Luo, Hao Accelerated differential inclusion for convex optimization. (English) Zbl 07686549 Optimization 72, No. 5, 1139-1170 (2023). MSC: 90Cxx 49-XX PDF BibTeX XML Cite \textit{H. Luo}, Optimization 72, No. 5, 1139--1170 (2023; Zbl 07686549) Full Text: DOI arXiv OpenURL
Condat, Laurent; Kitahara, Daichi; Contreras, Andrés; Hirabayashi, Akira Proximal splitting algorithms for convex optimization: a tour of recent advances, with new twists. (English) Zbl 07683988 SIAM Rev. 65, No. 2, 375-435 (2023). MSC: 90C25 90C30 90C06 47J25 47J26 68W15 65K05 PDF BibTeX XML Cite \textit{L. Condat} et al., SIAM Rev. 65, No. 2, 375--435 (2023; Zbl 07683988) Full Text: DOI arXiv OpenURL
Khatibzadeh, Hadi; Moosavi, Maryam Two proximal splitting methods in Hadamard spaces. (English) Zbl 07681631 Appl. Anal. 102, No. 2, 635-650 (2023). MSC: 90C25 90C48 65K10 PDF BibTeX XML Cite \textit{H. Khatibzadeh} and \textit{M. Moosavi}, Appl. Anal. 102, No. 2, 635--650 (2023; Zbl 07681631) Full Text: DOI OpenURL
Rockafellar, R. Tyrrell Convergence of augmented Lagrangian methods in extensions beyond nonlinear programming. (English) Zbl 07681257 Math. Program. 199, No. 1-2 (A), 375-420 (2023). MSC: 65K10 90C26 49M29 PDF BibTeX XML Cite \textit{R. T. Rockafellar}, Math. Program. 199, No. 1--2 (A), 375--420 (2023; Zbl 07681257) Full Text: DOI OpenURL
Gao, Ying; Zhang, Wenxing An alternative extrapolation scheme of PDHGM for saddle point problem with nonlinear function. (English) Zbl 07680910 Comput. Optim. Appl. 85, No. 1, 263-291 (2023). MSC: 90Cxx PDF BibTeX XML Cite \textit{Y. Gao} and \textit{W. Zhang}, Comput. Optim. Appl. 85, No. 1, 263--291 (2023; Zbl 07680910) Full Text: DOI OpenURL
Chu, Hong T. M.; Liang, Ling; Toh, Kim-Chuan; Yang, Lei An efficient implementable inexact entropic proximal point algorithm for a class of linear programming problems. (English) Zbl 07680905 Comput. Optim. Appl. 85, No. 1, 107-146 (2023). MSC: 90Cxx PDF BibTeX XML Cite \textit{H. T. M. Chu} et al., Comput. Optim. Appl. 85, No. 1, 107--146 (2023; Zbl 07680905) Full Text: DOI arXiv OpenURL
Xu, Shengjie A dual-primal balanced augmented Lagrangian method for linearly constrained convex programming. (English) Zbl 07676694 J. Appl. Math. Comput. 69, No. 1, 1015-1035 (2023). MSC: 90C25 90C06 65K05 PDF BibTeX XML Cite \textit{S. Xu}, J. Appl. Math. Comput. 69, No. 1, 1015--1035 (2023; Zbl 07676694) Full Text: DOI arXiv OpenURL
Ouyang, Hui Weak and strong convergence of generalized proximal point algorithms with relaxed parameters. (English) Zbl 07671629 J. Glob. Optim. 85, No. 4, 969-1002 (2023). MSC: 65J15 47J25 47H05 90C25 90C30 PDF BibTeX XML Cite \textit{H. Ouyang}, J. Glob. Optim. 85, No. 4, 969--1002 (2023; Zbl 07671629) Full Text: DOI arXiv OpenURL
Zhang, Binbin; Zhou, Chang; Zhu, Jiangxing Convergence analysis of the generalized Douglas-Rachford splitting method under Hölder subregularity assumptions. (English) Zbl 07668956 J. Ind. Manag. Optim. 19, No. 7, 5060-5077 (2023). MSC: 65K05 90C25 47H05 47J25 PDF BibTeX XML Cite \textit{B. Zhang} et al., J. Ind. Manag. Optim. 19, No. 7, 5060--5077 (2023; Zbl 07668956) Full Text: DOI OpenURL
Gu, Guoyong; Yang, Junfeng A unified and tight linear convergence analysis of the relaxed proximal point algorithm. (English) Zbl 07668901 J. Ind. Manag. Optim. 19, No. 5, 3742-3749 (2023). MSC: 65K10 90C25 PDF BibTeX XML Cite \textit{G. Gu} and \textit{J. Yang}, J. Ind. Manag. Optim. 19, No. 5, 3742--3749 (2023; Zbl 07668901) Full Text: DOI arXiv OpenURL
Izuchukwu, Chinedu; Reich, Simeon; Shehu, Yekini Relaxed inertial methods for solving the split monotone variational inclusion problem beyond co-coerciveness. (English) Zbl 07661013 Optimization 72, No. 2, 607-646 (2023). MSC: 47H09 47H10 49J20 49J40 PDF BibTeX XML Cite \textit{C. Izuchukwu} et al., Optimization 72, No. 2, 607--646 (2023; Zbl 07661013) Full Text: DOI OpenURL
You, Yanfei; Jiang, Suhong Improved Lagrangian-PPA based prediction correction method for linearly constrained convex optimization. (English) Zbl 07599064 J. Ind. Manag. Optim. 19, No. 1, 56-68 (2023). MSC: 90C25 90C30 65K05 65K10 PDF BibTeX XML Cite \textit{Y. You} and \textit{S. Jiang}, J. Ind. Manag. Optim. 19, No. 1, 56--68 (2023; Zbl 07599064) Full Text: DOI OpenURL
Abass, H. A.; Cholamjiak, P.; Izuchukwu, C.; Jolaoso, L. O.; Narain, O. K. Convergence analysis for products of resolvents of convex functions and multivalued \(k\)-strictly pseudononspreading mappings in Hadamard spaces. (English) Zbl 07644618 Linear Nonlinear Anal. 8, No. 2, 163-184 (2022). MSC: 47H06 47H09 47J05 47J25 PDF BibTeX XML Cite \textit{H. A. Abass} et al., Linear Nonlinear Anal. 8, No. 2, 163--184 (2022; Zbl 07644618) Full Text: Link OpenURL
