appl. Math. Comput. 68(3): 1565-1589 (2022) - [j25]Duong Viet Thong, Prasit Cholamjiak, Michael Th. Rassias, Yeol Je Cho:
Strong convergence of inertial subgradient extragradient algorithm for solving pseudomonotone equilibrium problems. Optim. Lett. 16(2): 545-573 (2022) - [j24]Suthep Suantai, Bancha Panyanak, Suparat Kesornprom, Prasit Cholamjiak:
Inertial projection and contraction methods for split feasibility problem applied to compressed sensing and image restoration. Optim. Lett. 16(6): 1725-1744 (2022) - 2021
- [j23]Suthep Suantai, Kunrada Kankam, Prasit Cholamjiak, Watcharaporn Cholamjiak:
A parallel monotone hybrid algorithm for a finite family of $$G-$$nonexpansive mappings in Hilbert spaces endowed with a graph applicable in signal recovery. Comput. Appl. Math. 40(4) (2021) - [j22]Prasit Cholamjiak, Dang Van Hieu, Yeol Je Cho:
Relaxed Forward-Backward Splitting Methods for Solving Variational Inclusions and Applications. J. Sci. Comput. 88(3): 85 (2021) - [j21]Simeon Reich, Duong Viet Thong, Prasit Cholamjiak, Luong Van Long:
Inertial projection-type methods for solving pseudomonotone variational inequality problems in Hilbert space. Numer. Algorithms 88(2): 813-835 (2021) - 2020
- [j20]Wiyada Kumam, Nuttapol Pakkaranang, Poom Kumam, Prasit Cholamjiak:
Convergence analysis of modified Picard-S hybrid iterative algorithms for total asymptotically nonexpansive mappings in Hadamard spaces. Int. J. Comput. Math. 97(1-2): 175-188 (2020) - [j19]Suparat Kesornprom, Nattawut Pholasa, Prasit Cholamjiak:
On the convergence analysis of the gradient-CQ algorithms for the split feasibility problem. Numer. Algorithms 84(3): 997-1017 (2020) - 2019
- [j18]Prasit Cholamjiak, Suthep Suantai, Pongsakorn Sunthrayuth:
An iterative method with residual vectors for solving the fixed point and the split inclusion problems in Banach spaces. Comput. Appl. Math. 38(1) (2019) - [j17]Duong Viet Thong, Prasit Cholamjiak:
Strong convergence of a forward-backward splitting method with a new step size for solving monotone inclusions. Comput. Appl. Math. 38(2) (2019) - [j16]Suthep Suantai, Yekini Shehu, Prasit Cholamjiak:
Nonlinear iterative methods for solving the split common null point problem in Banach spaces. Optim. Methods Softw. 34(4): 853-874 (2019) - 2018
- [j15]Pongsakorn Sunthrayuth, Prasit Cholamjiak:
Iterative methods for solving quasi-variational inclusion and fixed point problem in q-uniformly smooth Banach spaces. Numer. Algorithms 78(4): 1019-1044 (2018) - 2017
- [j14]Raweerote Suparatulatorn, Prasit Cholamjiak, Suthep Suantai:
On solving the minimization problem and the fixed-point problem for nonexpansive mappings in CAT(0) spaces. Optim. Methods Softw. 32(1): 182-192 (2017) - 2016
- [j13]Prasit Cholamjiak:
A generalized forward-backward splitting method for solving quasi inclusion problems in Banach spaces. Numer. Algorithms 71(4): 915-932 (2016) - 2015
- [j12]Prasit Cholamjiak:
The modified proximal point algorithm in CAT(0) spaces. Optim. Lett. 9(7): 1401-1410 (2015) - 2013
- [j11]Prasit Cholamjiak, Suthep Suantai:
Iterative methods for solving equilibrium problems, variational inequalities and fixed points of nonexpansive semigroups. J. Glob. Optim. 57(4): 1277-1297 (2013) - 2012
- [j10]Suthep Suantai, Watcharaporn Cholamjiak, Prasit Cholamjiak:
An implicit iteration process for solving a fixed point problem of a finite family of multi-valued mappings in Banach spaces. Appl. Math. Lett. 25(11): 1656-1660 (2012) - [j9]Suthep Suantai, Yeol Je Cho, Prasit Cholamjiak:
Halpern's iteration for Bregman strongly nonexpansive mappings in reflexive Banach spaces. Comput. Math. Appl. 64(4): 489-499 (2012) - [j8]Prasit Cholamjiak, Suthep Suantai, Yeol Je Cho:
Strong Convergence to Solutions of Generalized Mixed Equilibrium Problems with Applications. J. Appl. Math. 2012: 308791:1-308791:18 (2012) - [j7]Kamonrat Nammanee, Suthep Suantai, Prasit Cholamjiak:
A General Iterative Method for a Nonexpansive Semigroup in Banach Spaces with Gauge Functions. J. Appl. Math. 2012: 506976:1-506976:14 (2012) - [j6]Kamonrat Nammanee, Suthep Suantai, Prasit Cholamjiak:
Convergence Theorems for Maximal Monotone Operators, Weak Relatively Nonexpansive Mappings and Equilibrium Problems. J. Appl. Math. 2012: 804538:1-804538:16 (2012) - [j5]Prasit Cholamjiak, Suthep Suantai:
A hybrid method for a family of relatively quasi-nonexpansive mappings and an equilibrium problem in Banach spaces. J. Glob. Optim. 54(1): 83-100 (2012) - [j4]Prasit Cholamjiak, Suthep Suantai:
Viscosity approximation methods for a nonexpansive semigroup in Banach spaces with gauge functions. J. Glob. Optim. 54(1): 185-197 (2012) - 2011
- [j3]Prasit Cholamjiak, Suthep Suantai:
Existence and iteration for a mixed equilibrium problem and a countable family of nonexpansive mappings in Banach spaces. Comput. Math. Appl. 61(9): 2725-2733 (2011) - [j2]Prasit Cholamjiak, Suthep Suantai:
Strong convergence for a countable family of strict pseudocontractions in q-uniformly smooth Banach spaces. Comput. Math. Appl. 62(2): 787-796 (2011) - 2010
- [j1]Prasit Cholamjiak, Suthep Suantai:
An iterative method for equilibrium problems and a finite family of relatively nonexpansive mappings in a Banach space. Appl. Math. Comput. 217(8): 3825-3831 (2010)
Coauthor Index
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