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Journal ArticleDOI

Polynomial approach to optimal one-wafer cyclic scheduling of treelike hybrid multi-cluster tools via Petri nets

TLDR
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.
Abstract
A treelike hybrid multi-cluster tool is composed of both single-arm and dual-arm cluster tools with a treelike topology. Scheduling such a tool is challenging. For a hybrid treelike multi-cluster tool whose bottleneck individual tool is process-bound, this work aims at finding its optimal one-wafer cyclic schedule. It is modeled with Petri nets such that a onewafer cyclic schedule is parameterized as its robots’ waiting time. Based on the model, this work proves the existence of its onewafer cyclic schedule that features with the ease of industrial implementation. Then, computationally efficient algorithms are proposed to find the minimal cycle time and optimal onewafer cyclic schedule. Multi-cluster tool examples are given to illustrate the proposed approach. The use of the found schedules enables industrial multi-cluster tools to operate with their highest productivity.

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Citations
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Journal ArticleDOI

Dual-Objective Mixed Integer Linear Program and Memetic Algorithm for an Industrial Group Scheduling Problem

TL;DR: In this article, a new bi-objective serial-batch group scheduling problem considering the constraints of sequence-dependent setup time, release time, and due time is proposed. But the problem is not solved by a memetic algorithm.
Journal ArticleDOI

Non-Dominated Immune-Endocrine Short Feedback Algorithm for Multi-Robot Maritime Patrolling

TL;DR: A novel approach inspired by an immune-endocrine short feedback system to solve a maritime patrolling problem and its high search ability and convergence speed are shown via its comparison with the other well-known algorithms.
Journal ArticleDOI

A Petri Net Based Deadlock Avoidance Policy for Flexible Manufacturing Systems With Assembly Operations and Multiple Resource Acquisition

TL;DR: A Banker's-algorithm-like deadlock avoidance policy is proposed that is proved to be polynomial in the model size and experimental results indicate its effectiveness and superiority over the state-of-the-art policies.
Journal ArticleDOI

A Siphon-Based Deadlock Prevention Strategy for S 3 PR

TL;DR: The experimental results show that a supervisor with a simpler structure, higher behavioral permissiveness, and lower computational complexity can be obtained by the proposed strategy since neither the exhaustive siphon enumeration nor the reachability analysis is required.
Journal ArticleDOI

Robust deadlock avoidance policy for automated manufacturing system with multiple unreliable resources

TL;DR: A new modified Banker’s algorithm is proposed to ensure the continuous production of the jobs that only require reliable resources and a Petri net based deadlock avoidance policy is introduced to ensure that all jobs remaining in the system after executing the new MBA can complete their processing smoothly when their required unreliable resources are operational.
References
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Patent

Method and apparatus for scheduling wafer processing within a multiple chamber semiconductor wafer processing tool having a multiple blade robot

TL;DR: In this article, a dual-blade wafer transfer mechanism is used to assign priority values to the chambers in a cluster tool, then move wafers from chamber to chamber in accordance with the assigned priorities.
Journal ArticleDOI

Sequencing of Parts and Robot Moves in a Robotic Cell

TL;DR: In this paper, the problem of sequencing parts and robot moves in a robotic cell where the robot is used to feed machines in the cell is addressed, and the cycle time formulas are developed and analyzed for this purpose for cells producing a single part type using two or three machines.
Journal ArticleDOI

Scheduling analysis of time-constrained dual-armed cluster tools

TL;DR: In this article, the authors proposed a method of determining the tool operation schedule for a time-constrained dual-armed cluster tools that have diverse wafer flow patterns and compared the performance of the new swap strategy with that of the conventional swap strategy.
Journal ArticleDOI

Pareto-Optimization for Scheduling of Crude Oil Operations in Refinery via Genetic Algorithm

TL;DR: This paper develops a chromosome that can describe a feasible schedule such that meta-heuristics can be applied and innovatively adopts an improved nondominated sorting genetic algorithm to solve the optimization problem for the first time.
Journal ArticleDOI

A steady-state throughput analysis of cluster tools: dual-blade versus single-blade robots

TL;DR: In this paper, an analysis of throughput in a cluster tool with a dual-blade robot operating in steady-state mode is presented, based on a single-wafer serial processing cluster tool.
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