Alves, M. Marques Variants of the A-HPE and large-step A-HPE algorithms for strongly convex problems with applications to accelerated high-order tensor methods. (English) Zbl 07634908 Optim. Methods Softw. 37, No. 6, 2021-2051 (2022). MSC: 90C60 90C25 47H05 65K10 PDF BibTeX XML Cite \textit{M. M. Alves}, Optim. Methods Softw. 37, No. 6, 2021--2051 (2022; Zbl 07634908) Full Text: DOI arXiv OpenURL
Zhang, Siliang; Chen, Yunxiao Computation for latent variable model estimation: a unified stochastic proximal framework. (English) Zbl 1499.62441 Psychometrika 87, No. 4, 1473-1502 (2022). MSC: 62P15 62F10 62H25 62L20 PDF BibTeX XML Cite \textit{S. Zhang} and \textit{Y. Chen}, Psychometrika 87, No. 4, 1473--1502 (2022; Zbl 1499.62441) Full Text: DOI arXiv OpenURL
Sipoş, Andrei Revisiting jointly firmly nonexpansive families of mappings. (English) Zbl 1507.90132 Optimization 71, No. 13, 3819-3834 (2022). MSC: 90C25 46N10 47J25 47H09 03F10 PDF BibTeX XML Cite \textit{A. Sipoş}, Optimization 71, No. 13, 3819--3834 (2022; Zbl 1507.90132) Full Text: DOI arXiv OpenURL
Balooee, Javad; Postolache, Mihai; Yao, Yonghong System of generalized nonlinear variational-like inequalities and nearly asymptotically nonexpansive mappings: graph convergence and fixed point problems. (English) Zbl 1504.47095 Ann. Funct. Anal. 13, No. 4, Paper No. 68, 44 p. (2022). MSC: 47J25 47H09 47J20 PDF BibTeX XML Cite \textit{J. Balooee} et al., Ann. Funct. Anal. 13, No. 4, Paper No. 68, 44 p. (2022; Zbl 1504.47095) Full Text: DOI OpenURL
Iyiola, Olaniyi S.; Shehu, Yekini Convergence results of two-step inertial proximal point algorithm. (English) Zbl 1504.90198 Appl. Numer. Math. 182, 57-75 (2022). MSC: 90C48 90C51 PDF BibTeX XML Cite \textit{O. S. Iyiola} and \textit{Y. Shehu}, Appl. Numer. Math. 182, 57--75 (2022; Zbl 1504.90198) Full Text: DOI arXiv OpenURL
Ndlovu, P. V.; Jolaoso, L. O.; Aphane, Maggie Strong convergence theorem for finding a common solution of convex minimization and fixed point problems in \(\mathrm{CAT}(0)\) spaces. (English) Zbl 1503.47094 Abstr. Appl. Anal. 2022, Article ID 2960135, 11 p. (2022). MSC: 47J25 54H25 54E50 PDF BibTeX XML Cite \textit{P. V. Ndlovu} et al., Abstr. Appl. Anal. 2022, Article ID 2960135, 11 p. (2022; Zbl 1503.47094) Full Text: DOI OpenURL
Tabrizian, Amir Hamzeh Alizadeh; Bidabadi, Narges A new boosted proximal point algorithm for minimizing nonsmooth DC functions. (English) Zbl 1498.90172 Numer. Funct. Anal. Optim. 43, No. 12, 1459-1483 (2022). MSC: 90C26 90C48 PDF BibTeX XML Cite \textit{A. H. A. Tabrizian} and \textit{N. Bidabadi}, Numer. Funct. Anal. Optim. 43, No. 12, 1459--1483 (2022; Zbl 1498.90172) Full Text: DOI OpenURL
Wang, Kai; Han, Deren On the linear convergence of the general first order primal-dual algorithm. (English) Zbl 07574140 J. Ind. Manag. Optim. 18, No. 5, 3749-3770 (2022). MSC: 90C47 90C33 65K05 PDF BibTeX XML Cite \textit{K. Wang} and \textit{D. Han}, J. Ind. Manag. Optim. 18, No. 5, 3749--3770 (2022; Zbl 07574140) Full Text: DOI OpenURL
Sipoş, Andrei Abstract strongly convergent variants of the proximal point algorithm. (English) Zbl 1496.90061 Comput. Optim. Appl. 83, No. 1, 349-380 (2022). MSC: 90C25 46N10 47J25 47H09 03F10 PDF BibTeX XML Cite \textit{A. Sipoş}, Comput. Optim. Appl. 83, No. 1, 349--380 (2022; Zbl 1496.90061) Full Text: DOI arXiv OpenURL
Lindstrom, Scott B. The projected polar proximal point algorithm converges globally. (English) Zbl 1492.90128 J. Glob. Optim. 84, No. 1, 177-203 (2022). MSC: 90C25 90C15 PDF BibTeX XML Cite \textit{S. B. Lindstrom}, J. Glob. Optim. 84, No. 1, 177--203 (2022; Zbl 1492.90128) Full Text: DOI arXiv OpenURL
Yang, Lei; Toh, Kim-Chuan Bregman proximal point algorithm revisited: a new inexact version and its inertial variant. (English) Zbl 1496.90108 SIAM J. Optim. 32, No. 3, 1523-1554 (2022). MSC: 90C46 49K35 90C30 65K05 PDF BibTeX XML Cite \textit{L. Yang} and \textit{K.-C. Toh}, SIAM J. Optim. 32, No. 3, 1523--1554 (2022; Zbl 1496.90108) Full Text: DOI arXiv OpenURL
Maingé, Paul-Emile Fast convergence of generalized forward-backward algorithms for structured monotone inclusions. (English) Zbl 1496.90058 J. Convex Anal. 29, No. 3, 893-920 (2022). MSC: 90C25 90C30 90C60 68Q25 49M25 PDF BibTeX XML Cite \textit{P.-E. Maingé}, J. Convex Anal. 29, No. 3, 893--920 (2022; Zbl 1496.90058) Full Text: arXiv Link OpenURL
Guo, Ke; Zhu, Chunrong On the linear convergence of a Bregman proximal point algorithm. (English) Zbl 1493.65107 J. Nonlinear Var. Anal. 6, No. 2, 5-14 (2022). MSC: 65K05 90C25 PDF BibTeX XML Cite \textit{K. Guo} and \textit{C. Zhu}, J. Nonlinear Var. Anal. 6, No. 2, 5--14 (2022; Zbl 1493.65107) Full Text: DOI OpenURL
