2023
DOI: 10.1007/s40590-023-00502-6
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An inertial viscosity algorithm for solving monotone variational inclusion and common fixed point problems of strict pseudocontractions

Abstract: In this paper, we study the problem of finding the solution of monotone variational inclusion problem (MVIP) with constraint of common fixed point problem (CFPP) of strict pseudocontractions. We propose a new viscosity method, which combines the inertial technique with self-adaptive step size strategy for approximating the solution of the problem in the framework of Hilbert spaces. Unlike several of the existing results in the literature, our proposed method does not require the co-coerciveness and Lipschitz c… Show more

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Cited by 3 publications
(3 citation statements)
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“…Moreover, we compare the image recovery efficiency of method Algorithms 5 (in short, OAURN3) and 6 (in short, OAURN4) with Algorithm 3.3 by Adamu et al [36] (in short, ADIA Alg. 3.3) and Algorithm 3.1 by Alakoya et al [15] (in short, AOM Alg. 3.1).…”
Section: Application To the Image Restoration Problemmentioning
confidence: 99%
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“…Moreover, we compare the image recovery efficiency of method Algorithms 5 (in short, OAURN3) and 6 (in short, OAURN4) with Algorithm 3.3 by Adamu et al [36] (in short, ADIA Alg. 3.3) and Algorithm 3.1 by Alakoya et al [15] (in short, AOM Alg. 3.1).…”
Section: Application To the Image Restoration Problemmentioning
confidence: 99%
“…Moreover, we compare them with Algorithm 3.3 by Adamu et al [36] (in short, ADIA Alg. 3.3) and Algorithm 3.1 by Alakoya et al [15] (in short, AOM Alg. 3.1).…”
Section: Numerical Experimentsmentioning
confidence: 99%
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