Hsien-Pin Hsu

dblp:34/6165 · DBLP profile ↗
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5ranked-venue papers in the field
4as first author
5since 2021 · last 2026
0000-0001-8874-0836ORCID · reported

Domains — venue-derived; a paper can count in several

Other / Interdisciplinary · 5 (4 first)
YearPublicationVenuePosition
2026 Conflict-free scheduling of twin automated stacking cranes considering container reshuffling using a discrete flower pollination algorithm
Chien-Chang Chou, Hsien-Pin Hsu, Meng-Hua Li, Tran Thi Bich Chau Vo
Adv. Eng. Informatics2
2024 Hybridizing WOA with PSO for coordinating material handling equipment in an automated container terminal considering energy consumption
Hsien-Pin Hsu, Chia-Nan Wang, Thi-Thanh-Tan Nguyen, Thanh-Tuan Dang, Yu-Jen Pan
Adv. Eng. Informatics1
2024 Dynamic airport gate assignment with improved Shuffled Frog-Leaping Algorithm and triangle membership function
Hsien-Pin Hsu, Wan-Fang Yang, Tran Thi Bich Chau Vo
Adv. Eng. Informatics1
2022 Solving the feeder assignment, component sequencing, and nozzle assignment problems for a multi-head gantry SMT machine using improved firefly algorithm and dynamic programming
Hsien-Pin Hsu
Adv. Eng. Informatics1
2021 Scheduling of collaborative operations of yard cranes and yard trucks for export containers using hybrid approaches
abstract
Optimizing collaborative operations for yard cranes (YCs) and yard trucks (YTs) is vital to the overall performance of a container terminal. This research investigates four different hybrid approaches developed for dealing with yard crane scheduling problem (YCSP) and yard truck scheduling problem (YTSP) simultaneously for export containers in the yard side area of a container terminal. First, these approaches use a load-balancing heuristic to assign containers to YCs evenly. Following this, each of them employs a specific heuristic/metaheuristic, such as genetic algorithm (GA), particle swarm optimization (PSO) or subgroups PSO (SGPSO), to generate alternative container loading sequences for each YC. Finally, a simulation model is used to simulate loading and transporting of these export containers, evaluate alternative planning results, and finally output the best planning result. Experiments have been conducted to compare these hybrid approaches. The results show Hybrid4 (SGPSO) outperforms Hybrid1 (Sort-by-bay), Hybrid2 (GA), and Hybrid3 (PSO) in terms of makespan.
Hsien-Pin Hsu, Hui-Huang Tai, Chia-Nan Wang, Chien-Chang Chou
Adv. Eng. Informatics1