Li, Qingjing; Guo, Ke On a new analysis framework for the linear convergence of relaxed operator splitting methods. (English) Zbl 1498.47129 J. Math. Res. Appl. 42, No. 2, 199-205 (2022). MSC: 47J25 47H05 47H09 PDF BibTeX XML Cite \textit{Q. Li} and \textit{K. Guo}, J. Math. Res. Appl. 42, No. 2, 199--205 (2022; Zbl 1498.47129) Full Text: DOI OpenURL
Lin, Meixia; Sun, Defeng; Toh, Kim-Chuan An augmented Lagrangian method with constraint generation for shape-constrained convex regression problems. (English) Zbl 1489.90060 Math. Program. Comput. 14, No. 2, 223-270 (2022). MSC: 90C06 90C25 90C90 PDF BibTeX XML Cite \textit{M. Lin} et al., Math. Program. Comput. 14, No. 2, 223--270 (2022; Zbl 1489.90060) Full Text: DOI arXiv OpenURL
Ranjbar, Sajad Approximating a solution of the inclusion problem for an infinite family of monotone operators in Hadamard spaces and its applications. (English) Zbl 07530316 Numer. Funct. Anal. Optim. 43, No. 4, 412-429 (2022). MSC: 47H09 47H10 47H05 47J05 PDF BibTeX XML Cite \textit{S. Ranjbar}, Numer. Funct. Anal. Optim. 43, No. 4, 412--429 (2022; Zbl 07530316) Full Text: DOI OpenURL
Shen, Yuan; Zuo, Yannian; Sun, Liming; Zhang, Xiayang Modified proximal symmetric ADMMs for multi-block separable convex optimization with linear constraints. (English) Zbl 1492.90130 Anal. Appl., Singap. 20, No. 3, 401-428 (2022). MSC: 90C25 65K05 94A08 PDF BibTeX XML Cite \textit{Y. Shen} et al., Anal. Appl., Singap. 20, No. 3, 401--428 (2022; Zbl 1492.90130) Full Text: DOI OpenURL
Salisu, Sani; Kumam, Poom; Sriwongsa, Songpon; Abubakar, Jamilu On minimization and fixed point problems in Hadamard spaces. (English) Zbl 1497.47097 Comput. Appl. Math. 41, No. 3, Paper No. 117, 22 p. (2022). MSC: 47J25 47H09 54H25 65K10 65K15 PDF BibTeX XML Cite \textit{S. Salisu} et al., Comput. Appl. Math. 41, No. 3, Paper No. 117, 22 p. (2022; Zbl 1497.47097) Full Text: DOI OpenURL
Kohlenbach, Ulrich On the proximal point algorithm and its Halpern-type variant for generalized monotone operators in Hilbert space. (English) Zbl 1487.90638 Optim. Lett. 16, No. 2, 611-621 (2022). MSC: 90C48 PDF BibTeX XML Cite \textit{U. Kohlenbach}, Optim. Lett. 16, No. 2, 611--621 (2022; Zbl 1487.90638) Full Text: DOI OpenURL
Bartz, Sedi; Dao, Minh N.; Phan, Hung M. Conical averagedness and convergence analysis of fixed point algorithms. (English) Zbl 1497.47107 J. Glob. Optim. 82, No. 2, 351-373 (2022). MSC: 47J26 47H09 47H05 49M27 65K05 65K10 PDF BibTeX XML Cite \textit{S. Bartz} et al., J. Glob. Optim. 82, No. 2, 351--373 (2022; Zbl 1497.47107) Full Text: DOI arXiv OpenURL
Grad, Sorin-Mihai; Lara, Felipe An extension of the proximal point algorithm beyond convexity. (English) Zbl 07489928 J. Glob. Optim. 82, No. 2, 313-329 (2022). MSC: 90C26 PDF BibTeX XML Cite \textit{S.-M. Grad} and \textit{F. Lara}, J. Glob. Optim. 82, No. 2, 313--329 (2022; Zbl 07489928) Full Text: DOI arXiv OpenURL
Vono, Maxime; Dobigeon, Nicolas; Chainais, Pierre High-dimensional Gaussian sampling: a review and a unifying approach based on a stochastic proximal point algorithm. (English) Zbl 07468737 SIAM Rev. 64, No. 1, 3-56 (2022). MSC: 65C10 68U20 62H12 PDF BibTeX XML Cite \textit{M. Vono} et al., SIAM Rev. 64, No. 1, 3--56 (2022; Zbl 07468737) Full Text: DOI arXiv OpenURL
Moudafi, Abdellatif; Mainge, Paul-Emile Copositivity meets D. C. optimization. (English) Zbl 1486.90146 J. Dyn. Games 9, No. 1, 27-32 (2022). MSC: 90C25 90C20 65K10 PDF BibTeX XML Cite \textit{A. Moudafi} and \textit{P.-E. Mainge}, J. Dyn. Games 9, No. 1, 27--32 (2022; Zbl 1486.90146) Full Text: DOI OpenURL
Shen, Yuan; Gao, Qianming; Yin, Xue A multi-parameter parallel ADMM for multi-block linearly constrained separable convex optimization. (English) Zbl 1479.90159 Appl. Numer. Math. 171, 369-388 (2022). MSC: 90C25 PDF BibTeX XML Cite \textit{Y. Shen} et al., Appl. Numer. Math. 171, 369--388 (2022; Zbl 1479.90159) Full Text: DOI OpenURL
Ranjbar, Sajad Strong convergence to a solution of the inclusion problem for a finite family of monotone operators in Hadamard spaces. (English) Zbl 07660053 An. Științ. Univ. “Ovidius” Constanța, Ser. Mat. 29, No. 2, 231-248 (2021). MSC: 47J25 47H05 47H09 49J40 54H25 PDF BibTeX XML Cite \textit{S. Ranjbar}, An. Științ. Univ. ``Ovidius'' Constanța, Ser. Mat. 29, No. 2, 231--248 (2021; Zbl 07660053) Full Text: DOI OpenURL
Tan, Li; Li, Qingjing; Guo, Ke; Yao, Jen-Chih Two proximal-type algorithms for nonsmooth convex optimization over fixed point sets of nonexpansive mappings. (English) Zbl 1498.65097 J. Nonlinear Convex Anal. 22, No. 3, 629-645 (2021). MSC: 65K05 90C25 90C30 PDF BibTeX XML Cite \textit{L. Tan} et al., J. Nonlinear Convex Anal. 22, No. 3, 629--645 (2021; Zbl 1498.65097) Full Text: Link OpenURL
