F
FaJun Yang
Researcher at Nanyang Technological University
Publications - 34
Citations - 801
FaJun Yang is an academic researcher from Nanyang Technological University. The author has contributed to research in topics: Schedule & Petri net. The author has an hindex of 12, co-authored 33 publications receiving 582 citations. Previous affiliations of FaJun Yang include FernUniversität Hagen & Guangdong University of Technology.
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Flexible Job-Shop Rescheduling for New Job Insertion by Using Discrete Jaya Algorithm
TL;DR: This paper discretizes a novel and simple metaheuristic, named Jaya, resulting in DJaya, and improves it to solve FJRP for new job insertion arising from pump remanufacturing, and proposes five objective-oriented local search operators and four ensembles of them to improve the performance of DJaya.
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Scheduling of Single-Arm Cluster Tools for an Atomic Layer Deposition Process With Residency Time Constraints
TL;DR: This paper studies the challenging scheduling problem of single-arm cluster tools for the ALD process with wafer residency time constraints and proposes scheduling algorithms to obtain an optimal schedule efficiently if such conditions are met.
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Polynomial approach to optimal one-wafer cyclic scheduling of treelike hybrid multi-cluster tools via Petri nets
TL;DR: This work proves the existence of its onewafer cyclic schedule that features with the ease of industrial implementation and the use of the found schedules enables industrial multi-cluster tools to operate with their highest productivity.
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Wafer Sojourn Time Fluctuation Analysis of Time-Constrained Dual-Arm Cluster Tools With Wafer Revisiting and Activity Time Variation
TL;DR: A real-time control policy is proposed to offset the effect of the activity time variation on wafer sojourn time fluctuation as much as possible and a Petri net model is adopted to describe the dynamical behavior of cluster tools.
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Petri Net-Based Optimal One-Wafer Cyclic Scheduling of Hybrid Multi-Cluster Tools in Wafer Fabrication
TL;DR: In this article, the problem of finding a one-wafer periodic schedule such that the lower bound of cycle time can be reached is investigated. And the conditions under which a onewafer cycle time schedule exists such that a lower bound on the cycle time of a hybrid multi-cluster tool can be found.