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Guo-ji Tang
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2020 – today
- 2024
- [j22]Tong-tong Shang, Guo-ji Tang, Wen-sheng Jia:
Solution set bounds for LCPs over tensor spaces. J. Comput. Appl. Math. 436: 115383 (2024) - [j21]Yi-gong Huang, Tong-tong Shang, Guo-ji Tang:
Existence results of solutions to a generalized vertical polynomial complementarity problem in terms of vertical block tensor tuples. J. Comput. Appl. Math. 451: 116113 (2024) - [j20]Xue-liu Li, Guo-ji Tang:
Strict feasibility for the polynomial complementarity problem. J. Glob. Optim. 89(1): 57-71 (2024) - [j19]Xue-liu Li, Tong-tong Shang, Guo-ji Tang:
Lower bounds of the solution set of the polynomial complementarity problem. Optim. Lett. 18(2): 497-511 (2024) - 2023
- [j18]Tong-tong Shang, Guo-ji Tang:
Structured tensor tuples to polynomial complementarity problems. J. Glob. Optim. 86(4): 867-883 (2023) - [j17]Tong-tong Shang, Guo-ji Tang:
Mixed polynomial variational inequalities. J. Glob. Optim. 86(4): 953-988 (2023) - 2022
- [j16]Tong-tong Shang, Jing Yang, Guo-ji Tang:
Generalized Polynomial Complementarity Problems over a Polyhedral Cone. J. Optim. Theory Appl. 192(2): 443-483 (2022) - 2021
- [j15]Xiangkun Shao, Guo-ji Tang:
Blow-up phenomena for a Kirchhoff-type parabolic equation with logarithmic nonlinearity. Appl. Math. Lett. 116: 106969 (2021) - 2020
- [j14]Guo-ji Tang, Yan-shu Li:
Existence of solutions for mixed variational inequalities with perturbation in Banach spaces. Optim. Lett. 14(3): 637-651 (2020)
2010 – 2019
- 2018
- [j13]Guo-ji Tang, Ting Zhao, Zhongping Wan, Deng-xu He:
Existence results of a perturbed variational inequality with a fuzzy mapping. Fuzzy Sets Syst. 331: 68-77 (2018) - 2015
- [j12]Xing Wang, Chang-qi Tao, Guo-ji Tang:
A class of differential quadratic programming problems. Appl. Math. Comput. 270: 369-377 (2015) - [j11]Guo-ji Tang, Xing Wang, Zhong-bao Wang:
Existence of variational quasi-hemivariational inequalities involving a set-valued operatorand a nonlinear term. Optim. Lett. 9(1): 75-90 (2015) - [j10]Guo-ji Tang, Ming Zhu, Huan-Wen Liu:
A new extragradient-type method for mixed variational inequalities. Oper. Res. Lett. 43(6): 567-572 (2015) - 2014
- [j9]Guo-ji Tang, Xing Wang:
An Interior Projected-Like Subgradient Method for Mixed Variational Inequalities. J. Appl. Math. 2014: 607509:1-607509:7 (2014) - [j8]Guo-ji Tang, Xing Wang:
A perturbed algorithm for a system of variational inclusions involving H(·, ·)-accretive operators in Banach spaces. J. Comput. Appl. Math. 272: 1-7 (2014) - [j7]Guo-ji Tang, Fu-quan Xia:
Strong convergence of a splitting projection method for the sum of maximal monotone operators. Optim. Lett. 8(4): 1313-1324 (2014) - [j6]Guo-ji Tang, Nan-Jing Huang:
Rate of convergence for proximal point algorithms on Hadamard manifolds. Oper. Res. Lett. 42(6-7): 383-387 (2014) - 2013
- [j5]Guo-ji Tang, Nan-Jing Huang:
Existence theorems of the variational-hemivariational inequalities. J. Glob. Optim. 56(2): 605-622 (2013) - [j4]Guo-ji Tang, Li-Wen Zhou, Nan-Jing Huang:
The proximal point algorithm for pseudomonotone variational inequalities on Hadamard manifolds. Optim. Lett. 7(4): 779-790 (2013) - [j3]Guo-ji Tang, Nan-Jing Huang:
An inexact proximal point algorithm for maximal monotone vector fields on Hadamard manifolds. Oper. Res. Lett. 41(6): 586-591 (2013) - 2012
- [j2]Guo-ji Tang, Nan-Jing Huang:
Korpelevich's method for variational inequality problems on Hadamard manifolds. J. Glob. Optim. 54(3): 493-509 (2012) - [j1]Guo-ji Tang, Nan-Jing Huang:
Strong convergence of a splitting proximal projection method for the sum of two maximal monotone operators. Oper. Res. Lett. 40(5): 332-336 (2012)
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