Chang, Shih-Sen; Wen, Ching-Feng; Wang, Xiong-Rui; Tang, Jin-Fang Viscosity type algorithm for zeros of monotone operators in Hadamard spaces with application to optimization. (English) Zbl 07617202 J. Nonlinear Convex Anal. 22, No. 3, 457-470 (2021). MSC: 47H09 47J25 47H05 47J05 47J20 65K05 PDF BibTeX XML Cite \textit{S.-S. Chang} et al., J. Nonlinear Convex Anal. 22, No. 3, 457--470 (2021; Zbl 07617202) Full Text: Link OpenURL
Shehu, Yekini; Qin, X.; Yao, J. C. Weak and linear convergence of proximal point algorithm with reflections. (English) Zbl 1506.47117 J. Nonlinear Convex Anal. 22, No. 2, 299-307 (2021). MSC: 47J25 47H05 47J20 65K15 90C25 PDF BibTeX XML Cite \textit{Y. Shehu} et al., J. Nonlinear Convex Anal. 22, No. 2, 299--307 (2021; Zbl 1506.47117) Full Text: Link OpenURL
Shehu, Yekini; Ezeora, Jeremiah N. Weak and linear convergence of a generalized proximal point algorithm with alternating inertial steps for a monotone inclusion problem. (English) Zbl 07557730 J. Nonlinear Var. Anal. 5, No. 6, 881-892 (2021). MSC: 47-XX 46-XX PDF BibTeX XML Cite \textit{Y. Shehu} and \textit{J. N. Ezeora}, J. Nonlinear Var. Anal. 5, No. 6, 881--892 (2021; Zbl 07557730) Full Text: DOI OpenURL
Sow, T. M. M. Fixed point algorithms for convex minimization problem with set-valued operator in real Hilbert spaces. (English) Zbl 1493.47102 Palest. J. Math. 10, No. 2, 580-591 (2021). MSC: 47J25 47H04 47H09 65K05 PDF BibTeX XML Cite \textit{T. M. M. Sow}, Palest. J. Math. 10, No. 2, 580--591 (2021; Zbl 1493.47102) Full Text: Link OpenURL
Lauster, Florian; Luke, D. Russell Convergence of proximal splitting algorithms in \(\operatorname{CAT}(\kappa)\) spaces and beyond. (English) Zbl 07525617 Fixed Point Theory Algorithms Sci. Eng. 2021, Paper No. 13, 21 p. (2021). MSC: 47H09 47H10 53C22 53C21 53C23 53C20 49M27 PDF BibTeX XML Cite \textit{F. Lauster} and \textit{D. R. Luke}, Fixed Point Theory Algorithms Sci. Eng. 2021, Paper No. 13, 21 p. (2021; Zbl 07525617) Full Text: DOI OpenURL
Dashputre, Samir; Padmavati; Sakure, Kavita Fixed point approximation of countably infinite family of nonexpansive mappings. (English) Zbl 1497.47109 South East Asian J. Math. Math. Sci. 17, No. 1, 361-382 (2021). MSC: 47J26 47H09 54H25 PDF BibTeX XML Cite \textit{S. Dashputre} et al., South East Asian J. Math. Math. Sci. 17, No. 1, 361--382 (2021; Zbl 1497.47109) Full Text: Link OpenURL
Rockafellar, R. Tyrrell Advances in convergence and scope of the proximal point algorithm. (English) Zbl 1481.65094 J. Nonlinear Convex Anal. 22, No. 11, 2347-2375 (2021). MSC: 65K10 47H05 PDF BibTeX XML Cite \textit{R. T. Rockafellar}, J. Nonlinear Convex Anal. 22, No. 11, 2347--2375 (2021; Zbl 1481.65094) Full Text: Link OpenURL
Dinis, Bruno; Pinto, Pedro Quantitative results on the multi-parameters proximal point algorithm. (English) Zbl 07470545 J. Convex Anal. 28, No. 3, 729-750 (2021). Reviewer: Andrei Sipoş (Bucureşti) MSC: 47H09 47N10 03F10 46S30 PDF BibTeX XML Cite \textit{B. Dinis} and \textit{P. Pinto}, J. Convex Anal. 28, No. 3, 729--750 (2021; Zbl 07470545) Full Text: arXiv Link OpenURL
Izuchukwu, Chinedu; Ugwunnadi, Godwin C.; Mewomo, Oluwatosin Temitope Strong convergence theorem for family of minimization and monotone inclusion problems in Hadamard spaces. (English) Zbl 07469767 Proyecciones 40, No. 2, 525-558 (2021). MSC: 47H09 47H10 49J20 49J40 PDF BibTeX XML Cite \textit{C. Izuchukwu} et al., Proyecciones 40, No. 2, 525--558 (2021; Zbl 07469767) Full Text: DOI OpenURL
Sun, Jie; Zhang, Min The elicited progressive decoupling algorithm: a note on the rate of convergence and a preliminary numerical experiment on the choice of parameters. (English) Zbl 1484.90058 Set-Valued Var. Anal. 29, No. 4, 997-1018 (2021). MSC: 90C15 90C30 90C33 91B51 PDF BibTeX XML Cite \textit{J. Sun} and \textit{M. Zhang}, Set-Valued Var. Anal. 29, No. 4, 997--1018 (2021; Zbl 1484.90058) Full Text: DOI OpenURL
Aggarwal, Sajan; Uddin, Izhar; Pakkaranang, Nuttapol; Wairojjana, Nopparat; Cholamjiak, Prasit Convergence theorems of proximal type algorithm for a convex function and multivalued mappings in Hilbert spaces. (English) Zbl 1493.47081 Nonlinear Funct. Anal. Appl. 26, No. 1, 1-11 (2021). MSC: 47J25 47H09 47H04 PDF BibTeX XML Cite \textit{S. Aggarwal} et al., Nonlinear Funct. Anal. Appl. 26, No. 1, 1--11 (2021; Zbl 1493.47081) Full Text: Link OpenURL
Al-Homidan, Suliman; Ansari, Qamrul Hasan; Islam, Monirul Existence results and two step proximal point algorithm for equilibrium problems on Hadamard manifolds. (English) Zbl 1488.49021 Carpathian J. Math. 37, No. 3, 393-406 (2021). MSC: 49J40 65K15 65K10 47J25 54H25 PDF BibTeX XML Cite \textit{S. Al-Homidan} et al., Carpathian J. Math. 37, No. 3, 393--406 (2021; Zbl 1488.49021) Full Text: DOI OpenURL
