The following information was submitted:
Transactions: WSEAS TRANSACTIONS ON INFORMATION SCIENCE AND APPLICATIONS
Transactions ID Number: 89-699
Full Name: Munenori Kasahara
Position: Student
Age: ON
Sex: Male
Address: 1603-1 Kamitomioka, Nagaoka, Niigata
Country: JAPAN
Tel: +81-258-46-6000
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E-mail address: munenori333@gmail.com
Other E-mails: hirotaka@y-eiwa.ac.jp
Title of the Paper: resolution of resource conflict between the different two projects in mpl-ccpm representation
Authors as they appear in the Paper: Munenori Kasahara; Hirotaka Takahashi; Hiroyuki Goto
Email addresses of all the authors: munenori333@gmail.com,hirotaka@y-eiwa.ac.jp,hgoto@kjs.nagaokaut.ac.jp
Number of paper pages: 10
Abstract: Max-Plus-Linear (MPL) system is known as a solution for scheduling problems of a class of discrete event systems. Typical systems include: manufacturing system and project management, etc. In such systems, the initial schedule is frequently changed due to unpredictable disturbances. Critical Chain Project Management (CCPM) method is a management method that can shorten the time required to complete a project based on the Theory Of Constraints (TOC). Therefore, in our previous papers [1] [2], we proposed a method for applying the concepts of the CCPM to MPL representation in order to control the occurrence of an undesirable state change. The CCPM method also provides a solution for the problem of the resource conflict. However, we did not discuss the resource conflict for simplicity. In this paper, we propose a method for discovering resource conflict between the different two projects in the MPL-CCPM representation. We also discuss how to shift the resource in orde!
r to resolve the conflict.
Keywords: Max-Plus Algebra, Max-Plus-Linear system, Discrete Event Systems, Critical Chain Project Management, Resource Conflict, State-Space Representation, Scheduling.
EXTENSION of the file: .pdf
Special (Invited) Session: Toward the Resolution of Resource Conflict in a MPL-CCPM Representation Approach
Organizer of the Session: 642-263
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