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Zhongping Wan
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2020 – today
- 2024
- [j41]Jie Li, Zhongping Wan:
A novel interactive intuitionistic fuzzy approach to find satisfactory Pareto-optimal solutions for general bilevel multi-followers programming. Expert Syst. Appl. 236: 121206 (2024) - 2023
- [j40]Gaoxi Li, Liping Tang, Liying Liu, Zhongping Wan:
Wolfe-Type Duality for Mathematical Programs with Switching Constraints. Asia Pac. J. Oper. Res. 40(6): 2250043:1-2250043:16 (2023) - 2022
- [j39]Jiagen Liao, Zhongping Wan:
Inexact Restoration Methods for Semivectorial Bilevel Programming Problem on Riemannian Manifolds. Axioms 11(12): 696 (2022) - 2021
- [j38]Zijun Hao, Zhongping Wan, Xiaoni Chi, Zheng-Fen Jin:
Generalized lower-order penalty algorithm for solving second-order cone mixed complementarity problems. J. Comput. Appl. Math. 385: 113168 (2021) - 2020
- [j37]Zhenhua Peng, Zhongping Wan:
Second-Order Composed Contingent Derivative of the Perturbation Map in Multiobjective Optimization. Asia Pac. J. Oper. Res. 37(2): 2050002:1-2050002:23 (2020) - [j36]Chao Jiang, Zhongping Wan, Zhenhua Peng:
A new efficient hybrid algorithm for large scale multiple traveling salesman problems. Expert Syst. Appl. 139 (2020)
2010 – 2019
- 2019
- [j35]Liuyang Yuan, Fei Cui, Zhongping Wan, Weigang Li, Wenbo Wang:
A nonmonotone smoothing Newton method for system of nonlinear inequalities based on a new smoothing function. Comput. Appl. Math. 38(2) (2019) - 2018
- [j34]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) - [j33]Gaoxi Li, Zhongping Wan:
On Bilevel Programs with a Convex Lower-Level Problem Violating Slater's Constraint Qualification. J. Optim. Theory Appl. 179(3): 820-837 (2018) - [j32]Yibing Lv, Zhongping Wan:
A solving method based on neural network for a class of multi-leader-follower games. Neural Comput. Appl. 29(12): 1475-1483 (2018) - 2017
- [j31]Xiaoke Zhao, Yue Zheng, Zhongping Wan:
Interactive intuitionistic fuzzy methods for multilevel programming problems. Expert Syst. Appl. 72: 258-268 (2017) - [j30]Yao-Sheng Liang, Zhongping Wan, Debin Fang:
An improved artificial bee colony algorithm for solving constrained optimization problems. Int. J. Mach. Learn. Cybern. 8(3): 739-754 (2017) - 2016
- [j29]Yibing Lv, Zhongping Wan:
Solving linear bilevel programs via a new neural network. Artif. Intell. Res. 5(1): 49-55 (2016) - [j28]Zheng-Fen Jin, Zhongping Wan, Yuling Jiao, Xiliang Lu:
An Alternating Direction Method with Continuation for Nonconvex Low Rank Minimization. J. Sci. Comput. 66(2): 849-869 (2016) - 2015
- [j27]Zijun Hao, Zhongping Wan, Xiaoni Chi, Jiawei Chen:
A power penalty method for second-order cone nonlinear complementarity problems. J. Comput. Appl. Math. 290: 136-149 (2015) - [j26]Jiawei Chen, Shengjie Li, Zhongping Wan, Jen-Chih Yao:
Vector Variational-Like Inequalities with Constraints: Separation and Alternative. J. Optim. Theory Appl. 166(2): 460-479 (2015) - [j25]Jiawei Chen, Yeong-Cheng Liou, Zhongping Wan, Jen-Chih Yao:
A proximal point method for a class of monotone equilibrium problems with linear constraints. Oper. Res. 15(2): 275-288 (2015) - [j24]Zijun Hao, Zhongping Wan, Xiaoni Chi:
A power penalty method for second-order cone linear complementarity problems. Oper. Res. Lett. 43(2): 137-142 (2015) - 2014
- [j23]Zhongping Wan, Lijun Mao, Guangmin Wang:
Estimation of distribution algorithm for a class of nonlinear bilevel programming problems. Inf. Sci. 256: 184-196 (2014) - [j22]Zheng-Fen Jin, Qiuyu Wang, Zhongping Wan:
Recovering low-rank matrices from corrupted observations via the linear conjugate gradient algorithm. J. Comput. Appl. Math. 256: 114-120 (2014) - [j21]Jiawei Chen, Zhongping Wan, Yun-Zhi Zou:
Bilevel invex equilibrium problems with applications. Optim. Lett. 8(2): 447-461 (2014) - 2013
- [j20]Xiaoni Chi, Zhongping Wan, Zijun Hao:
A Two-Parametric Class of Merit Functions for the Second-Order Cone Complementarity Problem. J. Appl. Math. 2013: 571927:1-571927:10 (2013) - [j19]Shihui Jia, Zhongping Wan:
A penalty function method for solving ill-posed bilevel programming problem via weighted summation. J. Syst. Sci. Complex. 26(6): 1019-1027 (2013) - [j18]Jiawei Chen, Zhongping Wan, Yeol Je Cho:
Levitin-Polyak well-posedness by perturbations for systems of set-valued vector quasi-equilibrium problems. Math. Methods Oper. Res. 77(1): 33-64 (2013) - [j17]Zhongping Wan, Guangmin Wang, Bin Sun:
A hybrid intelligent algorithm by combining particle swarm optimization with chaos searching technique for solving nonlinear bilevel programming problems. Swarm Evol. Comput. 8: 26-32 (2013) - 2012
- [j16]Guangmin Wang, Ziyou Gao, Zhongping Wan:
A global optimization algorithm for solving the bi-level linear fractional programming problem. Comput. Ind. Eng. 63(2): 428-432 (2012) - [j15]Yue Zheng, Zhongping Wan:
A new variant of the memory gradient method for unconstrained optimization. Optim. Lett. 6(8): 1643-1655 (2012) - 2011
- [j14]Yibing Lv, Zhong Chen, Zhongping Wan:
A neural network approach for solving mathematical programs with equilibrium constraints. Expert Syst. Appl. 38(1): 231-234 (2011) - [j13]Yue Zheng, Zhongping Wan, Guangmin Wang:
A fuzzy interactive method for a class of bilevel multiobjective programming problem. Expert Syst. Appl. 38(8): 10384-10388 (2011) - [j12]Jiawei Chen, Zhongping Wan, Liuyang Yuan, Yue Zheng:
Approximation of Fixed Points of Weak Bregman Relatively Nonexpansive Mappings in Banach Spaces. Int. J. Math. Math. Sci. 2011: 420192:1-420192:23 (2011) - [j11]Zhongping Wan, Jiawei Chen, Hai Sun, Liuyang Yuan:
A New System of Generalized Mixed Quasivariational Inclusions with Relaxed Cocoercive Operators and Applications. J. Appl. Math. 2011: 961038:1-961038:26 (2011) - 2010
- [j10]Yibing Lv, Zhong Chen, Zhongping Wan:
A penalty function method based on bilevel programming for solving inverse optimal value problems. Appl. Math. Lett. 23(2): 170-175 (2010) - [j9]Guangmin Wang, Kejun Zhu, Zhongping Wan:
An approximate programming method based on the simplex method for bilevel programming problem. Comput. Math. Appl. 59(10): 3355-3360 (2010) - [j8]Yibing Lv, Zhong Chen, Zhongping Wan:
A neural network for solving a convex quadratic bilevel programming problem. J. Comput. Appl. Math. 234(2): 505-511 (2010)
2000 – 2009
- 2009
- [j7]Lu Cheng, Zhongping Wan, Guangmin Wang:
Bilevel newsvendor models considering retailer with CVaR objective. Comput. Ind. Eng. 57(1): 310-318 (2009) - [j6]Guangmin Wang, Xianjia Wang, Zhongping Wan:
A fuzzy interactive decision making algorithm for bilevel multi-followers programming with partial shared variables among followers. Expert Syst. Appl. 36(7): 10471-10474 (2009) - [c3]Yinhong Dong, Zhongping Wan:
A Pattern Search Filter Method for Bilevel Programming Problems. CSIE (6) 2009: 53-59 - 2008
- [j5]Yibing Lv, Tiesong Hu, Guangmin Wang, Zhongping Wan:
A neural network approach for solving nonlinear bilevel programming problem. Comput. Math. Appl. 55(12): 2823-2829 (2008) - [j4]Guangmin Wang, Zhongping Wan, Xianjia Wang, Yibing Lv:
Genetic algorithm based on simplex method for solving linear-quadratic bilevel programming problem. Comput. Math. Appl. 56(10): 2550-2555 (2008) - [c2]Guangmin Wang, Zhongping Wan:
A Fuzzy Interactive Approach for Decentralized Bilevel Programming Problem with a Common Decision Variable. CSSE (1) 2008: 5-8 - [c1]Zhongping Wan, Guangmin Wang, Kuolin Hou:
An Interactive Fuzzy Decision Making Method for a Class of Bilevel Programming. FSKD (1) 2008: 559-564 - 2007
- [j3]Yibing Lv, Tiesong Hu, Zhongping Wan:
A penalty function method for solving weak price control problem. Appl. Math. Comput. 186(2): 1520-1525 (2007) - [j2]Guangmin Wang, Xianjia Wang, Zhongping Wan, Yibing Lv:
A globally convergent algorithm for a class of bilevel nonlinear programming problem. Appl. Math. Comput. 188(1): 166-172 (2007) - [j1]Yibing Lv, Tiesong Hu, Guangmin Wang, Zhongping Wan:
A penalty function method based on Kuhn-Tucker condition for solving linear bilevel programming. Appl. Math. Comput. 188(1): 808-813 (2007)
Coauthor Index
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last updated on 2024-04-24 23:12 CEST by the dblp team
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