Pakkaranang, Nuttapol; Kumam, Poom; Wen, Ching-Feng; Yao, Jen-Chih; Cho, Yeol Je On modified proximal point algorithms for solving minimization problems and fixed point problems in \(\mathrm{CAT}(\kappa)\) spaces. (English) Zbl 1495.47109 Math. Methods Appl. Sci. 44, No. 17, 12369-12382 (2021). MSC: 47J25 47H09 54H25 47H05 PDF BibTeX XML Cite \textit{N. Pakkaranang} et al., Math. Methods Appl. Sci. 44, No. 17, 12369--12382 (2021; Zbl 1495.47109) Full Text: DOI OpenURL
Ugwunnadi, Godwin Chidi Modified proximal point algorithm for minimization and fixed point problem in \(\mathrm{CAT}(0)\) spaces. (English) Zbl 1494.47117 Ural Math. J. 7, No. 1, 109-119 (2021). MSC: 47J25 47H09 54H25 54E50 PDF BibTeX XML Cite \textit{G. C. Ugwunnadi}, Ural Math. J. 7, No. 1, 109--119 (2021; Zbl 1494.47117) Full Text: DOI MNR OpenURL
Izuchukwu, Chinedu; Aremu, Kazeem O.; Abass, Hammed A.; Mewomo, Oluwatosin; Cholamjiak, Prasit A viscosity proximal point algorithm for solving optimization problems in Hadamard spaces. (English) Zbl 1477.90062 Nonlinear Stud. 28, No. 1, 101-125 (2021). MSC: 90C25 90C33 47J25 49J40 PDF BibTeX XML Cite \textit{C. Izuchukwu} et al., Nonlinear Stud. 28, No. 1, 101--125 (2021; Zbl 1477.90062) Full Text: Link OpenURL
Banjac, Goran; Lygeros, John On the asymptotic behavior of the Douglas-Rachford and proximal-point algorithms for convex optimization. (English) Zbl 1477.90059 Optim. Lett. 15, No. 8, 2719-2732 (2021). MSC: 90C25 65K15 PDF BibTeX XML Cite \textit{G. Banjac} and \textit{J. Lygeros}, Optim. Lett. 15, No. 8, 2719--2732 (2021; Zbl 1477.90059) Full Text: DOI arXiv OpenURL
Hamada, Masaki; Hirai, Hiroshi Computing the Nc-rank via discrete convex optimization on CAT(0) spaces. (English) Zbl 07393870 SIAM J. Appl. Algebra Geom. 5, No. 3, 455-478 (2021). MSC: 68Q25 90C25 06C20 PDF BibTeX XML Cite \textit{M. Hamada} and \textit{H. Hirai}, SIAM J. Appl. Algebra Geom. 5, No. 3, 455--478 (2021; Zbl 07393870) Full Text: DOI arXiv OpenURL
Yang, Yixuan; Tang, Yuchao; Wen, Meng; Zeng, Tieyong Preconditioned Douglas-Rachford type primal-dual method for solving composite monotone inclusion problems with applications. (English) Zbl 1476.90248 Inverse Probl. Imaging 15, No. 4, 787-825 (2021). MSC: 90C25 90C46 47A52 PDF BibTeX XML Cite \textit{Y. Yang} et al., Inverse Probl. Imaging 15, No. 4, 787--825 (2021; Zbl 1476.90248) Full Text: DOI OpenURL
Jiang, Fan; Cai, Xingju; Han, Deren The indefinite proximal point algorithms for maximal monotone operators. (English) Zbl 1476.90310 Optimization 70, No. 8, 1759-1790 (2021). MSC: 90C30 90C33 65K05 PDF BibTeX XML Cite \textit{F. Jiang} et al., Optimization 70, No. 8, 1759--1790 (2021; Zbl 1476.90310) Full Text: DOI OpenURL
Nguyen, Luong Van Weak sharpness and finite termination for variational inequalities on Hadamard manifolds. (English) Zbl 1470.49023 Optimization 70, No. 7, 1443-1458 (2021). MSC: 49J40 47H05 PDF BibTeX XML Cite \textit{L. Van Nguyen}, Optimization 70, No. 7, 1443--1458 (2021; Zbl 1470.49023) Full Text: DOI OpenURL
Patrascu, Andrei; Irofti, Paul Stochastic proximal splitting algorithm for composite minimization. (English) Zbl 1475.90106 Optim. Lett. 15, No. 6, 2255-2273 (2021). MSC: 90C30 90C15 PDF BibTeX XML Cite \textit{A. Patrascu} and \textit{P. Irofti}, Optim. Lett. 15, No. 6, 2255--2273 (2021; Zbl 1475.90106) Full Text: DOI arXiv OpenURL
Dashputre, Samir; Padmavati; Sakure, Kavita Convergence results for proximal point algorithm in complete \(\mathrm{CAT}(0)\) space for multivalued mappings. (English) Zbl 1494.47104 J. Indones. Math. Soc. 27, No. 1, 29-47 (2021). MSC: 47J25 47H09 54E50 54C60 65K10 PDF BibTeX XML Cite \textit{S. Dashputre} et al., J. Indones. Math. Soc. 27, No. 1, 29--47 (2021; Zbl 1494.47104) Full Text: DOI OpenURL
Bhat, Mohd Iqbal; Shafi, Sumeera; Malik, Mudasir Ahmad \(H\)-mixed accretive mapping and proximal point method for solving a system of generalized set-valued variational inclusions. (English) Zbl 1494.47103 Numer. Funct. Anal. Optim. 42, No. 8, 955-972 (2021). MSC: 47J25 47H06 47H09 47J22 49J40 PDF BibTeX XML Cite \textit{M. I. Bhat} et al., Numer. Funct. Anal. Optim. 42, No. 8, 955--972 (2021; Zbl 1494.47103) Full Text: DOI OpenURL
Grad, Sorin-Mihai; Lara, Felipe Solving mixed variational inequalities beyond convexity. (English) Zbl 1475.90111 J. Optim. Theory Appl. 190, No. 2, 565-580 (2021). MSC: 90C33 PDF BibTeX XML Cite \textit{S.-M. Grad} and \textit{F. Lara}, J. Optim. Theory Appl. 190, No. 2, 565--580 (2021; Zbl 1475.90111) Full Text: DOI OpenURL
