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[21]Ji B, Yuan X*, Yuan Y, et al..Exact and Heuristic Methods for Optimizing Lock-Quay System in Inland Waterway[J].European Journal of Operational Research, 2019, 277 (2) : 740-755.
[22]Ji B, Yuan X*, Yuan Y, et al..An Adaptive Large Neighborhood Search for Solving Generalized Lock Scheduling Problem: Comparative Study With Exact Methods[J].IEEE Transactions on Intelligent Transportation Systems, 2019, 21 (8) : 3344-3356.
[23]Ji B, Yuan X*, Yuan Y.A hybrid intelligent approach for co-scheduling of cascaded locks with multiple chambers[J].IEEE Transactions on Cybernetics, 2018, 49 (4) : 1236-1248.
[24]Ji B, Yuan X*, Yuan Y.A Binary Borg-Based Heuristic Method for Solving a Multi-Objective Lock and Transshipment Co-Scheduling Problem[J].IEEE Transactions on Intelligent Transportation Systems, 2018, 20 (3) : 947-958.
[25]Ji B, Yuan X*, Yuan Y.Orthogonal Design-Based NSGA-III for the Optimal Lockage Co-Scheduling Problem[J].IEEE Transactions on Intelligent Transportation Systems, 2017, 18 (8) : 2085-2095.
[26]Ji B, Yuan X*, Yuan Y.Modified NSGA-II for Solving Continuous Berth Allocation Problem: Using Multiobjective ConstraintHandling Strategy[J].IEEE Transactions on Cybernetics, 2017, 49 (7) : 2885-2895.
[27]Yuan X, Ji B, et al..Co-scheduling of lock and water–land transshipment for ships passing the dam[J].Applied Soft Computing, 2016, 45: 150-162.
[28]Yuan X, Ji B, et al..An efficient chaos embedded hybrid approach for hydro-thermal unit commitment problem.Energy Conversion and Management, 2015, 91: 225-237.
[29]Yuan Y, Yuan X*, et al., Ji B.Lockage scheduling of Three Gorges-Gezhouba dams by hybrid of chaotic particle swarm optimization and heuristic-adjusted strategies.[J].Applied Mathematics and Computation, 2015, 270: 74-89.
[30]Ji B, Yuan X*, et al., Improved gravitational search algorithm for unit commitment considering uncertainty of wind power[J].Energy, 2014, 67: 52-62.
[31]Ji B, Yuan X*, Li X, et al.Application of quantum-inspired binary gravitational search algorithm for thermal unit commitment with wind power integration.Energy Conversion and Management, 2014, 87: 589-598.
[32]Yuan X, Ji B, Zhang S, et al..An improved artificial physical optimization algorithm for dynamic dispatch of generators with valve-point effects and wind power.Energy Conversion and Management, 2014, 82: 92-105.
[33]Yuan X, Ji B, Tian H, et al..Multiscaling analysis of monthly runoff series using improved MF-DFA approach[J].Water Resources Management, 2014, 28 (12) : 3891-3903.
[34]Yuan X, Ji B, Zhang S, et al..A new approach for unit commitment problem via binary gravitational search algorithm[J].A new approach for unit commitment problem via binary gravitational search algorithm, 2014, 22: 249-260.
[35]Yuan X, Ji B, Chen Z, et al..A novel approach for economic dispatch of hydrothermal system via gravitational search algorithm.[J].Applied Mathematics and Computation, 2014, 247: 535-546.
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