Publication: Dışsal İş Akışı Esnekliğine Sahip Hücresel Üretim Sistemlerinde Çizelgeleme
Loading...
Files
Date
Authors
Advisor
Department
Endüstri Mühendisliği
Industrial Engineering
Industrial Engineering
Journal Title
Journal ISSN
Volume Title
Publisher
Fen Bilimleri Enstitüsü
Institute of Science and Technology
Institute of Science and Technology
Type
Abstract
Özellikle ürün karışımı veya talebindeki değişimler nedeni ile hücreler arasında yük dengesizliği oluştuğu zaman hücresel üretim sistemlerinin performansı kötüleşir. Bu çalışmada önerilen dışsal iş akışı esnekliğini kullanma kurallarının hücreleri arasında yük dengesizliği olan hücresel üretim sistemlerinde uygulanması sureti ile sistem performansında sağlanabilecek iyileşme düzeyi incelenmektedir. Problemin karmaşıklığı ile kapsamı ve üretim ortamının dinamik doğası sebebi ile üretim benzetimi tekniği bu çalışmanın incelemesi için araç olarak seçilmiştir. Benzetim deneyleri sonuçlarının istatistik analizi neticesinde uygun bir dışsal iş akışı esnekliğini kullanma kuralı uygulandığı zaman hücresel sistemin performans ölçütlerinin önemli derecede iyileştirilebildiği belirlenmiştir. Ayrıca performans ölçütlerindeki iyileşmenin bu çalışmada istatistik bakımdan incelenmek üzere seçilen dört adet deney tasarım faktörüne bağlı olduğu tespit edilmiştir. Bu faktörler “dışsal iş akışı esnekliğini kullanma kuralları” nitel faktörü ile “yük dengesizlik seviyesi”, ”işlem süresi artış yüzdesi” ve “hazırlık süresi artış yüzdesi” nicel faktörleridir.
The performance of cellular manufacturing systems diminishes when the workload imbalance between the cells caused especially by the changes in part mix or demand distribution occurs. In this work it is investigated that the level of the performance improvement which can be obtained by implementing the proposed rules exploiting the external work flow flexibility in cellular systems experiencing the workload imbalance between its cells. Because of the complexity and size of the matter and the dynamic nature of the manufacturing environment, the manufacturing simulation technique was chosen as the research vehicle for this study. The statistical analysis of the results of the simulation experiments showed that performance measures of a cellular system can be improved to an important degree when the proper rule exploiting the external work flow flexibility is implemented. However, the improvement in the performance measures found to be dependent on the four experimental design factors chosen to be statistically investigated in the study. These factors are “the rules exploiting the external work flow flexibility”, which is a qualitative factor, and “the level of the load imbalance”, “the percentage increase in the operation time” and “the percentage increase in the set up time”, which are the quantitative factors.
The performance of cellular manufacturing systems diminishes when the workload imbalance between the cells caused especially by the changes in part mix or demand distribution occurs. In this work it is investigated that the level of the performance improvement which can be obtained by implementing the proposed rules exploiting the external work flow flexibility in cellular systems experiencing the workload imbalance between its cells. Because of the complexity and size of the matter and the dynamic nature of the manufacturing environment, the manufacturing simulation technique was chosen as the research vehicle for this study. The statistical analysis of the results of the simulation experiments showed that performance measures of a cellular system can be improved to an important degree when the proper rule exploiting the external work flow flexibility is implemented. However, the improvement in the performance measures found to be dependent on the four experimental design factors chosen to be statistically investigated in the study. These factors are “the rules exploiting the external work flow flexibility”, which is a qualitative factor, and “the level of the load imbalance”, “the percentage increase in the operation time” and “the percentage increase in the set up time”, which are the quantitative factors.
Description
Tez (Doktora) -- İstanbul Teknik Üniversitesi, Fen Bilimleri Enstitüsü, 2006
Thesis (PhD) -- İstanbul Technical University, Institute of Science and Technology, 2006
Thesis (PhD) -- İstanbul Technical University, Institute of Science and Technology, 2006
Journal or Series
ISSN
ISBN
Rights
İTÜ tezleri telif hakkı ile korunmaktadır. Bunlar, bu kaynak üzerinden herhangi bir amaçla görüntülenebilir, ancak herhangi bir biçimde yeniden oluşturulması veya dağıtılması yazılı izin alınmadan yasaklanmıştır.
İTÜ theses are protected by copyright. They may be viewed from this source for any purpose, but reproduction or distribution in any format is prohibited without written permission.
İTÜ theses are protected by copyright. They may be viewed from this source for any purpose, but reproduction or distribution in any format is prohibited without written permission.
Keywords
Hücresel Üretim, Grup Teknolojisi, Esnek Üretim, Üretim Benzetimi, Cellular Manufacturing, Group Technology, Flexible Manufacturing
Citation
Endorsement
Review
Supplemented By
Referenced By
15
Görüntülenme
18
İndirme
Google Scholar
Scholar'da Ara ↗ Bu yayında DOI yok — Altmetric/Dimensions/PlumX/BIP! rozetleri DOI gerektirir.