Zaslavski, Alexander J. Optimization on solution sets of common fixed point problems. (English) Zbl 1479.49001 Springer Optimization and Its Applications 178. Cham: Springer (ISBN 978-3-030-78848-3/hbk; 978-3-030-78851-3/pbk; 978-3-030-78849-0/ebook). xi, 434 p. (2021). Reviewer: Samir Kumar Neogy (New Delhi) MSC: 49-01 49J27 90C25 90-01 26B25 91A05 PDF BibTeX XML Cite \textit{A. J. Zaslavski}, Optimization on solution sets of common fixed point problems. Cham: Springer (2021; Zbl 1479.49001) Full Text: DOI OpenURL
Combettes, Patrick L.; Woodstock, Zev C. Reconstruction of functions from prescribed proximal points. (English) Zbl 1472.41014 J. Approx. Theory 268, Article ID 105606, 26 p. (2021). Reviewer: Francisco Pérez Acosta (La Laguna) MSC: 41A50 41A29 41A65 PDF BibTeX XML Cite \textit{P. L. Combettes} and \textit{Z. C. Woodstock}, J. Approx. Theory 268, Article ID 105606, 26 p. (2021; Zbl 1472.41014) Full Text: DOI arXiv OpenURL
Zhang, You-Cai; Guo, Ke; Wang, Tao Generalized Krasnoselskii-Mann-type iteration for nonexpansive mappings in Banach spaces. (English) Zbl 1474.47141 J. Oper. Res. Soc. China 9, No. 1, 195-206 (2021). MSC: 47J25 47H05 47H09 PDF BibTeX XML Cite \textit{Y.-C. Zhang} et al., J. Oper. Res. Soc. China 9, No. 1, 195--206 (2021; Zbl 1474.47141) Full Text: DOI OpenURL
Leuştean, Laurenţiu; Pinto, Pedro Quantitative results on a Halpern-type proximal point algorithm. (English) Zbl 07353215 Comput. Optim. Appl. 79, No. 1, 101-125 (2021). MSC: 47H05 47H09 47J25 03F10 PDF BibTeX XML Cite \textit{L. Leuştean} and \textit{P. Pinto}, Comput. Optim. Appl. 79, No. 1, 101--125 (2021; Zbl 07353215) Full Text: DOI arXiv OpenURL
Ansari, Qamrul Hasan; Babu, Feeroz Proximal point algorithm for inclusion problems in Hadamard manifolds with applications. (English) Zbl 1479.49017 Optim. Lett. 15, No. 3, 901-921 (2021). Reviewer: Raffaella Servadei (Arcavata di Rende) MSC: 49J40 47J20 47J22 PDF BibTeX XML Cite \textit{Q. H. Ansari} and \textit{F. Babu}, Optim. Lett. 15, No. 3, 901--921 (2021; Zbl 1479.49017) Full Text: DOI OpenURL
Khatibzadeh, Hadi; Rahimi Piranfar, Mohsen; Rooin, Jamal Convergence of dissipative-like dynamics and algorithms governed by set-valued nonexpansive mappings. (English) Zbl 07340059 Bull. Malays. Math. Sci. Soc. (2) 44, No. 2, 1101-1121 (2021). MSC: 47H04 47H09 37K40 34A60 47J25 PDF BibTeX XML Cite \textit{H. Khatibzadeh} et al., Bull. Malays. Math. Sci. Soc. (2) 44, No. 2, 1101--1121 (2021; Zbl 07340059) Full Text: DOI OpenURL
Shen, Yuan; Zhang, Xingying; Zhang, Xiayang A partial PPA block-wise ADMM for multi-block linearly constrained separable convex optimization. (English) Zbl 1465.90065 Optimization 70, No. 3, 631-657 (2021). MSC: 90C25 90C30 65K05 94A08 PDF BibTeX XML Cite \textit{Y. Shen} et al., Optimization 70, No. 3, 631--657 (2021; Zbl 1465.90065) Full Text: DOI OpenURL
Khatibzadeh, Hadi; Mohebbi, Vahid Monotone and pseudo-monotone equilibrium problems in Hadamard spaces. (English) Zbl 07338141 J. Aust. Math. Soc. 110, No. 2, 220-242 (2021). MSC: 47H05 47J20 47J25 49J40 90C25 65K10 PDF BibTeX XML Cite \textit{H. Khatibzadeh} and \textit{V. Mohebbi}, J. Aust. Math. Soc. 110, No. 2, 220--242 (2021; Zbl 07338141) Full Text: DOI arXiv OpenURL
Pinto, Pedro A rate of metastability for the Halpern type proximal point algorithm. (English) Zbl 07336647 Numer. Funct. Anal. Optim. 42, No. 3, 320-343 (2021). MSC: 47H05 47H09 47J25 03F10 PDF BibTeX XML Cite \textit{P. Pinto}, Numer. Funct. Anal. Optim. 42, No. 3, 320--343 (2021; Zbl 07336647) Full Text: DOI arXiv OpenURL
Sahu, Daya Ram; Kumar, Ajeet; Kang, Shin Min Proximal point algorithms based on \(S\)-iterative technique for nearly asymptotically quasi-nonexpansive mappings and applications. (English) Zbl 07331342 Numer. Algorithms 86, No. 4, 1561-1590 (2021). MSC: 47H09 47H10 49M05 PDF BibTeX XML Cite \textit{D. R. Sahu} et al., Numer. Algorithms 86, No. 4, 1561--1590 (2021; Zbl 07331342) Full Text: DOI OpenURL
Chang, Shih-sen; Wang, L.; Zhao, L. C.; Liu, X. D. A proximal point algorithm for finding minimizers and fixed points of quasi-pseudo-contractive mappings in CAT(0) spaces. (English) Zbl 1484.47151 J. Fixed Point Theory Appl. 23, No. 1, Paper No. 5, 19 p. (2021). MSC: 47J25 47H09 54H25 PDF BibTeX XML Cite \textit{S.-s. Chang} et al., J. Fixed Point Theory Appl. 23, No. 1, Paper No. 5, 19 p. (2021; Zbl 1484.47151) Full Text: DOI OpenURL
Shen, Yuan; Zuo, Yannian; Yu, Aolin A partially proximal S-ADMM for separable convex optimization with linear constraints. (English) Zbl 1459.90159 Appl. Numer. Math. 160, 65-83 (2021). MSC: 90C25 PDF BibTeX XML Cite \textit{Y. Shen} et al., Appl. Numer. Math. 160, 65--83 (2021; Zbl 1459.90159) Full Text: DOI OpenURL
Kohlenbach, Ulrich Quantitative results on the proximal point algorithm in uniformly convex Banach spaces. (English) Zbl 1461.47024 J. Convex Anal. 28, No. 1, 11-18 (2021). MSC: 47H05 47J25 03F10 PDF BibTeX XML Cite \textit{U. Kohlenbach}, J. Convex Anal. 28, No. 1, 11--18 (2021; Zbl 1461.47024) Full Text: Link OpenURL
Bagheri, Malihe; Roohi, Mehdi Strong convergence theorems for weighted resolvent average of a finite family of monotone operators. (English) Zbl 07623383 Int. J. Nonlinear Anal. Appl. 11, No. 2, 469-481 (2020). MSC: 47H05 49J40 PDF BibTeX XML Cite \textit{M. Bagheri} and \textit{M. Roohi}, Int. J. Nonlinear Anal. Appl. 11, No. 2, 469--481 (2020; Zbl 07623383) Full Text: DOI OpenURL
Sahu, D. R. Applications of accelerated computational methods for quasi-nonexpansive operators to optimization problems. (English) Zbl 1491.90123 Soft Comput. 24, No. 23, 17887-17911 (2020). MSC: 90C25 PDF BibTeX XML Cite \textit{D. R. Sahu}, Soft Comput. 24, No. 23, 17887--17911 (2020; Zbl 1491.90123) Full Text: DOI OpenURL
Thounthong, Phatiphat; Pakkaranang, Nuttapol; Cho, Yeol Je; Kumam, Wiyada; Kumam, Poom The numerical reckoning of modified proximal point methods for minimization problems in non-positive curvature metric spaces. (English) Zbl 07475970 Int. J. Comput. Math. 97, No. 1-2, 245-262 (2020). MSC: 47H09 47H10 65K10 65K15 PDF BibTeX XML Cite \textit{P. Thounthong} et al., Int. J. Comput. Math. 97, No. 1--2, 245--262 (2020; Zbl 07475970) Full Text: DOI OpenURL
Padcharoen, Anantachai; Kumam, Poom Fixed point optimization method for image restoration. (English) Zbl 1492.47077 Thai J. Math. 18, No. 3, 1581-1596 (2020). MSC: 47J25 47H09 94A08 PDF BibTeX XML Cite \textit{A. Padcharoen} and \textit{P. Kumam}, Thai J. Math. 18, No. 3, 1581--1596 (2020; Zbl 1492.47077) Full Text: Link OpenURL
Deepan, Urairat; Kumam, Poom; Kim, Jong Kyu New splitting algorithm for mixed equilibrium problems on Hilbert spaces. (English) Zbl 1476.49014 Thai J. Math. 18, No. 3, 1199-1211 (2020). MSC: 49J40 90C33 47J25 65J15 PDF BibTeX XML Cite \textit{U. Deepan} et al., Thai J. Math. 18, No. 3, 1199--1211 (2020; Zbl 1476.49014) Full Text: Link OpenURL
Tiammee, Supalin; Tiammee, Jukrapong Proximal point algorithm involving best proximity point of nonself nonexpansive mappings in real Hilbert spaces. (English) Zbl 1492.47088 Thai J. Math. 18, No. 3, 937-949 (2020). MSC: 47J25 47H09 PDF BibTeX XML Cite \textit{S. Tiammee} and \textit{J. Tiammee}, Thai J. Math. 18, No. 3, 937--949 (2020; Zbl 1492.47088) Full Text: Link OpenURL
Chidume, C. E.; De Souza, G. S.; Romanus, O. M.; Nnyaba, U. V. A strong convergence theorem for maximal monotone operators in Banach spaces with applications. (English) Zbl 1485.47091 Carpathian J. Math. 36, No. 2, 229-240 (2020). MSC: 47J25 47J05 47H09 PDF BibTeX XML Cite \textit{C. E. Chidume} et al., Carpathian J. Math. 36, No. 2, 229--240 (2020; Zbl 1485.47091) Full Text: Link OpenURL
Khammahawong, Konrawut; Kumam, Poom; Chaipunya, Parin; Yao, Jen-Chih; Wen, Ching-Feng; Jirakitpuwapat, Wachirapong An extragradient algorithm for strongly pseudomonotone equilibrium problems on Hadamard manifolds. (English) Zbl 1495.47104 Thai J. Math. 18, No. 1, 350-371 (2020). MSC: 47J25 47H05 54H25 PDF BibTeX XML Cite \textit{K. Khammahawong} et al., Thai J. Math. 18, No. 1, 350--371 (2020; Zbl 1495.47104) Full Text: Link OpenURL
Tahernia, Mohsen; Moradi, Sirous; Jafari, Somayeh The strong convergence of a proximal point algorithm in complete CAT(0) metric spaces. (English) Zbl 1478.65056 Hacet. J. Math. Stat. 49, No. 1, 399-408 (2020). MSC: 65J15 54H25 54E40 54E50 PDF BibTeX XML Cite \textit{M. Tahernia} et al., Hacet. J. Math. Stat. 49, No. 1, 399--408 (2020; Zbl 1478.65056) Full Text: DOI OpenURL
Okeke, Godwin Amechi; Abbas, Mujahid; La Sen, Manuel De Fixed point theorems for convex minimization problems in complex valued CAT(0) spaces. (English) Zbl 1481.54054 Nonlinear Funct. Anal. Appl. 25, No. 4, 671-696 (2020). MSC: 54H25 54E40 54E50 65J15 90C25 PDF BibTeX XML Cite \textit{G. A. Okeke} et al., Nonlinear Funct. Anal. Appl. 25, No. 4, 671--696 (2020; Zbl 1481.54054) Full Text: Link OpenURL
Dinis, Bruno; Pinto, Pedro Metastability of the proximal point algorithm with multi-parameters. (English) Zbl 1472.90086 Port. Math. (N.S.) 77, No. 3-4, 345-381 (2020). MSC: 90C25 47H09 46N10 03F10 03F60 PDF BibTeX XML Cite \textit{B. Dinis} and \textit{P. Pinto}, Port. Math. (N.S.) 77, No. 3--4, 345--381 (2020; Zbl 1472.90086) Full Text: DOI OpenURL
Kim, Jong Kyu; Tuyen, Truong Minh New iterative methods for finding a common zero of a finite family of accretive operators in Banach spaces. (English) Zbl 07347476 J. Nonlinear Convex Anal. 21, No. 1, 139-155 (2020). MSC: 47H06 47H09 47H10 47J25 PDF BibTeX XML Cite \textit{J. K. Kim} and \textit{T. M. Tuyen}, J. Nonlinear Convex Anal. 21, No. 1, 139--155 (2020; Zbl 07347476) Full Text: Link OpenURL
Ansari, Qamrul; Babu, Feeroz; Yao, Jen-Chih Inexact proximal point algorithms for inclusion problems on Hadamard manifolds. (English) Zbl 1462.49032 J. Nonlinear Convex Anal. 21, No. 10, 2417-2432 (2020). MSC: 49J53 49J52 90C29 90C30 49J45 PDF BibTeX XML Cite \textit{Q. Ansari} et al., J. Nonlinear Convex Anal. 21, No. 10, 2417--2432 (2020; Zbl 1462.49032) Full Text: Link OpenURL
Weng, Sheng Quan; Wu, Ding Ping; Liou, Yeong-Cheng; Song, Fei Convergence of modified proximal point algorithm in \(\mathrm{CAT}(0)\) spaces. (English) Zbl 1487.47128 J. Nonlinear Convex Anal. 21, No. 10, 2287-2298 (2020). MSC: 47J26 47H09 47H04 54H25 PDF BibTeX XML Cite \textit{S. Q. Weng} et al., J. Nonlinear Convex Anal. 21, No. 10, 2287--2298 (2020; Zbl 1487.47128) Full Text: Link OpenURL
Kohlenbach, Ulrich Quantitative analysis of a Halpern-type proximal point algorithm for accretive operators in Banach spaces. (English) Zbl 1487.47108 J. Nonlinear Convex Anal. 21, No. 9, 2125-2138 (2020). MSC: 47J25 47H06 03F10 PDF BibTeX XML Cite \textit{U. Kohlenbach}, J. Nonlinear Convex Anal. 21, No. 9, 2125--2138 (2020; Zbl 1487.47108) Full Text: Link OpenURL
Tang, Jinfang; Zhu, Jinhua; Chang, Shih-Sen; Liu, Min; Li, Xiaorong A new modified proximal point algorithm for a finite family of minimization problem and fixed point for a finite family of demicontractive mappings in Hadamard spaces. (English) Zbl 1481.47096 Nonlinear Funct. Anal. Appl. 25, No. 3, 563-577 (2020). MSC: 47J25 47H09 49J20 54H25 PDF BibTeX XML Cite \textit{J. Tang} et al., Nonlinear Funct. Anal. Appl. 25, No. 3, 563--577 (2020; Zbl 1481.47096) Full Text: Link OpenURL
Li, Xudong Efficient proximal point algorithm for convex composite optimization. (Chinese. English summary) Zbl 1474.90337 Math. Numer. Sin. 42, No. 4, 385-404 (2020). MSC: 90C25 90C06 PDF BibTeX XML Cite \textit{X. Li}, Math. Numer. Sin. 42, No. 4, 385--404 (2020; Zbl 1474.90337) OpenURL
He, Niao; Harchaoui, Zaid; Wang, Yichen; Song, Le Point process estimation with Mirror Prox algorithms. (English) Zbl 1461.60033 Appl. Math. Optim. 82, No. 3, 919-947 (2020). MSC: 60G55 90C25 PDF BibTeX XML Cite \textit{N. He} et al., Appl. Math. Optim. 82, No. 3, 919--947 (2020; Zbl 1461.60033) Full Text: DOI OpenURL
Som, Tanmoy; Gautam, Pankaj; Dixit, Avinash; Sahu, D. R. Different techniques to solve monotone inclusion problems. (English) Zbl 07324125 Chakraverty, Snehashish (ed.), Mathematical methods in interdisciplinary sciences. Hoboken, NJ: John Wiley & Sons. 413-431 (2020). MSC: 74-XX 76-XX 80-XX PDF BibTeX XML Cite \textit{T. Som} et al., in: Mathematical methods in interdisciplinary sciences. Hoboken, NJ: John Wiley \& Sons. 413--431 (2020; Zbl 07324125) Full Text: DOI OpenURL
Uddin, Izhar; Garodia, Chanchal; Khan, Safeer Hussain A proximal point algorithm converging strongly to a minimizer of a convex function. (English) Zbl 1474.47150 Jordan J. Math. Stat. 13, No. 4, 659-685 (2020). MSC: 47J26 47H09 54H25 PDF BibTeX XML Cite \textit{I. Uddin} et al., Jordan J. Math. Stat. 13, No. 4, 659--685 (2020; Zbl 1474.47150) Full Text: Link OpenURL
Van Hieu, Dang; Gibali, Aviv Strong convergence of inertial algorithms for solving equilibrium problems. (English) Zbl 1459.90213 Optim. Lett. 14, No. 7, 1817-1843 (2020). MSC: 90C33 90C48 PDF BibTeX XML Cite \textit{D. Van Hieu} and \textit{A. Gibali}, Optim. Lett. 14, No. 7, 1817--1843 (2020; Zbl 1459.90213) Full Text: DOI OpenURL
Sow, T. M. M. An iterative algorithm based on the generalized viscosity explicit methods for an infinite family of accretive operators. (English) Zbl 1480.47098 Armen. J. Math. 12, Paper No. 9, 19 p. (2020). MSC: 47J25 47H06 47J22 PDF BibTeX XML Cite \textit{T. M. M. Sow}, Armen. J. Math. 12, Paper No. 9, 19 p. (2020; Zbl 1480.47098) Full Text: Link OpenURL
Sow, T. M. M. A new iterative method based on the modified proximal-point algorithm for finding a common null point of an infinite family of accretive operators in Banach spaces. (English) Zbl 07289312 Cubo 22, No. 2, 155-175 (2020). MSC: 47H06 47H09 47H10 PDF BibTeX XML Cite \textit{T. M. M. Sow}, Cubo 22, No. 2, 155--175 (2020; Zbl 07289312) Full Text: DOI OpenURL
Wairojjana, Nopparat; Pakkaranang, Nuttapol; Uddin, Izhar; Kumam, Poom; Awwal, Aliyu Muhammed Modified proximal point algorithms involving convex combination technique for solving minimization problems with convergence analysis. (English) Zbl 07271712 Optimization 69, No. 7-8, 1655-1680 (2020). MSC: 47H09 47H10 65K10 65K15 PDF BibTeX XML Cite \textit{N. Wairojjana} et al., Optimization 69, No. 7--8, 1655--1680 (2020; Zbl 07271712) Full Text: DOI OpenURL